WO2023104204A1 - 共享租电系统 - Google Patents

共享租电系统 Download PDF

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Publication number
WO2023104204A1
WO2023104204A1 PCT/CN2022/138122 CN2022138122W WO2023104204A1 WO 2023104204 A1 WO2023104204 A1 WO 2023104204A1 CN 2022138122 W CN2022138122 W CN 2022138122W WO 2023104204 A1 WO2023104204 A1 WO 2023104204A1
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WO
WIPO (PCT)
Prior art keywords
power distribution
power
mobile
unit
mobile power
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Application number
PCT/CN2022/138122
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English (en)
French (fr)
Inventor
李斌
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浙江齐享科技有限公司
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Publication of WO2023104204A1 publication Critical patent/WO2023104204A1/zh

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    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F17/00Coin-freed apparatus for hiring articles; Coin-freed facilities or services
    • G07F17/0042Coin-freed apparatus for hiring articles; Coin-freed facilities or services for hiring of objects
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F15/00Coin-freed apparatus with meter-controlled dispensing of liquid, gas or electricity
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F17/00Coin-freed apparatus for hiring articles; Coin-freed facilities or services
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J13/00Circuit arrangements for providing remote indication of network conditions, e.g. an instantaneous record of the open or closed condition of each circuitbreaker in the network; Circuit arrangements for providing remote control of switching means in a power distribution network, e.g. switching in and out of current consumers by using a pulse code signal carried by the network
    • H02J13/00001Circuit arrangements for providing remote indication of network conditions, e.g. an instantaneous record of the open or closed condition of each circuitbreaker in the network; Circuit arrangements for providing remote control of switching means in a power distribution network, e.g. switching in and out of current consumers by using a pulse code signal carried by the network characterised by the display of information or by user interaction, e.g. supervisory control and data acquisition systems [SCADA] or graphical user interfaces [GUI]
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J13/00Circuit arrangements for providing remote indication of network conditions, e.g. an instantaneous record of the open or closed condition of each circuitbreaker in the network; Circuit arrangements for providing remote control of switching means in a power distribution network, e.g. switching in and out of current consumers by using a pulse code signal carried by the network
    • H02J13/00002Circuit arrangements for providing remote indication of network conditions, e.g. an instantaneous record of the open or closed condition of each circuitbreaker in the network; Circuit arrangements for providing remote control of switching means in a power distribution network, e.g. switching in and out of current consumers by using a pulse code signal carried by the network characterised by monitoring
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J13/00Circuit arrangements for providing remote indication of network conditions, e.g. an instantaneous record of the open or closed condition of each circuitbreaker in the network; Circuit arrangements for providing remote control of switching means in a power distribution network, e.g. switching in and out of current consumers by using a pulse code signal carried by the network
    • H02J13/00032Systems characterised by the controlled or operated power network elements or equipment, the power network elements or equipment not otherwise provided for
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J4/00Circuit arrangements for mains or distribution networks not specified as ac or dc
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
    • H02J7/00032Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries characterised by data exchange
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
    • H02J7/00032Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries characterised by data exchange
    • H02J7/00045Authentication, i.e. circuits for checking compatibility between one component, e.g. a battery or a battery charger, and another component, e.g. a power source
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
    • H02J7/0013Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries acting upon several batteries simultaneously or sequentially

Definitions

  • This application relates to the field of electricity rental, and in particular to a shared electricity rental system.
  • each power bank is independently connected to the shared charging cabinet, when the signal is poor, the power bank cannot immediately communicate with the shared charging cabinet for relevant information, such as the power information of the power bank.
  • a mobile power distribution device of the present invention capable of achieving the foregoing and other purposes and advantages, wherein the mobile power distribution device is suitable for releasing the electric energy of a power distribution object, includes:
  • the mobile power distribution unit is removably positioned in a social space unit in a geographic area space;
  • control module further includes a control module and a communication module, wherein the control module processes the release power distribution command after receiving a power distribution release command, and the communication module is connected by a circuit
  • the communication module is used for communication;
  • An output part the output part is placed in the mobile power distribution part, so that the output part supplies power to the power distribution object;
  • An interaction processing unit the interaction processing unit is connected to the control module by a circuit, the communication module is connected to the interaction processing unit by a circuit, and the interaction processing unit can receive instructions and/or feedback.
  • the present invention provides a mobile power distribution device, wherein the mobile power distribution device is suitable for releasing the electric energy of a power distribution object, including:
  • the mobile power distribution unit is removably positioned in a social space unit in a geographic area space;
  • control module processes the release power distribution command after receiving a power distribution release command
  • An output part the output part is placed in the mobile power distribution part, so that the output part supplies power to the object to be distributed.
  • the present invention provides a power holding device, comprising:
  • a power-sustaining input unit wherein the power-sustaining input unit is used for inputting current
  • One or more power-sustaining output parts wherein the power-sustaining input part and the power-sustaining output part are circuit-connected to the power-sustaining control part, and the power-sustaining input part and the power-sustaining output part are set In the said electricity holding and distribution department;
  • the power holding device has one or more power holding distribution chambers and at least one receiving opening 2202 that connects the power holding power distribution chambers and the external space, and at least one of the power holding output parts is arranged on the holding power distribution chamber.
  • An electric power distribution chamber for outputting current to devices placed in the power-sustaining power distribution chamber.
  • the present invention provides a shared terminal, including:
  • At least two mobile power distribution devices are respectively placed in at least one social space unit in a geographical area space, wherein the mobile power distribution device includes at least one mobile power distribution unit and at least one interactive processing unit part, the interaction processing part of the mobile power distribution device of one interaction space unit can communicate with the interaction processing part of the mobile power distribution device of at least one other interaction space unit; and
  • An object to be distributed wherein the object to be distributed is placed in the mobile power distribution part of the mobile power distribution device, and the object to be distributed is configured to discharge electricity by the mobile power distribution device.
  • the present invention provides a shared power rental system, comprising:
  • a mobile power distribution device there are at least two mobile power distribution devices, and the two mobile power distribution devices are respectively placed in at least one social space unit in a geographical area space, wherein the mobile power distribution device includes at least one a mobile power distribution unit, at least one interaction processing unit and a communication module, the mobile power distribution device is placed in at least one social space unit of a geographical area space for the interaction processing of at least two of the social space units part is connected;
  • one or more power holding devices and the mobile power distribution device are placed in the same geographic area, and the power holding device is connected to an external power source by a circuit to supply power to the mobile power distribution device;
  • a server wherein the server processes a power usage release instruction to the power holding device, and the power holding device sends the power usage release command to the interaction processing part of the mobile power distribution device, and the interaction processing sent to the control module to process the power release command.
  • the present invention provides a mobile power distribution device, wherein the mobile power distribution device is suitable for releasing the electric energy of a power distribution object, including:
  • the mobile power distribution unit is removably positioned in a social space unit in a geographic area space;
  • At least one power storage unit wherein the power storage unit stores electrical energy
  • control module processes the release power distribution command after receiving a power distribution release command
  • the present invention provides a shared power supply management system, wherein the shared power supply management system is suitable for releasing the electric energy of at least one object to be distributed, including:
  • a power distribution center wherein the power distribution center includes at least one power distribution unit, and the power distribution unit distributes at least one power release command according to the power distribution request;
  • a strategy generation center wherein the power distribution center includes at least one power distribution unit, and the strategy generation center includes at least one management strategy generation unit.
  • the present invention provides a sharing method, comprising the following steps:
  • (s002) Execute the instruction after receiving the instruction by at least one shared terminal held in a social space unit.
  • the present invention provides a shared power rental system, comprising:
  • At least two mobile power distribution devices at least one mobile power distribution device is placed in at least one social space unit in a geographical area space, so that the interaction processing units of at least two social space units are connected;
  • one or more power holding devices and the mobile power distribution device are placed in the same geographic area, and the power holding device is connected to an external power source by a circuit to supply power to the mobile power distribution device;
  • a server wherein the server processes a power usage release instruction to the power holding device, and the power holding device sends the power usage release command to the interaction processing part of the mobile power distribution device, and the interaction processing sent to the control module to process the power release command;
  • the mobile power distribution device is configured for an a la carte system, at least one game that can be linked, and at least one shared power supply management system.
  • the beneficial effect of the present application is: in some embodiments, it is convenient for the user to obtain power when he is in the social space unit S2. In some embodiments, it is convenient for the user to obtain power without moving around in the social space unit S2. In some embodiments, it is convenient for users to socialize in their respective social space units S2, so as to break their respective social space units S2. In some embodiments, the mobile power distribution device is placed in a single social space unit in a manner divided by social distance, so that the user can obtain power in real time in the social space unit that stays for a long time.
  • the number of mobile power distribution devices is more than three, and the mobile power distribution devices form a shared power distribution network, and are associated with different social space units in different social space units. Further, the compartmentalized social space units may be communicatively linked through a mobile power distribution device disposed therein. In some embodiments, the mobile power distribution device is configured in different social space units in a mobile manner, so that the user does not need to enter other social space units, and can immediately use the shared power distribution unit as long as he is in the social space unit. Electric management system.
  • the mobile power distribution device and/or the power-holding device transmit at least one power distribution-related information of a power distribution object with a matching identifier, and the power distribution-related information includes but is not limited to the identification of the power distribution object symbols, power-related information, and the corresponding storage power information of the mobile power distribution device.
  • the server sends a return permission instruction to the electric energy supplementation station or the distributed object placed in the electric energy supplementation station, so as to receive the distributed electric object to be returned.
  • Fig. 1A is a schematic diagram of a power sharing rental system according to a preferred embodiment of the present invention.
  • FIG. 1B is a schematic diagram of the application of the electric power sharing system according to the above-mentioned preferred embodiment of the present invention.
  • Fig. 1C is a schematic diagram of a power sharing system for renting according to a modified embodiment of the above-mentioned preferred embodiment of the present invention.
  • Fig. 1D is an application schematic diagram of a power sharing system for renting according to a modified embodiment of the above-mentioned preferred embodiment of the present invention.
  • FIG. 2A to FIG. 4B are schematic diagrams of a power sharing rental system according to the above-mentioned preferred embodiments of the present invention.
  • 4C to 4H are another schematic diagrams of the electric power sharing system according to the above-mentioned preferred embodiment of the present invention.
  • 5A to 6B are another schematic diagrams of the electric power sharing system according to the above-mentioned preferred embodiment of the present invention.
  • Fig. 7A and Fig. 7B are two schematic diagrams of the electric power sharing system according to the above-mentioned preferred embodiment of the present invention.
  • Fig. 8A is a schematic diagram of a power sharing rental system according to another preferred embodiment of the present invention.
  • FIG. 8B to FIG. 11B are schematic diagrams of the electric power sharing system according to the above-mentioned preferred embodiment of the present invention.
  • FIG. 12A to FIG. 12F are application schematic diagrams of the power sharing rental system according to the above-mentioned preferred embodiments of the present invention.
  • Fig. 13A is another schematic diagram of a power sharing rental system according to another preferred embodiment of the present invention.
  • Fig. 13B is another schematic diagram of a power sharing rental system according to a modified embodiment of another preferred embodiment of the present invention.
  • FIG. 13C and FIG. 13D are schematic diagrams of the application of the power sharing rental system according to the above-mentioned preferred embodiments of the present invention.
  • FIG. 14A to FIG. 14C are schematic diagrams of a power sharing rental system according to a modified embodiment of the above-mentioned preferred embodiment of the present invention.
  • FIG. 15A to FIG. 15D are schematic diagrams of a power sharing rental system according to a modified embodiment of the above-mentioned preferred embodiment of the present invention.
  • FIG. 16A to FIG. 16D are schematic diagrams of variant embodiments of the above-mentioned preferred embodiment according to the present invention.
  • FIG. 16E to FIG. 16G are schematic diagrams of implementations of modified embodiments of the above-mentioned preferred embodiment according to the present invention.
  • FIG. 16H and FIG. 16I are schematic diagrams of electricity renting according to a modified embodiment of the above-mentioned preferred embodiment of the present invention.
  • 17A to 17C are schematic diagrams of a power sharing rental system according to another preferred embodiment of the present invention.
  • Fig. 17D is a schematic diagram of a power sharing rental system according to a modified embodiment of the above-mentioned preferred embodiment of the present invention.
  • Fig. 17E is a schematic diagram of a power sharing system for renting according to a modified embodiment of the above-mentioned preferred embodiment of the present invention.
  • Fig. 17F is a schematic diagram of a power sharing system for renting according to a modified embodiment of the above-mentioned preferred embodiment of the present invention.
  • FIG. 18A to FIG. 18D are schematic diagrams of a power sharing rental system according to a modified embodiment of the above-mentioned preferred embodiment of the present invention.
  • Fig. 19 is a schematic diagram of a power sharing system for renting according to a modified embodiment of the above-mentioned preferred embodiment of the present invention.
  • orientation words such as the terms “center”, “horizontal”, “longitudinal”, “length”, “width”, “thickness”, “upper”, “lower” , “Front”, “Back”, “Left”, “Right”, “Vertical”, “Horizontal”, “Top”, “Bottom”, “Inner”, “Outer”, “Clockwise”, “Counterclockwise ” and other indication orientations and positional relationships are based on the orientations or positional relationships shown in the drawings, which are only for the convenience of describing the application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, use a specific orientation The structure and operation should not be construed as limiting the specific protection scope of the application.
  • the sharing power rental system 1 includes at least one server 10 , at least one power replenishment station 20 and at least one power distribution object 30 .
  • the object to be distributed 30 is accommodated and supplied to the power supply station 20 , and the power supply station 20 is communicably connected to the server 10 .
  • the object to be distributed 30 is configured to be mechanically and communicatively connected to the power supply station 20 .
  • the power sharing system 1 can control at least one power distribution object 30 to be released.
  • the power sharing system 1 is able to manage the return of the distributed object 30 .
  • the power sharing rental system 1 can control at least one power distribution object 30 to release power.
  • the shared power rental system 1 is communicatively connected to at least one of one or more power distribution objects 30 and one or more power supplementation stations 20 .
  • the electric energy replenishment station 20 includes at least one mobile power distribution device 21 and a power-holding storage device, wherein the mobile power distribution device 21 can be plugged and accommodated in the power-holding storage device, when the mobile power distribution device 21 It is placed away from the power holding storage device, and the power distribution object 30 is pluggably accommodated in the mobile power distribution device 21.
  • the mobile power distribution device 21 can supplement electric energy to the power distribution object 30 on the spot in the form of a built-in battery. .
  • the power supply station 20 accommodates and supplies power to at least one object to be distributed 30 , and the power supply station 20 can be communicated with the service station 1 to release the at least one object to be distributed 30 .
  • the electric energy replenishment station 20 can be conveniently moved and placed at a power-demanding location.
  • the electric energy replenishment station 20 and the distributed object 30 accommodated therein form a sharing terminal 200, so that Users can use power, interact and/or entertain through the sharing terminal 200 .
  • the mobile power distribution device 21 of the electric energy replenishment station 20 and the power distribution object 30 contained therein form a sharing terminal 200, so that users can use power, interact and/or entertainment.
  • the electric energy replenishment station and/or the object to be distributed communicates with the shared power distribution management system via 4G/5G or by connecting to a local area network.
  • the electric energy replenishment station 20 when the electric energy replenishment station 20 and/or the object to be distributed 30 are connected to mobile phone hotspots, WIFI or other private area networks, the electric energy replenishment station 20 communicates with the shared power distribution management system.
  • the electric energy replenishment station 20 includes at least two power-holding devices 22, and the power-holding devices 22 are placed at power-demanding locations to accommodate at least one power-distributing object 30 for long-term power supply, so that users can The area where it is located acquires the electric energy of the object to be distributed 30 released by the mobile power distribution device 21 in a timely manner.
  • the power supply station 20 includes at least one mobile power distribution device 21 and at least one power holding device 22 capable of accommodating and supplying power to the mobile power distribution device.
  • the power holding device 22 is kept charged for a long time.
  • two mobile power distribution devices are communicatively connected, and at least one power distribution-related information is sent between the two mobile power distribution devices.
  • the mobile power distribution device 21 transmits at least one power distribution-related information of the power distribution object 30 whose identifier is matched, and the power distribution related information includes but is not limited to the identifier of the power distribution object, the power distribution object
  • the power-related information before power-on and the corresponding mobile power distribution device are kept at least one storage space and other information.
  • the power distribution related information before the power distribution object 30 is returned can be displayed to the user.
  • the mobile power distribution device 21 can feed back information related to power distribution.
  • At least one of the sharing terminals 200 can communicate with the server 10 to communicate information related to power distribution.
  • the power supply station 20 can be configured with a power supply module, the power supply module can be built in the power supply station 20, of course, an external power supply can also be used, especially when the power supply module is an external power supply, the external power supply can be It can be an AC power supply, or a DC power supply, or a wireless charging power supply; at this time, the power supply module of the power supplement station 20 can be suitable for charging the power distribution object 30 .
  • the object to be distributed 30 has positive and negative ports and signal ports.
  • the above-mentioned positive and negative ports and signal ports are all connected to the corresponding ports of the electric energy replenishment station 20 to Realize that the electric energy replenishment station 20 provides power to the object to be distributed 30 through the positive and negative ports, and directly contacts and communicates with the object to be distributed 30 through the signal port; see below for details.
  • the power distribution object 30 is a power supply device of a power bank or an intelligent power supply device.
  • the user can supply power to other devices 60 by renting the power distribution object 30 .
  • At least one electric energy supplementary station 20 and the object 30 to be distributed are kept together in one of the social space units S2S2 of the geographical area space S1, so that people in one social space unit S2S2 can use the electric energy supplementary station 20 and the object 30 to be distributed.
  • the social space unit S2 is a space unit divided by users in the geographical area space S1 in order to maintain social distance.
  • the geographical area space S1 refers to the area space divided by functional places.
  • Each geographical area space S1 includes a plurality of social space units S2.
  • a single one is the social space unit S2 in the geospatial area S1 is separated by social distance. Because the social distance between friends and strangers is different, generally people with close social distance will use a table together, while strangers A social space unit S2 that is often selectively segmented to maintain social distance.
  • the space area S1 of restaurants and restaurants is gridded to form multiple social space units S2, and each social space unit S2 is equipped with an electric energy replenishment station 20 and a power distribution object 30, and the electric energy replenishment station 20 and the object to be distributed 30 are directly or indirectly connected in communication with the server 10 , for example, connected in communication with the server 10 .
  • Users in the space unit S2 can realize shared services within reach.
  • the shared electricity renting system 100 of the present invention can not only be placed according to the social space unit S2 according to local conditions and time, but also the electric energy replenishment station 20 can be moved to follow the change of the social space unit S2 in the geographic space area S1, and can be changed at different times. In the case of taking up a lot of space, it provides more flexible and changeable usage requirements for scenarios. Furthermore, users can use the shared electricity rental system 100 in their own social space unit S2 without running to other social space units S2 or walking through multiple social space units S2, which can provide users with more comfortable and pleasant Use experience.
  • the shared electricity rental system 1 can be configured in mobile public transportation places such as trains, airplanes, waiting squares, commercial places such as libraries, plazas, and restaurants, and the present invention is not limited in any way here.
  • the server 10 can respectively communicate with at least two power supply stations 20 or power distribution objects 30 that are kept in the same geographic area space S1. Further, the electric energy replenishment station 20 can communicate with the object to be distributed 30 , so that the electric energy replenishment station 20 and the object to be distributed in each social area space S2 are communicatively connected to the server 10 .
  • the power supplement station 20 and/or the power distribution object 30 of each social space unit S2 is equipped with a communication module, including cellular and non-cellular, for example, 2G/3G/4G/5G/WIFI/Bluetooth, In order to make the power supplementary station 20 and/or the object to be distributed 30 communicate with the server 10 in a manner of 2G/3G/4G/5G/WIFI/Bluetooth, or even a cellular hotspot.
  • a communication module including cellular and non-cellular, for example, 2G/3G/4G/5G/WIFI/Bluetooth
  • the power supplement station 20 of each social space unit S2 is equipped with a communication module, including cellular and non-cellular, for example, 2G/3G/4G/5G/WIFI/Bluetooth, so that the power
  • the supplementary station 20 communicates with the server 10 via 2G/3G/4G/5G/WIFI/Bluetooth, or even a cellular hotspot.
  • the electric energy replenishment station 20 is communicatively and mechanically connected to the power distribution object 30 .
  • the distributed object 30 of each social space unit S2 is equipped with a communication module, including cellular and non-cellular, for example, 2G/3G/4G/5G/WIFI/Bluetooth, so that The power distribution object 30 communicates with the server 10 in the form of 2G/3G/4G/5G/WIFI/Bluetooth, or even a cellular hotspot.
  • the electric energy replenishment station 20 is communicatively and mechanically connected to the distributed object 30 .
  • the power supplement station 20 of each social space unit S2 or the power distribution object 30 is equipped with a communication module, including cellular and non-cellular, such as , 2G/3G/4G/5G/WIFI/Bluetooth, the power supplement station 20 of other social space unit S2 held in the same geographical area space S1 or the power distribution object 30 sends communication related information to the social space unit S2S2 The electric energy replenishment station 2 or the object 30 to be distributed.
  • a communication module including cellular and non-cellular, such as , 2G/3G/4G/5G/WIFI/Bluetooth
  • the server 10 can communicate with at least one electric energy supplementary station 20 or the object to be distributed 30 kept in a geographical area space S1, and other electric energy supplementary stations 20 and the object to be distributed 30 maintained in the same geographical area space S1 through
  • the power supplementary station 20 that is communicatively connected to the server 10 or the power distribution object 30 forwards the information.
  • the communication relay is the electric energy supplementary station 20
  • the electric energy supplementary station 20 connected to the server 10 is the main electric energy supplementary station 20A.
  • the power distribution object 30 communicatively connected to the server 10 is the main power distribution object 30A.
  • the master power replenishing station 20A can communicate with the server 10 , and the slave power replenishing station 20B communicates with the server 10 in the manner of communicating with the master power replenishing station 20A.
  • the other electric energy supplementary stations 20 or the objects to be distributed 30 kept in the same geographical area space S1 are the secondary electric energy supplementary stations 20B or the objects to be distributed 30B. That is, at least one power supply station 20 of social space unit S2 or the object 30 to be distributed can communicate with the server 10, and the power supply stations 20 or objects 30 of other social space units S2 can be communicated with the server 10 of the social space unit S2.
  • the power supplementary station 20 or the power distribution object 30 communicates with the server 10 .
  • the power distribution object 30 of each social space unit S2 communicates with other power distribution objects 30 in the form of 4G/5G/WIFI/mobile phone hotspot (private area network).
  • the power distribution object 30 sends communication-related information to the master power replenishment station 20A that can communicate with the server 10 , and the slave power replenishment station 20B communicates with the server 10 through the master power replenishment station 20A that can communicate with the server 10 . That is to say, the power replenishment station 20 communicated with the server 10 is the master power replenishment station 20A, and the other power replenishment stations 20 kept in the same geographical area space S1 are the slave power replenishment stations 20B.
  • the power distribution object 30 communicates with the corresponding electric energy replenishment station 20 in a contact communication manner. That is, the object to be distributed 30 is communicatively connected to the electric energy charging station 20 that is accommodated and supplied with power, wherein the slave electric energy charging station 20 that accommodates and supplies power to the object to be distributed 30 is circuit-connected to the main electric energy charging station 20 to send a communication to the server 10.
  • the secondary power supply station 20B and the main power supply station 20A are communicatively connected, wherein the communication method can be 4G/5G/WIFI/BT (Bluetooth)/mobile phone hotspot (private area network), or even LoRa's In at least one respect, the invention is not limited in this respect.
  • the electric energy charging station 20 When the electric energy charging station 20 is communicatively connected to the server 10 in the form of 4G/5G/WIFI/mobile phone hotspot.
  • the other electric energy charging stations 20 are communicatively connected to the electric energy replenishing stations 20 in the form of WIFI/Bluetooth/Private Area Network (mobile phone hotspot).
  • Other electric energy charging stations 20 do not need to be equipped with 4G/5G, and communication costs are reduced. It is worth mentioning that the present invention is not subject to any limitation on communication methods.
  • the electric energy charging station 20 can be designed as at least one of the communication methods to achieve communication, and the design of the communication can be designed according to specific needs and costs.
  • the secondary power supply station 20B and the main power supply station 20A are communicably connected, wherein the communication method can be 4G/5G/WIFI/BT (Bluetooth) mobile phone hotspot (private area network), or even LoRa at least For one, the invention is not limited in this regard.
  • the communication method can be 4G/5G/WIFI/BT (Bluetooth) mobile phone hotspot (private area network), or even LoRa at least For one, the invention is not limited in this regard.
  • the object to be distributed 30 communicates with the corresponding electric energy replenishing station 20 in a manner of direct contact communication, so as to reduce communication costs.
  • the object to be distributed 30 communicates with the corresponding electric energy replenishment station 20 in a manner of wireless communication, and the communication method includes and is not limited to WIFI/Bluetooth/private area network (mobile phone hotspot)/4G/5G.
  • the power supplementary station 20 is connected to the object to be distributed 30 through wireless communication, and the power supplementation station 20 can communicate wirelessly with other objects to be distributed 30 in the same geographical area space S1. That is, the slave electric energy supplementary station 20B and the power distribution object 30 held in the same geographical area space S1 communicate with the main electric energy supplementary station 20A, respectively.
  • the object to be distributed 30 may communicate through at least two communication methods.
  • the power replenishment station 20 communicates with the server 10 through at least one power distribution object 30 .
  • the power distribution object 30 is connected to the server 10 through 4G/5G or WIFI communication.
  • Other power distribution objects 30 are connected to the power distribution objects 30 through WIFI signal communication, thereby reducing communication costs.
  • the power distribution object 30 is connected to the server 10 through 4G/5G or WIFI communication.
  • the other object to be distributed 30 is connected to the object to be distributed 30 in communication with the Bluetooth signal.
  • the power distribution object 30 communicated with the server 10 is the main power distribution object 30, and the other power distribution objects 30 kept in the same geographic area space S1 are connected to the server 10 through the main power distribution object 30.
  • the present invention is not subject to any limitation in the way of communication.
  • the electric energy replenishment station 20 communicates with the object to be distributed 30 in a direct contact manner.
  • the electric energy replenishment station 20 obtains communication-related information or sends communication-related information in a manner of wirelessly communicating with the object 30 to be powered by it.
  • the electric energy replenishment station 20 communicates with the distributed object 30 through a communication protocol, wherein the secondary distributed object 30 in the distributed object 30 sends to the main distributed object 30B.
  • the communication-related information of the electric energy replenishment station 20 is sent to the server 10 through the main power-distributed object 30B.
  • the power sharing system further includes at least one user terminal 40 .
  • the user terminal 40 is communicatively connected to the server 10 to communicate at least one piece of communication-related information.
  • the shared power rental system 1 further includes at least one service terminal 50, and the service terminal 50 is communicatively connected to the server 10 to communicate at least one communication-related information.
  • the user terminal 40 or the electric energy charging station 20 sends at least one user request 101 to the server 10, and the server 10 generates at least one user request 101 after receiving the user request 101 sent by the user terminal 40 or the electric energy charging station 20 Instruction 102.
  • the electric energy replenishment station 20 receives the instruction 102 sent by the server 10 . More preferably, the electric energy replenishment station 20 receives the instruction 102 sent by the server 10 and sends at least one sharing terminal feedback 103 .
  • the power distribution object 30 sends the instruction 102 sent by the server 10 to the electric energy replenishment station 20 after receiving it. More preferably, the power distribution object 30 receives the instruction 102 sent by the server 10, the power distribution object 30 relays the instruction 102 to the electric energy replenishment station 20, and the power distribution object 30 relays at least one shared terminal feedback sent by the electric energy replenishment station 20 103 to server 10.
  • the server 10 After the server 10 receives at least one return-related information, the server 10 sends a return permission command to the electric energy replenishment station 20 or the distributed object 30 placed at the electric energy replenishment station 20 to receive the The object 30 to be distributed.
  • the server 10 when the user sends a power usage request 1011 to the server 10 through the user terminal 40 or the electric energy charging station 20, the server 10 generates a power usage release command 1021 according to the power usage request 1011, and the server 10 sends the power usage release command 1021 to The electric energy replenishment station 20 or the power distribution object 30 .
  • the electricity usage request 1011 includes the device identifier 1001 of the power distribution object 30 and the user identifier 1002 of the user, and the electricity usage request 1011 may also include other relevant information, and the present invention is not limited in any way here.
  • the server 10 receives a power distribution-related request 1011 carrying at least a device identifier 1001 of the power supply station 20 or the object 30 to be distributed 30 and a user identifier 1002 of the user.
  • the server 10 generates a power distribution release command 1021 , and after receiving the power distribution release command 1021 sent by the power distribution object 30 and/or the electric energy charging station 20 , the control execution terminal executes the power distribution release command 1021 .
  • the user scans the two-dimensional code image information of the electric energy replenishment station 20 through the user terminal 40 to obtain the first device identifier 1001A of the electric energy replenishment station 20, since the user terminal 40 is authorized by the user
  • the user identifier 1002 of the user the user request 101 of the user through the user terminal 40 may carry the first device identifier 1001A of the electric energy supplementation station 20 and the user identifier 1002 of the user.
  • the user terminal 40 sends a power distribution-related request 1011 carrying at least one device identifier 1001 of the electric energy replenishment station 20 or the object to be distributed 30 and a user identifier 1002 of the user to the server 10, and the server 10 receives the request sent by the user terminal 40.
  • a release power distribution command 1021 is generated.
  • the power supplementary station 20 controls the execution terminal to execute the power distribution release command 1021, so that the power distribution object 30 can be user use.
  • the user request 101 is implemented as a power usage request 1011 , and the power usage request 1011 carries the first device identifier 1001A of the electric energy supplementation station 20 and the user identifier 1002 of the user.
  • the electric energy replenishment station 20 actively obtains the characteristic information of the user to obtain the user identifier 1002 of the user. Under the authorization of the user, the electric energy supplementing station 20 sends the first device identifier 1001A of the electric energy supplementing station 20 and the user identifier 1002 of the user.
  • the electric energy replenishment station 20 obtains the characteristic information of the user in an active manner, such as face recognition, fingerprint recognition, voice recognition, scanning two-dimensional code and other detection methods, and can also obtain the characteristic information of the user in the way of account password or receive the user's characteristic information.
  • Authorization information of the authorized user terminal 40 Under the authorization of the user, the electric energy supplementing station 20 sends the first device identifier 1001A of the electric energy supplementing station 20 and the user identifier 1002 of the user.
  • the electric energy replenishment station 20 sends a power distribution-related request 1011 carrying at least one device identifier 1001 of the electric energy replenishment station 20 and a user identifier 1002 of the user to the server 10, and the server 10 receives the power distribution-related request 1011 sent by the user terminal 40 Then generate a power distribution release command 1021, and the power supplementation station 20 executes the power distribution release command 1021 after receiving the power distribution release command 1021 sent by the server 10, so that the power distribution object 30 can be used by the user to obtain a power distribution related information.
  • the power distribution object 30 is mechanically connected to the electric energy supplementary station 20, and the electric energy supplementary station 20 is equipped with a controller and an execution terminal.
  • the power distribution command is used to release the power distribution object 30 .
  • the execution end is an actuator driven by a motor or a solenoid valve.
  • the power distribution object 30 is mechanically connected to the electric energy supplementation station 20
  • the power distribution object 30 is locked by the actuator, and the controller receives the release After the power distribution instruction 1021 , the control actuator acts to separate from the power distribution object 30 to release the power distribution object 30 .
  • the user scans the two-dimensional code image information of the power distribution object 30 through the user terminal 40 to obtain the second device identifier 1001B of the electric energy supplementation station 20 .
  • the distributed object 30 receives a power distribution-related request 1011 sent by the electric energy replenishment station 20 and carries at least a device identifier 1001 of the electric energy replenishment station 20 or the object to be distributed 30 and a user identifier 1002 of the user, and the distributed Object 30 is sent to server 10 .
  • the server 10 generates a power distribution release command 1021 , and the power distribution target 30 executes the power distribution release command 1021 after receiving the power distribution release command 1021 sent by the server 10 , so that the power distribution target 30 can be used by users.
  • the electric energy replenishment station 20 sends a task end feedback 1031 that ends the power distribution task corresponding to the power distribution object 30 and carries the second device identifier 1001B of the power distribution object 30 to the power distribution object 30, and the power distribution
  • the object 30 transfers the task end feedback 1031 to the server 10, so that the server 10 receives the sharing terminal feedback 103 that ends the power distribution task corresponding to the power distribution object 30 and carries the second device identifier 1001B of the power distribution object 30.
  • the difference from the embodiment shown in FIG. 4C of the accompanying drawings is that the user communicates with the electric energy replenishing station 20 through the user terminal 40 to obtain the first device identifier 1001A of the electric energy replenishing station 20 .
  • the server 10 when the user completes the order task, the server 10 generates a bill 104 to be paid.
  • the user sends at least one payment authorization message 106 to the server 10 through the user terminal 40 to pay the pending bill 104 .
  • the server 10 generates an order task information 107 .
  • the user terminal 40 can always be communicatively connected to the server 10 to view the order task information 107 of the intermediate state information.
  • Order task information 107 includes, but is not limited to, task progress information, bills to be paid 104, and order tasks after tasks are completed.
  • the server 10 when the user completes the order task, the server 10 generates a bill 104 to be paid.
  • the user sends at least one payment authorization message 106 to the server 10 through the power supplementation station 20 to pay the pending bill 104 .
  • the server 10 generates an order task information 107 .
  • the power supply station 20 can always be communicatively connected to the server 10 to view the order task information 107 of the intermediate status information.
  • Order task information 107 includes, but is not limited to, task progress information, bills to be paid 104, and order tasks after tasks are completed.
  • the user can interact with the electric energy replenishment station 20, and the interaction method is not limited in any way, and the interaction method includes but is not limited to touch screen, voice, camera, and button.
  • the user obtains user characteristic information through the detection module of the electric energy supplementation station 20, and interacts in the way displayed on the display screen.
  • the information transfer station of each social space unit S2 can be directly connected to the server 10 by communication.
  • the information transfer stations of each social space unit S2 can communicate with each other, and communicate with the server 10 in such a way that one of the main information transfer stations acts as a transfer.
  • the electric energy charging station 20 can be implemented as a communication transfer station in the same social space unit S2.
  • the object to be distributed 30 may be implemented as a communication transfer station in the same social space unit S2.
  • the electric energy charging station 20 can be implemented as a communication transfer station in the same geographical area space S1.
  • the power distribution object 30 can be implemented as a communication transfer station in the same geographical area space S1.
  • the electric energy replenishment station 20 and/or the object to be distributed 30 can be used as the information transfer station of the social space unit S2 or the geographical area space S1, and the information transfer station of each social space unit S2 can be based on the situation are selected in real time, and the present invention is not limited in any way. That is to say, according to the strength of the signal, the power supply station 20 and the power distribution object 30 of different social space unit S2 can be selected as the information transfer station of social space unit S2.
  • the electric energy replenishment station 20 releases one of the distributed objects 30 that meets the release condition.
  • the distributed objects 30 that meet the release condition are implemented as distributed objects 30 that have an electric power greater than the minimum power distribution threshold and can communicate with the electric energy replenishment station 20 . It is worth mentioning that satisfying the release condition can be designed according to specific conditions, and here, the release condition can be implemented as other conditions, and the present invention is not limited in any way.
  • the minimum power distribution threshold of the power distribution object 30 that is released from the condition may be 30%.
  • the minimum power distribution threshold of the distributed object 30 is 40%. More preferably, the minimum power distribution threshold of the distributed object 30 is 50%. More preferably, the minimum power distribution threshold of the distributed object 30 is 60%.
  • the minimum power distribution threshold of the power distribution object 30 to be released can also be 70%, 75%, 80%, 85%, 90%, and the present invention is not limited in any way .
  • the release condition satisfied by the power distribution objects 30 is that the power distribution objects 30 with relatively high power among the power distribution objects 30 are released.
  • the leased power distribution object 30 can be placed in the nearby power supply station 20.
  • the power supply station 20 will send the corresponding power distribution object 30
  • the task end feedback 1031 of the task end feedback 1031 carries the device identifier 1001 of the power distribution object 30, so that the server 10 receives the power replenishment station 20 and/or the power distribution object 30 carries the power distribution object 30.
  • the task end feedback 1031 of the device identifier 1001 is processed to generate a bill 104 to be paid.
  • the bills to be paid 104 acquired by the user through the user terminal 40 include but are not limited to specific contract information and payment licensing contracts.
  • the user authorizes to pay the fee corresponding to the pending bill 104 .
  • the bill completion information 106 authorized by the user is sent to the server 10 , so that the server 10 updates the power related information 105 according to the mobile power distribution device and/or the power distribution object 30 according to the bill completion information 106 .
  • the server 10 is communicatively connected to the power distribution object 30 or the power supplementation station 20, so as to obtain the power related information 105 of the mobile power distribution device and/or the power distribution object 30 in real time, and obtain a management strategy .
  • the power distribution object 30 receives the instruction 102 sent by the server 10 . More preferably, the power distribution object 30 receives the instruction 102 sent by the server 10 and sends at least one shared terminal feedback 103 .
  • the user terminal 40 sends a user request 101 carrying at least one device identifier 1001 of the electric energy replenishment station 20 or the power distribution object 30 and the user identifier 1002 of the user to the server 10, and the server 10 receives the power distribution related information sent by the user terminal 40.
  • the server 10 receives the power distribution related information sent by the user terminal 40.
  • at least one instruction 102 is generated, and the object to be distributed 30 receives the instruction 102 sent by the server 10 , and the object to be distributed 30 sends the instruction 102 to the electric energy replenishment station 20 , so that the electric energy replenishment station 20 is controlled to execute the instruction 102 .
  • the mobile power distribution device 21 sends communication related information through the power distribution object 30 accommodated therein.
  • the present invention is not limited thereto.
  • the server 10 of the power sharing system 1 generates at least one service information 108 according to the feedback 103 of the sharing terminal, and the service information 108 is sent to the service terminal 50 .
  • the service information 108 includes and is not limited to service reminder information requiring charging, order information, advertisement feedback information, scoring information, user payment menu information and other communication information, and this application is not limited here.
  • the service information 108 is a power distribution service reminder, and the power distribution service reminder can be sent to the service terminal 50 .
  • the power distribution service reminder includes but is not limited to that the power of the power replenishment station 20 is lower than the minimum replenishment threshold and/or equipment failure, so as to remind service personnel to provide services.
  • the service terminal 50 can send at least one merchant feedback 109 to the server 10 in real time. For example, if the power supply station 20 and/or the power distribution object 30 is damaged, the service terminal 50 can send a maintenance feedback to the server 10 so that the server 10 can obtain information from a third party.
  • the shared power rental system 1 further includes at least one service terminal 50 , and the service terminal 50 receives at least one power distribution service reminder 108 from the server 10 .
  • the power distribution service reminder 108 is displayed or voiced to remind the service personnel to provide power storage maintenance service to the power replenishment station 20 .
  • the object to be distributed 30 and/or the electric energy supplementary station 20 when the power of the object to be distributed 30 and/or the electric energy supplementary station 20 is lower than a preset threshold, the object to be distributed 30 or the electric energy supplementary station 20 sends a signal to the server, and the server sends a power distribution service reminder 108 to
  • the service terminal 50 such as a merchant terminal, can be a merchant's mobile phone terminal or a merchant's PC terminal, and reminds service personnel to provide power storage maintenance services for the electric energy replenishment station 20 in the form of a text message or a voice.
  • the power distribution service reminder 108 is sent to the service terminal 50 by the server 10, and the power distribution service reminder 108 is used by the user to solve the service demand, and the present invention is not limited in any way here.
  • the electric energy replenishment station 20 or the power distribution object 30 sends a sharing terminal feedback 103 to the server 10 in real time.
  • the server 10 obtains a power management library according to the power related information 105 of the mobile power distribution device and/or the power distribution object 30, wherein the shared terminal feedback 103 may include an abnormal warning of at least one power replenishment station 20 and/or power distribution object 30 , the electric energy related information of the electric energy replenishment station 20 and/or the object 30 to be distributed.
  • the power supply station 20 of the shared power rental system 1 is implemented differently and becomes a new embodiment, wherein the power supply station 20 can be implemented as at least one mobile power distribution device 21 .
  • the shared power rental system 1 manages at least one mobile power distribution device 21 , wherein the mobile power distribution device 21 performs power distribution to the power distribution object 30 .
  • the shared power rental system 1 can communicate with at least one mobile power distribution device 21, wherein, through the mobile power distribution device 21 being communicated to obtain an instruction to release at least one power distribution object 30, the power distribution object is The mobile power distribution device 21 is released.
  • the shared power rental system 1 can obtain the power related information of the power distribution object and the power related information of the mobile power distribution device 21 in real time.
  • the power distribution object is pluggably accommodated in the mobile power distribution device 21 , the number of power distribution objects 30 is more than two, and the power distribution object and the mobile power distribution device 21 are integrally assembled.
  • the electric energy replenishment station 20 includes at least one mobile device An electrical device 21 and at least one electrical holding device 22 .
  • the mobile power distribution device 21 can be accommodated and supplied to the power holding device 22.
  • the power holding device 22 is charged for a long time.
  • the mobile power distribution device 21 is moved to the power holding device 22 to be charged.
  • Each mobile power distribution device 21 and the power distribution object 30 accommodated therein form a sharing terminal 200 . That is to say, the same geographic area space S1 includes multiple shared terminals 200 .
  • Each sharing terminal 200 is communicably connected to the server 10 .
  • each social space unit S2 can be directly connected to the power holding device 22 by communication.
  • the information transfer stations of each social space unit S2 can communicate with each other, and communicate with the server 10 in such a way that one of the main information transfer stations acts as a transfer.
  • the power holding device 22 may be implemented as a communication transfer station in the same social space unit S2.
  • the object to be distributed 30 may be implemented as a communication transfer station in the same social space unit S2.
  • the power holding device 22 is a communication transfer station of the geographical area space S1, and is connected to the server 10 and the sharing terminal 200 in a communicative manner.
  • the power holding device 22 can accommodate and supply power to at least two mobile power distribution devices 21 .
  • the mobile power distribution device 21 is freely taken from the power holding device 22 .
  • the mobile power distribution device 21 is locked and placed on the power holding device 22.
  • the shared power distribution system 100 issues an order to unlock the mobile power distribution device 21 or unlock the lock manually, the mobile power distribution device 21 will It can be detached from the power holding device 22, and the present invention is not limited in any way here.
  • the number of mobile power distribution devices 21 accommodated by the power holding device 22 is not limited in any way, and can be designed according to specific needs, and each mobile power distribution device 21 is powered independently by the power holding device 22.
  • two mobile power distribution devices The electrical devices 21 do not affect each other.
  • the number of mobile power distribution devices 21 is not limited in any way.
  • the mobile power distribution device 21 is kept in the social space unit S2 in a manner far away from the power holding device 22, and the mobile power distribution device 21 is kept in each social space unit S2 to serve users. When the mobile power distribution device 21 is out of power, it can be moved to the power holding device 22 to be powered.
  • the power distribution object 30 is accommodated and supplied to the mobile power distribution device 21 . Further, the power distribution object 30 is stored and powered by the mobile power distribution device 21 and moves along with the mobile power distribution device 21, so that the user can rent electricity at the nearest mobile power distribution device 21 without finding the power holding device 22 .
  • each mobile power distribution device 21 is communicatively connected to the corresponding power-holding device 22 .
  • the mobile power distribution device 21 sends communication-related information through the power-holding device 22 .
  • the power distribution object 30 of each social space unit S2 is equipped with a communication module, such as: 4G/5G/WIFI/BT, so that the power distribution object 30 communicates with 4G/5G/WIFI/BT/hot spots server 10.
  • the electric energy replenishment station 20 can communicate with the object to be distributed 30 .
  • the sharing terminal 200 of each social space unit S2 is equipped with a communication module, such as: 4G/5G/WIFI, so that the sharing terminal 200 communicates with the power-holding device 22 in a manner of 4G/5G/WIFI/hot spot, and the power-holding device 22 is equipped with a communication module, for example: 4G/5G/WIFI.
  • a communication module such as: 4G/5G/WIFI
  • the mobile power distribution device 21 passes through at least one of the mobile power distribution devices 21 and The powered device 22 communicates. That is, at least one mobile power distribution device 21 is equipped with a short-distance communication module and a long-distance communication module, and other mobile power distribution devices 21 in the same geographic area space S1 may only be equipped with a short-distance communication module.
  • the power-holding device 22 is provided with a 4G/5G and/or WIFI module or is provided with an optical fiber connection port (that is, a wired connection to a wide area network), and other
  • the mobile power distribution device 21 is provided with a Bluetooth module or other short-distance communication modules, so that other mobile power distribution devices 21 are communicatively connected to the mobile power distribution device 21 provided with a 4G/5G or WIFI module.
  • At least one mobile power distribution device 21 of the entire power distribution network communicates with the power holding device 22 , the external device or the server 10 .
  • the shared terminal 200 of each social space unit S2 is equipped with 4G/5G/WIFI, and the shared terminal 200 of other social space unit S2 kept in the same geographic area space S1 sends communication-related information to the shared terminal 200 that is communicable at
  • the main mobile power distribution device 21A of the server 10 communicates with the power holding device 22 . That is, the mobile power distribution device 21 of each social space unit S2 or the power distribution object 30 is equipped with at least one of 4G/5G/WIFI, and is kept in the mobile power distribution of other social space unit S2 in the same geographical area space S1 The device 21 or the power distribution object 30 sends communication-related information to the power-holding device 22 of the social space unit S2S2.
  • the power holding device 22 can communicate with at least one mobile power distribution device 21 or power distribution object 30 kept in a geographic area space S1, other mobile power distribution devices 21 and power distribution devices kept in the same geographical area space S1
  • the power distribution object 30 forwards information through the mobile power distribution device 21 communicatively connected to the server 10 or the power distribution object 30 .
  • the mobile power distribution device 21 that is communicatively connected to the power holding device 22 is the main mobile power distribution device 21A.
  • the power distribution object 30 that is communicatively connected to the power holding device 22 is the main power distribution object 30A, and is kept in the same geographical area space S1 by other mobile power distribution devices 21 or the power distribution object 30 is the secondary mobile power distribution device 21B or the secondary power distribution object 30B. That is, the mobile power distribution device 21 or the power distribution object 30 of at least one social space unit S2 can communicate with the power holding device 22, and the power holding device 22 relays the information to the server 10, and the mobile power distribution devices 21 or power distribution devices of other social space units S2
  • the power distribution object 30 communicates with the power holding device 22 in a manner of being communicated with the mobile power distribution device 21 of the social space unit S2 or the power distribution object 30 .
  • the power distribution object 30 of each social space unit S2 communicates with other power distribution objects 30 in the form of 4G/5G/WIFI/mobile phone hotspot (private area network).
  • At least one mobile power distribution device 21 or power distribution object 30 is equipped with a communication module, for example, 4G/5G/WIFI, to be maintained in the same geographical area space S1
  • the other mobile power distribution device 21 and the power distribution object 30 send communication-related information to the main mobile power distribution device 21A, and the main mobile power distribution device 21A is able to communicate with the power holding device 22, and the slave mobile power distribution device 21B communicates on server 10. That is to say, the mobile power distribution device 21 communicated with the power holding device 22 is the master mobile power distribution device 21A, and the other mobile power distribution devices 21 held in the same geographic area space S1 are the slave mobile power distribution devices 21B.
  • the power distribution object 30 communicates with the corresponding mobile power distribution device 21 through contact communication. That is, the object to be distributed 30 is communicatively connected to the electric energy charging station 20 that is accommodated and supplied with power, wherein the secondary electric energy charging station 20B that accommodates and supplies the object to be distributed 30 is circuit-connected to the main electric energy charging station 20A to send communication-related information to server 10.
  • the slave mobile power distribution device 21B and the main mobile power distribution device 21A are communicably connected, wherein the communication method can be at least 4G/5G/WIFI/BT (Bluetooth)/mobile phone hotspot (private area network)
  • the communication method can be at least 4G/5G/WIFI/BT (Bluetooth)/mobile phone hotspot (private area network)
  • the invention is not limited in this respect.
  • the electric energy charging station 20 can be designed as at least one of the communication methods to achieve communication, and the communication design can be designed according to specific needs and costs.
  • the slave mobile power distribution device 21B and the main mobile power distribution device 21A are communicatively connected, wherein the communication method can be at least one of 4G/5G/WIFI/BT (Bluetooth) mobile phone hotspots (private area network) One, the invention is not limited in this respect.
  • the power distribution object 30 communicates with the corresponding mobile power distribution device 21 in a manner of direct contact communication, so as to reduce communication costs.
  • the power distribution object 30 communicates with the corresponding mobile power distribution device 21 in a wireless communication manner, and its communication methods include but are not limited to WIFI/Bluetooth/Private Area Network (Mobile hotspot)/4G/5G.
  • the mobile power distribution device 21 is connected to the power distribution object 30 by wireless communication, and the mobile power distribution device 21 can communicate wirelessly with other power distribution objects 30 in the same geographic area space S1 . That is, the slave mobile power distribution device 21B and the power distribution object 30 held in the same geographical area space S1 communicate with the master mobile power distribution device 21A, respectively.
  • the object to be distributed 30 may communicate through at least two communication methods.
  • the mobile power distribution device 21 communicates with the power holding device 22 through at least one power distribution object 30 .
  • the power distribution object 30 is connected to the power-holding device 22 through a communication module, such as 4G/5G or WIFI, and the power-holding device 22 relays communication-related information to the server 10 .
  • a communication module such as 4G/5G or WIFI
  • Other power distribution objects 30 are connected to the power distribution objects 30 through WIFI signal communication, thereby reducing communication costs.
  • the power distribution object 30 is connected to the power holding device 22 through 4G/5G or WIFI communication.
  • the other object to be distributed 30 is connected to the object to be distributed 30 in communication with the Bluetooth signal.
  • the power distribution object 30 communicated with the power holding device 22 is the main power distribution object 30A, and the other power distribution objects 30 kept in the same geographical area space S1 are connected to the power distribution object 30 through the main power distribution object 30A
  • the server 10 becomes the slave power distribution object 30B, wherein the communication method of the slave power distribution object 30B is less restricted than that of the master power distribution object 30A.
  • the present invention is not subject to any limitation in the way of communication.
  • the mobile power distribution device 21 communicates with the power distribution object 30 in a direct contact manner.
  • the mobile power distribution device 21 obtains communication-related information or sends communication-related information in a manner of wirelessly communicating with the power-distributed object 30 supplied by it.
  • the mobile power distribution device 21 communicates with the power distribution objects 30 using a communication protocol, wherein the slave power distribution object 30 in the power distribution objects 30 sends to the main power distribution object 30B.
  • the main power distribution object 30B sends the communication related information of the mobile power distribution device 21 to the power holding device 22 , and the power holding device 22 is communicated with the server 10 .
  • the two power-holding devices 22 kept in the same geographical area space S1 are communicably connected, so that the main mobile power distribution device 21A in the same geographical area space S1 can communicate with any power-holding device device 22.
  • the power holding device 22 provides at least one local area network.
  • the signal of the power holding device 22 detected by the mobile power distribution device 21 is used to send communication-related information to the power holding device. device 22.
  • the mobile power distribution device 21 automatically changes the local area network according to the signal strength of any power-holding device 22 to send communication-related information.
  • the power-holding device 22 includes a master power-holding device 22A and a slave power-holding device 22B, the master power-holding device 22A and the slave power-holding device 22B are communicably connected, so that the sharing terminal 200 of the same geographic area space S1 can communicate with the master power-holding device device 22A and/or slave powered device 22B.
  • the power distribution object 30 of the shared terminal 200 or the mobile power distribution device 21 can communicate with the slave power device 21 preferentially.
  • Device 22B the power distribution object 30 of the sharing terminal 200 or the mobile power distribution device 21 can directly communicate with the server 10, and the preferred situation includes that the power distribution object 30 of the sharing terminal 200 or the mobile power distribution device 21 cannot be communicatively connected to any A power holding device 22 .
  • the sharing terminal 200 includes multiple mobile power distribution devices 21 and multiple power distribution objects 30 .
  • the mobile power distribution device 21 includes at least one master mobile power distribution device 21A and at least one slave mobile power distribution device 21B.
  • the sharing terminal 200 comprising the master mobile power distribution device 21A is the master sharing terminal 200A, and the master sharing terminal 200A can communicate with the host power distribution device. device 22A and/or slave powered device 22B. That is to say, the master mobile power distribution device 21A can communicate with the master power device 22A and/or the slave power device 22B.
  • the main mobile power distribution device 21A of the main sharing terminal 200A can preferentially communicate with the slave power holding device 22B.
  • Device 22B the main mobile power distribution device 21A of the main sharing terminal 200A can directly communicate with the server 10 , and the preferred situation includes that the main mobile power distribution device 21A of the main sharing terminal 200A cannot be communicatively connected to any power holding device 22 .
  • the sharing terminal 200 includes multiple mobile power distribution devices 21 and multiple power distribution objects 30 .
  • the distributed object 30 includes at least one master distributed object 30A and at least one slave distributed object 30B, and the sharing terminal 200 including the master distributed object 30A is the master sharing terminal 200A, and the master sharing terminal 200A can communicate with the master power sharing terminal 200A.
  • device 22A and/or slave powered device 22B That is to say, the master and distributed object 30A can communicate with the master power device 22A and/or the slave power device 22B.
  • the master power distribution object 30A of the master share terminal 200A can preferentially communicate with the slave power device 22B.
  • Device 22B the master power distribution object 30A of the main sharing terminal 200A can directly communicate with the server 10 , and the preferred situation includes that the main power distribution object 30A of the main sharing terminal 200A cannot be communicatively connected to any power holding device 22 .
  • the power distribution object 30 of the sharing terminal 200 or the mobile power distribution device 21 can directly communicate with the server 10, and the preferred situation includes that the power distribution object 30 of the sharing terminal 200 or the mobile power distribution device 21 cannot be communicatively connected to any A power holding device 22 .
  • the power-holding device 22 includes a master power-holding device 22A and a slave power-holding device 22B, the master power-holding device 22A and the slave power-holding device 22B are communicably connected, so that each sharing terminal 200 in the same geographical area space S1 can communicate with The master power device 22A and/or the slave power device 22B.
  • the shared terminal 200 cannot communicate with the host power device 22A or the shared terminal 200 that is closer to the slave power device 22B, the power distribution object 30 of the shared terminal 200 or the mobile power distribution device 21 can communicate with the slave power device 21 preferentially.
  • Device 22B is a master power-holding device 22A and a slave power-holding device 22B, the master power-holding device 22A and the slave power-holding device 22B are communicably connected, so that each sharing terminal 200 in the same geographical area space S1 can communicate with The master power device 22A and/or the slave power device 22B.
  • the power distribution object 30 of the shared terminal 200 or the mobile power distribution device 21 can communicate with the slave power device 21 preferential
  • the power distribution object 30 of the shared terminal 200 or the mobile power distribution device 21 can communicate with the slave power device 21 preferentially.
  • Device 22B
  • the power distribution object 30 of the sharing terminal 200 or the mobile power distribution device 21 can directly communicate with the server 10, and the preferred situation includes that the power distribution object 30 of the sharing terminal 200 or the mobile power distribution device 21 cannot be communicatively connected to any A power holding device 22 .
  • the power sharing system further includes at least one user terminal 40 .
  • the user terminal 40 is communicatively connected to the server 10 to communicate at least one piece of communication-related information.
  • the power sharing system 1 further includes at least one service terminal 50, and the service terminal 50 is communicatively connected to the server 10 to communicate at least one communication-related information.
  • the user terminal 40 or the electric energy charging station 20 sends at least one user request 101 to the server 10, and the server 10 generates at least one user request 101 after receiving the user request 101 sent by the user terminal 40 or the electric energy charging station 20 Instruction 102.
  • the mobile power distribution device 21 can receive the instruction 102 sent by the server 10 . More preferably, the mobile power distribution device 21 can receive the instruction 102 sent by the server 10 and send at least one sharing terminal feedback 103 .
  • the power distribution object 30 sends the instruction 102 sent by the server 10 to the mobile power distribution device 21 after receiving it. More preferably, the power distribution object 30 receives the instruction 102 sent by the server 10 to the mobile power distribution device 21, and the mobile power distribution device 21 sends at least one sharing terminal feedback 103 to at least the power holding device 22, and the power holding device 22 packs and sends the shared The terminal feeds back 103 to the server 10.
  • the server 10 when the user sends a power usage request 1011 to the server 10 through the user terminal 40 or the electric energy charging station 20, the server 10 generates a power usage release command 1021 according to the power usage request 1011, and the server 10 sends the power usage release command 1021 to The mobile power distribution device 21 or the power distribution object 30 .
  • the electricity usage request 1011 includes the device identifier 1001 of the power distribution object 30 and the user identifier 1002 of the user, and the electricity usage request 1011 may also include other relevant information, and the present invention is not limited in any way here.
  • the server 10 receives a configuration message carrying at least one device identifier 1001 of the power holding device 22, the mobile power distribution device 21 or the object 30 to be distributed and the user identifier 1002 of the user. Electrical related request 1011.
  • the server 10 generates a power distribution release command 1021 , and the sharing terminal 200 executes the power distribution release command 1021 after receiving the power distribution release command 1021 sent by the server 10 , so that the power distribution object 30 can be used by the user.
  • the power holding device 22 receives the power distribution release instruction 1021 sent by the server 10 and sends it to the power distribution object 30 and/or the mobile power distribution device 21, and then the power distribution object 30 and/or the mobile power distribution device 21 executes the release distribution command. Electrical Instructions 1021.
  • the user can scan the two-dimensional code image information of the power-holding device 22 through the user terminal 40 to obtain the device identifier 1001 of the power-holding device 22 .
  • the user request 101 sent by the user through the user terminal 40 may carry the first device identifier 1001A of the mobile power distribution device 21 and the user identifier 1002 of the user. That is, in other modified embodiments, the user can rent the power distribution object 30 through the power holding device 22, and the power holding device 22 can be directly rented by the user to accommodate the power distribution object 30 for power supply or the mobile power distribution device for power supply. 21 to be distributed object 30.
  • the user scans the two-dimensional code image information of the mobile power distribution device 21 through the user terminal 40 to obtain the first device identifier 1001A of the mobile power distribution device 21, since the user terminal 40 is authorized by the user Having obtained the user identifier 1002 of the user, the user request 101 sent by the user through the user terminal 40 may carry the first device identifier 1001A of the mobile power distribution device 21 and the user identifier 1002 of the user.
  • the user terminal 40 sends a power distribution related request 1011 carrying at least one device identifier 1001 of the power holding device 22, the mobile power distribution device 21 or the power distribution object 30 and the user's user identifier 1002 to the server 10, and the server 10 receives After receiving the power distribution-related request 1011 sent by the user terminal 40, a power distribution release command 1021 is generated. After the power holding device 22 receives the power distribution release command 1021 sent by the server 10, the power holding device 22 sends it to the mobile power distribution device 21. Make the mobile power distribution device 21 execute the release power distribution instruction 1021, so that the power distribution object 30 can be used by the user.
  • the user request 101 is implemented as a power usage request 1011 , and the power usage request 1011 carries the first device identifier 1001A of the mobile power distribution device 21 and the user identifier 1002 of the user.
  • the mobile power distribution device 21 actively obtains the characteristic information of the user to obtain the user identifier 1002 of the user.
  • the mobile power distribution device 21 sends the first device identifier 1001A of the mobile power distribution device 21 and the user identifier 1002 of the user under the authorization of the user.
  • the mobile power distribution device 21 acquires the user's feature information in an active way, such as face recognition, fingerprint recognition, voice recognition, scanning two-dimensional code and other detection methods, and can also use the account password to acquire the user's feature information or receive Authorization information of the authorized user terminal 40.
  • the mobile power distribution device 21 sends the first device identifier 1001A of the mobile power distribution device 21 and the user identifier 1002 of the user under the authorization of the user.
  • the mobile power distribution device 21 sends a power distribution related request 1011 carrying at least one device identifier 1001 of the mobile power distribution device 21 and a user identifier 1002 of the user to the power holding device 22, and the power holding device 22 sends it to the server 10, and the server 10
  • a power distribution release command 1021 is generated, and the mobile power distribution device 21 is transferred by the power holding device 22 to receive the power distribution release command 1021 sent by the server 10 Execute the release power distribution instruction 1021, so that the power distribution object 30 can be used by the user.
  • the user scans the two-dimensional code image information of the power distribution object 30 through the user terminal 40 to obtain the second device identifier 1001B of the mobile power distribution device 21 .
  • the power distribution object 30 receives the mobile power distribution device 21 carrying at least one device identifier 1001 of the mobile power distribution device 21 or the power distribution object 30 and the user's user identifier 1002
  • a power distribution related request 1011 is sent by the power distribution object 30 to the power holding device 22 .
  • the power distribution related request 1011 is sent to the server 10 through the relay of the power holding device 22 .
  • the server 10 generates a power distribution release command 1021
  • the power-holding device 22 receives the power distribution release command 1021 sent by the server 10 and sends it to the power distribution target 30, and the power distribution target 30 executes the power distribution release command 1021, so that the power distribution The electric object 30 can be used by a user.
  • the mobile power distribution device 21 sends a task end feedback 1031 that ends the power distribution task corresponding to the power distribution object 30 and carries the second device identifier 1001B of the power distribution object 30 to the power distribution object 30.
  • the electric object 30 transfers the task end feedback 1031 to the server 10, so that the server 10 receives the sharing terminal feedback 103 that ends the power distribution task corresponding to the power distribution object 30 and carries the second device identifier 1001B of the power distribution object 30 Processing generates at least one task-in-progress message.
  • the difference from the embodiment shown in FIG. 12A of the accompanying drawings is that the user communicates with the mobile power distribution device 21 through the user terminal 40 to obtain the first device identifier of the mobile power distribution device 21 1001A.
  • the server 10 when the user completes the order task, the server 10 generates a bill 104 to be paid.
  • the user sends at least one payment authorization message 106 to the server 10 through the user terminal 40 to pay the pending bill 104 .
  • the server 10 generates an order task information 107 .
  • the user terminal 40 can always be communicatively connected to the server 10 to view the order task information 107 of the intermediate state information.
  • Order task information 107 includes, but is not limited to, task progress information, bills to be paid 104, and order tasks after tasks are completed.
  • the server 10 when the user completes the order task, the server 10 generates a bill 104 to be paid.
  • the user sends at least one payment authorization message 106 to the power-storage device 22 through the mobile power distribution device 21 , and the power-storage device 22 sends the payment authorization message 106 to the server 10 to complete payment of the pending bill 104 .
  • the server 10 generates an order task information 107 .
  • the power holding device 22 can always be communicatively connected to the server 10 to send the order task information 107 to the mobile power distribution device 22 so that the user can view the intermediate status information through the sharing terminal 200 .
  • Order task information 107 includes, but is not limited to, task progress information, bills to be paid 104, and order tasks after tasks are completed.
  • the user can interact with the mobile power distribution device 21, and the interaction method is not limited, and the interaction method includes but is not limited to touch screen, voice, camera, and button.
  • the user obtains the user characteristic information through the detection module of the mobile power distribution device 21, and interacts in a manner displayed on a display screen.
  • the power-holding device 22 may be implemented as a communication transfer station in the same geographic area space S1.
  • the power distribution object 30 can be implemented as a communication transfer station in the same geographical area space S1.
  • At least two power-holding devices 22 can be used as the information transfer station of the geographical area space S1, and the information transfer station of each social space unit S2 can be selected in real time according to the situation.
  • the present invention Not subject to any restrictions. That is to say, according to the strength of the signal, the sharing terminals 200 of different social space units S2 can be selected to communicate with one of the power-holding devices 22, so that the power-holding device 22 serves as an information transfer station of the social space unit S2.
  • the mobile power distribution device 21 releases one of the power distribution objects 30 that meets the release condition.
  • the power distribution object 30 that satisfies the release condition is implemented as a power distribution object 30 whose power is greater than the minimum power distribution threshold and can communicate with the mobile power distribution device 21. It is worth mentioning that meeting the conditions for being released can be designed according to specific conditions. In addition, the released condition may be implemented as other conditions, and the present invention is not limited in any way.
  • the minimum power distribution threshold of the power distribution object 30 that is released from the condition may be 30%.
  • the minimum power distribution threshold of the distributed object 30 is 40%. More preferably, the minimum power distribution threshold of the distributed object 30 is 50%. More preferably, the minimum power distribution threshold of the distributed object 30 is 60%.
  • the minimum power distribution threshold of the power distribution object 30 to be released may also be 70%, 75%, 80%, 85% or 90%, and the present invention is not limited thereto.
  • the release condition satisfied by the power distribution objects 30 is that the power distribution objects 30 with relatively high power among the power distribution objects 30 are released.
  • the leased power distribution object 30 can be placed in the nearby mobile power distribution device 21, and when the power distribution object 30 is contacted by the mobile power distribution device 21 for communication, the mobile power distribution device 21 will send the completed corresponding
  • the task end feedback 1031 of the electric object 30, and the task end feedback 1031 carries the device identifier 1001 of the power distribution object 30, so that the server 10 receives the power sharing terminal 200 relayed by the power holding device 22 carrying the power distribution object 30
  • the task end feedback 1031 of the device identifier 1001 is processed to generate a bill 104 to be paid.
  • the bills to be paid 104 acquired by the user through the user terminal 40 include but are not limited to specific contract information and payment licensing contracts.
  • the user authorizes to pay the fee corresponding to the pending bill 104 .
  • the bill completion information 106 authorized by the user is sent to the server 10 , so that the server 10 updates the power related information 105 according to the mobile power distribution device 21 and/or the power distribution object 30 according to the bill completion information 106 .
  • the server 10 is communicatively connected to the power holding device 22 to obtain real-time power related information 105 of the mobile power distribution device 21 and/or the power distribution object 30 and obtain a management strategy.
  • the power distribution object 30 receives the instruction 102 forwarded by the power holding device 22 . More preferably, the power distribution object 30 receives the instruction 102 sent by the server 10 and sends at least one shared terminal feedback 103 .
  • the user terminal 40 sends a user request 101 carrying at least one device identifier 1001 of the electric energy replenishment station 20 or the power distribution object 30 and the user identifier 1002 of the user to the server 10, and the server 10 receives the power distribution related information sent by the user terminal 40.
  • the server 10 receives the power distribution related information sent by the user terminal 40.
  • at least one instruction 102 is generated, and the power distribution object 30 receives the instruction 102 sent by the server 10 relayed by the power holding device 22, and the power distribution object 30 sends the instruction 102 to the mobile power distribution device 21, so that the power supply station 20 Instructions 102 are executed in a controlled manner.
  • the mobile power distribution device 21 sends communication related information through the power distribution object 30 accommodated therein.
  • the present invention is not limited thereto.
  • the server 10 of the power sharing rental system 1 generates at least one service information 108 according to the feedback 103 of the sharing terminal, and the service information 108 can be sent to the electric energy replenishment station 20 .
  • the service information 108 includes and is not limited to service reminder information requiring charging, order information, advertisement feedback information, scoring information, user payment menu information and other communication information, and the present invention is not limited thereto.
  • the service information 108 is a power distribution service reminder, and the power distribution service reminder can be sent to the service terminal 50 .
  • the power distribution service reminder includes but is not limited to that the power of the power replenishment station 20 is lower than the minimum replenishment threshold and/or equipment failure, so as to remind service personnel to provide services.
  • the service terminal 50 can send at least one merchant feedback 109 to the server 10 in real time. For example, if the sharing terminal 200 is damaged, the service terminal 50 can send a maintenance feedback to the server 10 so that the server 10 can obtain information from a third party.
  • the shared power rental system 1 further includes at least one service terminal 50 , and the service terminal 50 receives at least one power distribution service reminder 108 from the server 10 .
  • the power distribution service reminder 108 is displayed or voiced to remind the service personnel to provide power storage maintenance service to the power replenishment station 20 .
  • the power distribution service reminder 108 is sent to the user terminal 50 by the server 10, and the power distribution service reminder 108 is used by the user to solve the service demand, and the present invention is not limited in any way here.
  • the electric energy replenishment station 20 or the power distribution object 30 sends a sharing terminal feedback 103 to the server 10 in real time.
  • the server 10 obtains a power management library according to the power related information 105 of the mobile power distribution device and/or the power distribution object 30, wherein the shared terminal feedback 103 may include an abnormal warning of at least one power replenishment station 20 and/or power distribution object 30 , the electric energy related information of the electric energy replenishment station 20 and/or the object 30 to be distributed.
  • a restaurant when a restaurant is used as an application scenario of a geographical area space S1, at least three mobile power distribution devices 21 of the shared power rental system 1 are placed on the seats or desktops of the restaurant, and each of the restaurants is Equipped with at least one mobile power distribution device 21, users who are dining can rent the power distribution object 30 in real time at the dining table without moving left and right.
  • the mobile power distribution device 21 includes at least one mobile power distribution part 210 and has a mobile receiving cavity 2100, at least one distributed cavity 2101, and a release opening 2102 that connects the powered cavity 2101 with the external space.
  • the electric cavity 2100 and the mobile storage cavity 2101 are held at intervals, the mobile power distribution part 210 is communicably connected to other equipment, the mobile power distribution part 210 is accommodated in the mobile power distribution cavity 2100, and is accommodated by the power distribution object 30 It is held by the mobile power distribution part 210 in a position-limited manner by means of the power distribution cavity 2101 .
  • the mobile power distribution part 210 further includes at least one power storage part 211, a control module 212, a power distribution actuator 213, an output part 215 and an input part 214, wherein the power storage part 211, the power distribution actuator 213 and The output part 215 is respectively circuit connected to the control module 212.
  • the control module 212 converts the input electric energy into electric energy suitable for storage by the power storage part 211, and the power storage part 211 The electricity is stored.
  • the power distribution object 30 is output by the output unit 215 , the power distribution object 30 is accommodated in the power distribution chamber 2101 .
  • the power distribution actuator 213 is set in the mobile power distribution unit 210, the power distribution object 30 is powered by the mobile power distribution unit 210, and the power distribution object 30 is limited by the power distribution actuator 213, when the mobile power distribution unit 213 executes the release command , the power distribution object 30 is released, wherein the power distribution actuator 213 is a locking mechanism or a magnetic attraction mechanism.
  • the power distribution actuator 213 is a magnetic attraction mechanism, and the power distribution object 30 is placed at a preset position, the power distribution object 30 is automatically magnetically attracted.
  • the power distribution actuator 213 is a locking mechanism and the power distribution object 30 is placed at a preset position, the power distribution object 30 is triggered to be locked or automatically locked after being placed.
  • the server 10 After the server 10 receives at least one return-related information, the server 10 sends a return permission command to the electric energy replenishment station 20 or the distributed object 30 placed at the electric energy replenishment station 20 to receive the The object 30 to be distributed. Further, the server 10 sends a return permission command to the mobile power distribution device 21 or the power distribution object 30 placed on the mobile power distribution device 21 for the mobile power distribution device 21
  • the electrical unit 210 receives the object to be distributed 30 to be returned, and the power distribution actuator 213 executes locking the object to be distributed 30 .
  • the output unit 215 is connected to the control module 212 by a circuit, and the output unit 215 outputs current to the distributed object 30 accommodated in the distributed cavity 2101 .
  • the output part 215 includes at least two output terminals 2150 , wherein the output terminals 2150 can be connected to the object 30 to be distributed by a circuit.
  • the output end 2150 can be connected to the object to be distributed 30 wirelessly or by wire, and the present invention is not limited in this respect.
  • the control module 212 includes a control module 2121 and at least one communication module 2122, the communication module 2122 is communicably connected to the control module 2121, and the communication module 2122 is communicably connected to other mobile power distribution devices 21, power distribution objects 30 and servers 10.
  • the communication module 2122 can be communicatively connected to other systems, and the present invention is not limited thereto.
  • the power distribution actuator 213 is controlled by the control module 212 to automatically release the power distribution object 30 accommodated in the power distribution cavity 2101 .
  • the power distribution actuator 213 includes a motor 2131 and a movable body 2132, wherein the motor 2131 is drivingly connected to the movable body 2132, the motor 2131 is controlled and driven by the control module 212, and the motor 2131 is drivenly connected to the movable body 2132 , the movable body 2132 is driven by the motor 2131 into the power distribution chamber 2101 to be locked in a groove (not numbered) of the power distribution object 30 held in the power distribution chamber 2101 . That is, the movable body 2132 switches between a locking position and a releasing position, and when the movable body 2132 is held at the locking position, the movable body 2132 enters the power distribution cavity 2101 . When the movable body 2132 is held at the release position, the movable body 2132 is moved away from the power distribution chamber 2101 to be freely held by the power distribution object 30 .
  • the movable body 2132 is held in the chamber 2101 to be distributed, and when the object 30 to be distributed is placed in the chamber 2101 to be distributed, the movable body 2132 is squeezed and held by the object 30 to be distributed. That is to say, the object to be distributed 30 is close to the release opening 2102 relative to the movable body 2132 .
  • the power distribution object 30 When the power distribution object 30 is placed in the power distribution cavity 2101, when the movable body 2132 is driven out of the power distribution cavity 2101, the power distribution object 30 is not limited by the movable body 2132, so that the movable body 2132 can Under the action, the object to be distributed 30 is driven to pop out, and the object to be distributed 30 protrudes from the outer surface of the mobile power distribution device 21, and then the part of the object to be distributed 30 protruding from the surface of the mobile power distribution device 21 can be used by the user crawl.
  • the object to be distributed 30 When the object to be distributed 30 is placed into the power distribution chamber 2101 by the user from the release opening 2102 , the movable body 2132 is driven and kept at the locking position, so as to lock the object to be distributed 30 .
  • the power distribution object 30 is accommodated and supplied to the mobile power distribution device 21 . Further, the power distribution object 30 is housed and powered by the mobile power distribution device 21 and moves along with the mobile power distribution device 21 , so that the user can rent electricity at the nearest mobile power distribution device 21 . The used power distribution object 30 can be quickly returned to the nearby mobile power distribution device 21 .
  • the mobile power distribution device 21 may be circuit connected to an external DC power source, AC power source or mains power.
  • the power storage unit 211 includes at least two batteries 2111 . That is to say, the mobile power distribution device 21 has its own built-in battery 2111, so that the power distribution object 30 is accommodated and powered by the mobile power distribution device 21. At the same time, the mobile power distribution device 21 can be used for communication and interaction, so that the mobile power distribution The device 21 is not only used as a storage power supply device.
  • Power storage unit 211 includes at least four batteries 2111 .
  • the battery 2111 preferably automatically supplies power to the power distribution object 30 .
  • the battery 2111 when the mobile power distribution device 21 is used as a mobile device, can preferably maintain at least 20% of the power for its own use.
  • the battery 2111 preferably maintains the power used by itself and can be set according to specific needs, which should be understood and known by those skilled in the art, and the present invention is not limited in any way here.
  • the control module 212 includes at least one communication unit 2121 and a control unit 2120 , the control unit 2120 can process information for smart services, and the communication unit 2121 is connected to the control unit 2120 by a circuit.
  • the communication unit 2121 is used for communication.
  • the communication unit 2121 can receive information from external devices and/or the server 10 .
  • the type of the communication unit 2121 is selected from the type group of 4G/5G substrate, WIFI substrate, and Bluetooth (BT) substrate.
  • the mobile power distribution device 21 is controlled by the server 10 to execute a power distribution release command 1021 to release the power of the power distribution object 30 .
  • the mobile power distribution device 21 releases the power distribution object 30 by ejecting the power distribution object 30 , and the user can obtain the power distribution object 30 within the allowed time.
  • the mobile power distribution device 21 releases the electric energy of the power distribution object 30 by controlling the power distribution object 30 to output current.
  • the output part 215 is implemented as at least three pins.
  • the output part 215 is circuit-connected to the power distribution object 30, and the output part 215 communicates with the power distribution object.
  • Subject 30 That is to say, one of the pins of the output unit 215 can communicate with the power distribution object 30 .
  • the object to be distributed 30 includes at least one power distribution control part 310, a power distribution power supply part 320, a power distribution input part 330 and a power distribution output part 340, and the power distribution control part 310 is connected to the circuit To the power distribution supply unit 320 , the power distribution input unit 330 and the power distribution output unit 340 , the power distribution input unit 330 inputs current under the control of the power distribution control unit 310 , and the power distribution output unit 340 outputs current.
  • the power distribution input part 330 inputs DC current
  • the power distribution output part 340 outputs DC current in a corded or cordless manner.
  • the power distribution and power supply unit 320 includes at least one power distribution battery 321 . Since the power distribution object 30 can be separated from the mobile power distribution device 20 and connected to other devices 60 , the power distribution object 30 is convenient for users to supply power when there is no charging stand.
  • the power distribution input part 330 is connected to the mobile power distribution device 20 in a plug-in manner.
  • the power distribution input part 330 of the power distribution object 30 is plugged into the three pins of the output part 215, the output part 215
  • the circuit is connected to the power distribution object 30 , and the output unit 215 communicates with the power distribution object 30 .
  • the mobile power distribution device 21 supplies power to the object 30 to be distributed wirelessly.
  • the output unit 215 of the mobile power distribution device 21 is implemented as a wireless output unit.
  • the output unit 215 is controlled by the control module 212 to output current.
  • the power distribution object 30 can controlly output current without being plugged into the mobile power distribution device 20 .
  • the object to be distributed 30 and the mobile power distribution device 21 can be detachably set up, but the distribution of power to the object to be distributed 21 is controlled by means of the mobile power distribution device 21 controlling the object 21 to be distributed to release electric energy. on other devices 50 . That is to say, the object to be distributed 30 does not output current to other devices 50 in a manner that physically restricts whether the object to be distributed 30 can be disengaged from the mobile power distribution device 21. After the device 21 sends a release command to the power distribution object 21 , the power distribution object 21 can output current to supply power to other devices 20 .
  • the power distribution object 30 after the power distribution object 30 is released from the power distribution cavity 2101 of the mobile power distribution device, the power distribution object 30 supplies power to other devices 60 in a mobile manner.
  • the object to be distributed 30 may be integrally arranged on the mobile power distribution device 21, so that the object to be distributed 30 is powered by releasing electric energy on other devices 50 . That is to say, the power distribution object 30 and the mobile power distribution device 21 are assembled into one body.
  • the device 60 is connected to the circuit when it is brought close to the mobile power distribution device 21, and the way the device 60 is brought close to the mobile power distribution device 21 includes being attached to the mobile power distribution device 21 or the device 60 is within a certain distance from the mobile power distribution device 21 , so that the device 60 is powered by the mobile power distribution device 21 .
  • the device 60 is attached to the top surface of the mobile power distribution device 21 to be powered by the mobile power distribution device 21 .
  • the charging method in which the power distribution object 21 is connected to the device 50 by a circuit is not limited by the present invention, that is, the power distribution object 21 uses at least one of wireless charging and wired charging. Power is supplied to device 50 .
  • the power distribution object 30 is stored in the mobile power distribution device 21 in a locked position, so that the power distribution object 30 will not be taken at will.
  • the power distribution object 30 can only be released under the control of the shared power distribution management system 100 .
  • a mobile power distribution device 21 When a mobile power distribution device 21 is in a communication abnormal state, other mobile power distribution devices 21 close to the mobile power distribution device 21 can obtain the abnormal information of the mobile power distribution device 21 to send information including the communication abnormal state of the mobile power distribution device Shared terminal feedback 103.
  • the mobile power distribution device 21 sends the sharing terminal feedback 103 to the server 10 and/or the mobile power distribution device 21 sends the sharing terminal feedback 103 to the power holding device 22, so as to be sent by the power holding device 22
  • the shared terminal feeds back 103 to the server 10 .
  • the shared power rental system 1 includes at least two mobile power distribution device 21, and each mobile power distribution device 21 can be used for interaction, so that the mobile power distribution device 21 can provide user interaction and entertainment services when kept in the user's social space unit S2.
  • the mobile power distribution device 21 includes at least one mobile power distribution unit 210 and at least one interaction processing unit 216 , and the interaction processing unit 216 is circuit-connected to the mobile power distribution unit 210 for the user to interact with the interaction processing unit 2160 .
  • the mobile power distribution unit 210 is communicably connected to the interaction processing unit 216 .
  • the sharing terminal 200 of each social space unit S2 can break up the divided social space unit S2S2, so as to break the social distance of users.
  • the mobile power distribution devices 21 are communicatively connected, so that users can interact with different mobile power distribution devices 21 .
  • the interactive processing unit 216 includes at least one display to display a game of moving and merging circles.
  • the interactive processing unit 216 is controlled by the user to touch the screen or remotely control the progress of the game, and the mutual pk between users way to interact.
  • the two mobile power distribution devices 21 can also communicate.
  • the mobile power distribution device 21 is moved to any power-demanding location in real time, and the adjacent mobile power distribution devices 21 are communicatively connected, and the shared power rental system 1 includes at least two mobile power distribution devices 21.
  • the mobile power distribution device 21 is moved to any power demand location in real time, and the adjacent mobile power distribution devices 21 are communicably connected, so that the shared power rental system 1 forms electric energy related information including a mobile power distribution device information list 105.
  • the mobile power distribution devices 21 can communicate with each other, so that the mobile power distribution device information list can provide at least one mobile power distribution device information list within the range to the user in real time, so as to remind the user that the adjacent real-time mobile power distribution device 21 can be Serve.
  • the mobile power distribution devices 21 can communicate with each other. When a certain mobile power distribution device 21 is far away from the signal source and the received signal coverage is weak, other mobile power distribution devices 21 with better signal coverage can be used to forward the signal to The mobile power distribution device 21 .
  • the mobile power distribution device information list includes and is not limited to information such as the number of adjacent mobile power distribution devices, power consumption, and rentable information display.
  • the present invention is not limited in any way here, and can be designed according to specific needs.
  • the number of mobile power distribution devices 21 is selected from 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20 , 21, 22, 23, 24, 25, 26, 27, 28, 20, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 40 quantity groups.
  • the power sharing system 1 forms a power renting map.
  • the mobile power distribution devices 21 can communicate with each other, so that the mobile power distribution device 21 can provide at least one power rental map within the range to the user in real time, so as to remind the user that the adjacent real-time mobile power distribution device 21 can be served.
  • the power rental map includes but is not limited to displaying information such as the number of adjacent mobile power distribution devices 21 , power consumption, distance, and the number of rentable and distributed power objects 30 .
  • the power distribution object 30 sends communication-related information through the corresponding mobile power distribution device 21 .
  • a mobile power distribution device 21 is in an abnormal state of communication
  • other mobile power distribution devices 21 close to the mobile power distribution device 21 can obtain the abnormal information of the mobile power distribution device 21 to send information including the communication abnormal state of the mobile power distribution device shared terminal feedback 103 to the server 10.
  • the mobile power distribution devices 21 can be communicatively connected to other mobile power distribution devices 21 .
  • the interaction processing unit 216 is communicably connected to the shared power distribution system 100 and other service systems, such as a meal ordering system, an entertainment system, etc., and the present invention is not limited thereto.
  • the mobile power distribution device 21 may provide list information of mobile power distribution devices 21 adjacent to the user that can be powered.
  • the interactive processing unit 216 is communicably connected to the order system 400, where the display content of the order system 400 includes but is not limited to at least one dish, price and promotion information. Users can trigger it by remote control, touch screen, voice, and motion.
  • the interaction processing unit 216 may include multiple detection modules and displays.
  • the detection module includes and is not limited to image detection, sound detection, motion detection, pressure detection and temperature detection, which can be understood and known by those skilled in the art.
  • the image detection of the detection module can be a type group of colored light detection, laser detection, radar detection, and infrared detection.
  • the pressing force detection and temperature detection of the detection module are integrated into the display to be triggered by the user touching the screen.
  • the interaction processing unit 216 displays a shopping cart module.
  • the interaction processing unit 216 sends the order information to the order system to generate at least one order information.
  • the interaction processing unit 216 can display the order information.
  • control module 212 has written the screen projection protocol.
  • the mobile power distribution device 21 and the smart device are kept in the same WIFI, when the smart device is triggered to project the screen, the mobile power distribution device 21
  • the interaction processing unit 216 projects the display content of the smart device.
  • the smart device is the device 60, and further, the device 60 can be implemented as a mobile phone or an ipad.
  • the interaction processing unit 216 is detachably installed on the mobile device Electrical Section 210.
  • Mobile power distribution section 210 and interaction processing section 216 may be assembled. Since the mobile power distribution unit 210 and the interaction processing unit 216 are detachably provided, the interaction processing unit 216 can be used by the user in a manner away from the mobile power distribution unit 210 for user convenience.
  • the mobile power distribution unit 210 accommodates the limited power distribution object 30 .
  • the mobile power distribution unit 210 includes a power storage unit 211 , at least one control module 212 , at least one power distribution actuator 213 , an output unit 215 and an input unit 214 . That is, the mobile power distribution part 210 and the interaction processing part 216 may be independently maintained.
  • the interactive processing unit 216 further includes an interactive power storage unit 2161, at least one interactive control unit 2162, at least one interactive connection unit 2163, and an interactive input unit 2164, wherein the interactive control unit 2162 is electrically connected to the interactive power storage unit 2161, the interactive The connection part 2163 and the interactive input part 2164 , the interactive input part 2164 can be circuit connected to one of the output ends 2150 of the output part 215 of the mobile power distribution part 210 .
  • the interactive power storage unit 2161 stores electric power for use by the interactive processing unit 216 without power supply.
  • the interactive control unit 2162 includes an interactive control module 21621 and at least one interactive communication module 21622, the interactive communication module 21622 is communicably connected to the interactive control module 21621, and the interactive communication module 21622 is communicably connected to the communication module 2122 of the mobile power distribution device 21 , other interaction processing unit 216 or server 10, the present invention is not subject to any limitation here.
  • the interaction processing unit 216 may be connected to the mobile power distribution unit 210 .
  • the interactive connection part 2163 includes at least one first interactive connection part 21631 , the first interactive connection part 21631 can be connected to the mobile power distribution part 210 , and the first interactive connection part 21631 is arranged on the interaction processing part 216 .
  • the first interactive connection part 21631 may be implemented as a magnetic element, so that the interactive processing part 216 is attracted to the mobile power distribution part 210 .
  • the interaction processing part 216 may further include a second interaction connection part 21632 , and the second interaction connection part 21632 is disposed on the mobile power distribution part 210 to connect with the first interaction connection part 21632 .
  • the first interactive connection part 21631 is arranged on the mobile power distribution part 210 , and the interactive connection part 216 is connected to the first interactive connection part 21631 held on the mobile power distribution part 210 .
  • the first interactive connection part 21631 may be implemented as a magnetic element or a limiting element, and the present invention is not limited thereto.
  • the interactive processing part 216 and the mobile power distribution part 210 are assembled in a modular manner.
  • the interaction processing unit 216, the power storage unit 211 and other modules may be configured in a modular manner, so as to simplify the assembly of the device, the relationship between components, and save costs.
  • the mobile power distribution device 21 is communicably connected to the power holding device 22, and the mobile power distribution devices 21 are communicably connected.
  • the interaction processing unit 216 of the mobile power distribution device 21 communicates with the server 10, and the interaction processing unit 216 is communicatively connected to the mobile power distribution unit 210, wherein communication-related information is stored in different social space units S2
  • the interactive processing units 216 are communicatively connected.
  • Each interaction processing unit 216 of the same social space unit S2 communicates with the corresponding mobile power distribution unit 210 to communicate communication-related information.
  • the mobile power distribution unit 210 of the mobile power distribution device 21 communicates with the server 10, and the interaction processing unit 216 is communicatively connected to the mobile power distribution unit 210, wherein communication-related information is stored in different social space units S2
  • the mobile power distribution units 210 are communicatively connected.
  • Each interaction processing unit 216 of the same social space unit S2 communicates with the corresponding mobile power distribution unit 210 to communicate communication-related information.
  • the power storage unit 211 of the shared power rental system 1 and other Modules can be arranged in a modular manner to simplify the assembly of the device, the relationship between components, and save costs. That is, the mobile power distribution unit 210 includes at least one control module 212 , at least one power distribution actuator 213 , an output unit 215 , an input unit 214 and an interaction processing unit 216 . That is, mobile power distribution unit 210 and power storage unit 211 are independently held.
  • the power storage unit 211 of the mobile power distribution device 21 is maintained for long-term power storage, that is, the power storage unit 211 of the mobile power distribution device 21 is used as a power holding device twenty two.
  • the power storage unit 211 can be charged for a long time, and the mobile power distribution unit 210 is supported by the power storage unit 211 in such a manner that it is powered by the power storage unit 211 . That is, the mobile power distribution unit 210 is supplied with power by the power storage unit 211 in such a manner that it is placed in the power storage unit 211 .
  • the mobile power distribution unit 210 is not equipped with batteries, so as to reduce the overall volume of the mobile power distribution unit 210 , simplify the assembly of the device and the relationship between components, and save costs more.
  • the power storage unit 211 includes a battery pack 2110, a power storage input terminal 2111 and a power storage output terminal 2112, wherein the battery pack 2110 of the power storage unit 211 inputs current through the power storage input terminal 2111, and the battery pack 2110 outputs current through the power storage output terminal 2112. current.
  • the battery pack 2110 includes a plurality of batteries to store electricity.
  • the power storage output terminal 2112 can be selected from a wireless output terminal and/or a wired output terminal.
  • the power storage output terminal 2112 is implemented as a wireless output to supply power to the mobile power supply unit 210 .
  • the power distribution object 30 is released from the mobile power distribution unit 210 away from the mobile power distribution unit 210 to charge the user's device 60 .
  • the power distribution object 30 is integrally arranged in the mobile power distribution unit 210, and wirelessly supplies power to the user's device 60 by means of discharged power.
  • the interactive processing unit 216, the power storage unit 211 and other modules of the shared electricity rental system 1 can be It is configured in a modular manner to simplify the assembly of the device, the relationship between components, and save costs more. That is, the mobile power distribution unit 210 includes at least one control module 212 , at least one power distribution actuator 213 , an output unit 215 and an input unit 214 . That is, the mobile power distribution unit 210, the power storage unit 211, and the interaction processing unit 216 can be independently held.
  • the power storage unit 211 of the mobile power distribution device 21 is maintained for long-term power storage, that is, the power storage unit 211 of the mobile power distribution device 21 is used as a power holding device twenty two.
  • the power storage unit 211 can be charged for a long time, and the mobile power distribution unit 210 is supported by the power storage unit 211 in such a manner that it is powered by the power storage unit 211 . That is, the mobile power distribution unit 210 is supplied with power by the power storage unit 211 in such a manner that it is placed in the power storage unit 211 .
  • the mobile power distribution unit 210 is not equipped with batteries, so as to reduce the overall volume of the mobile power distribution unit 210 , simplify the assembly of the device and the relationship between components, and save costs more.
  • the power storage unit 211 includes at least one battery pack 2110, at least one power storage input terminal 2111 and at least one power storage output terminal 2112, wherein the battery pack 2110 of the power storage unit 211 inputs current through the power storage input terminal 2111, and the battery pack 2110 passes the power storage input terminal 2111 to input current.
  • the electrical output terminal 2112 outputs current.
  • the battery pack 2110 includes a plurality of batteries to store electricity.
  • the power storage output terminal 2112 can be selected from a wireless output terminal and/or a wired output terminal.
  • the power storage output terminal 2112 is implemented as a wireless output to supply power to the mobile power supply unit 210 .
  • the power distribution object 30 is released from the mobile power distribution unit 210 away from the mobile power distribution unit 210 to charge the user's equipment 60 .
  • the power distribution object 30 is integrally arranged in the mobile power distribution unit 210, and wirelessly supplies power to the user's device 60 by means of discharged power.
  • the power storage unit 211 is held on a support or a support surface, and the power storage unit 211 is charged for a long time. That is, power storage unit 211 is electrically connected to an AC power source, and mobile power distribution unit 210 is supported by power storage unit 211 so as to be movable relative to power storage unit 211 .
  • the power storage unit 211 is pre-buried and held on a support or a support surface, the power storage unit 211 is fixedly held, and the mobile power distribution unit 210 can move relative to the power storage unit 211 The manner is supported by the power storage unit 211 .
  • the power storage unit 211 and the mobile power distribution unit 210 are detachably separated, the power storage unit 211 is pre-buried and held on a support or a support surface, the power storage unit 211 is fixedly held, and the mobile power distribution unit 210 is The electric power is supplied by the electric storage unit 211 so as to be movable relative to the electric storage unit 211 .
  • the power storage unit 211 is pre-embedded to simplify external wiring.
  • the circuit connection method between the power storage unit 211 and the mobile power distribution unit 210 is not subject to any restrictions.
  • the power storage unit 211 and the mobile power distribution unit 210 can be connected wirelessly or wired, such as electric shock connection. Those skilled in the art Can understand and know.
  • the output unit 215 of the mobile power distribution unit 210 outputs by wire, and the output unit 215 outputs current by wire, and the mobile power distribution device 210 supplies power to the object to be distributed 30 in a housed manner.
  • the power distribution object 30 is integrally placed in the mobile power distribution unit 210 .
  • the wireless output unit 215 outputs current wirelessly, and the mobile power distribution device 210 supplies power to the device 60 wirelessly.
  • the power distribution object 30 is integrally placed in the mobile power distribution unit 210 .
  • the wireless output unit 215 outputs current in a corded manner, and the mobile power distribution device 210 is connected to the device 60 in a corded circuit.
  • the user can transfer communication-related information through the interaction processing unit 216, and the interaction processing unit 216 communicates with the server 10 and the mobile power distribution unit 210.
  • the interaction processing unit 216 sends the power usage request 1011 to the server 10 under the authorization of the user, the server 10 generates the power usage release command 1021 to the mobile power distribution unit 210, and the mobile power distribution unit 210 executes the power usage release command 1021 to release the distributed power Subject 30.
  • the mobile power distribution unit 210 executes the power consumption release command 1021 by releasing the power distribution object 30 .
  • the mobile power distribution unit 210 executes the power release command 1021 by directly releasing the power of the power distribution object 30 without releasing the entity of the power distribution object 30 .
  • the server 10 generates the power release instruction 1021 to the interaction processing unit 216, and the interaction processing unit 216 relays the power release instruction 1021 to the mobile power distribution unit 210, and the mobile power distribution unit 210 executes the power release command 1021.
  • the power-holding device 2222 includes a power-holding control part 222, one or more power-holding input parts 224 and one or more A power output unit 225.
  • the power holding control unit 222 can communicate with the server 10, and receive communication related information sent by the server 10, and process the power distribution related information.
  • the power-sustaining control unit 222 is connected to the power-sustaining input unit 224 and the power-sustaining output unit 225 by a circuit, and the power-sustaining output unit 225 outputs AC and/or DC current.
  • the power holding device 2222 includes a rectification part 223 , wherein the rectification part 223 is conductively connected to the power holding input part 224 to rectify the input AC current into a DC current.
  • the power holding device 2222 includes a detection unit 226.
  • the detection unit 226 detects the current, voltage, and temperature of the power holding input unit 224 and the power holding output unit 225 in real time.
  • the detection unit 226 sends at least one power holding detection result to the power holding control unit 222.
  • the power-sustaining control unit 222 processes the power-sustaining detection result and controls the power-sustaining input unit 224 and the power-sustaining output unit 225 to input and output.
  • the mobile power distribution device 2121 when the mobile power distribution device 2121 is placed in the power holding device 2222 , the mobile power distribution device 2121 is accommodated by the power holding device 2222 and powered by the power holding device 2222 .
  • the power holding device 2222 further includes a power holding and distribution part 220.
  • the mobile power distribution device 2121 When the mobile power distribution device 2121 is placed in the power holding and distribution part 220, the mobile power distribution device 2121 is accommodated by the power holding and distribution part 220 and The electrical output 225 supplies power.
  • the power-sustaining power distribution unit 220 has at least one power-sustaining power distribution chamber 2201 and at least one receiving opening 2202 that connects each power-sustaining power distribution chamber 2201 with the external space. There are a plurality of power sustaining output units 225 .
  • the power-sustaining output unit 225 is set in each power-sustaining power distribution chamber 2201 of the power-sustaining power distribution unit 220.
  • the mobile power distribution input unit 214 of the mobile power distribution device 2121 is circuit-connected to the power storage output unit 225 of the power storage device 2222 . More preferably, the power holding output part 225 is implemented as at least two power terminals.
  • the mobile input unit 214 of the mobile power distribution device 2121 can be connected to the power output unit 225 for power supply.
  • the power output unit 225 can be implemented as a TYPE C port, a USB port, a Lightning port, or other ports of the same type, which is not limited by this application.
  • the power holding output part 225 of the power holding device 2222 can output current wirelessly, so that when each mobile power distribution device 2121 is placed in the storage cavity 2201, the power holding output part 225 can inductively output current to the mobile power distribution device. Device 2121.
  • the power-sustaining power distribution part 220 includes a plurality of power-sustaining power distribution chambers 2201, and the number of power-sustaining output parts 225 is greater than or equal to the power-sustaining power distribution chamber 2201, so that each mobile power distribution device placed in the power-sustaining power distribution chamber 2201 2121 can be powered by the power output unit 225 . Furthermore, each mobile power distribution device 2121 placed in the power-sustaining power distribution cavity 2201 can be connected to the power-sustaining output part 225 or be powered wirelessly.
  • the power-holding device 22 includes at least one power-holding interaction part 228, which can be used for interaction, wherein the power-holding interaction part 228 can actively detect the user's user characteristics or the power-holding interaction part 228 The power release request from the user can be received.
  • the power-holding interaction unit 228 can feed back at least one of the instruction 102, the sharing terminal feedback 103, at least one bill to be paid 104, power related information 105, payment authorization information 106, order task information 107, service information 108, and merchant feedback 109.
  • the power holding device 2222 further includes a power holding battery part 221 .
  • the power storage battery unit 221 is connected to the power storage output unit 225 and the power storage input unit 224 by a circuit.
  • the power-holding battery unit 221 stores electric power.
  • the power holding battery part 221, the rectifying part 223, the power holding input part 224, the power holding output part 225 and the detection part 226 are respectively connected to the power holding control part 222.
  • the power holding control part 222 converts the input current into a current suitable for storage by the power holding battery part 221, and the power holding battery part 221 stores electricity.
  • the power holding device 2222 is powered by the power holding output unit 225 .
  • the power-distributed object 3030 is housed in the power-sustaining power distribution cavity 2201 .
  • the power storage control unit 222 , the power storage input unit 224 and the power storage output unit 225 are provided in the power storage distribution unit 220 .
  • the power storage battery unit 221 , the power storage control unit 222 , the rectification unit 223 , the power storage input unit 224 and the power storage output unit 225 are provided in the power storage distribution unit 220 .
  • the power-holding devices 22 can be stacked modularly, so that more than two power-holding devices 22 can be circuit-connected, when different spaces require different numbers of mobile power distribution devices 21 , the power holding device 22 can be modularly assembled.
  • the power-sustaining output unit 225 is connected to the power-sustaining control unit 222 by a circuit, and the power-sustaining output unit 225 outputs current to the mobile power distribution device 21 accommodated in the power-sustaining power distribution cavity 2202 .
  • the output unit 215 includes at least two power-sustaining output units 2251 , wherein the power-sustaining output units 2251 can be connected to the mobile power distribution device 21 by a circuit.
  • the power output unit 2251 can be connected to the mobile power distribution device 21 wirelessly or with wires, and the present invention is not limited in this respect.
  • the power holding device 22 includes a plurality of power holding output units 2251, and the power holding device 22 has a power holding power distribution cavity 2202 for respectively outputting the power holding output units 2251, and each mobile power distribution device 21 is individually placed in one of the power holding devices.
  • the power distribution cavity 2202 is powered by the corresponding power-sustaining output unit 2251 , so that the mobile power distribution device 21 is powered by the power-sustaining device 22 .
  • the mobile power distribution device 21 is powered independently by the power holding device 22 .
  • the power holding device 22 holds power for a long time, not only being connected to an external power source by a long-time circuit, but also its own stored power can continue to hold power in the event of a power failure.
  • the power-holding control unit 222 includes a power-holding control module 2221 and at least one power-holding communication module 2222.
  • the power-holding communication module 2222 is communicably connected to the power-holding control module 2221, and the power-holding communication module 2222 is communicably connected to other power-holding communication modules.
  • the power-sustaining communication module 2222 can be communicatively connected to other systems, and this application is not limited thereto.
  • the rectification unit 223 rectifies the current passing through the power-sustaining input unit 224 to be rectified into a DC current that can be stored by the power-sustaining battery unit 221 .
  • the detection unit 226 detects the current, voltage, and temperature of the battery unit 221, the input unit 224, and the output unit 225 in real time, and the detection unit 226 sends at least one detection result to the control unit 222 for power control.
  • the unit 222 processes the power-holding detection result, and controls the power-holding battery unit 221 , the power-holding input unit 224 and the power-holding output unit 225 .
  • the difference from the preferred embodiment shown in Figure 17A of the accompanying drawings is that the implementation of the power-holding device 22 is different, wherein The device 22 can accommodate and supply power to the mobile power distribution device 21 and the device to be distributed 22, wherein the power holding device 22 further includes at least one power holding and distribution execution part 227, wherein the power holding and distribution execution part 227 includes a plurality of power holding and distribution Electric execution unit 2271, so that the execution unit 2271 is placed in the power distribution cavity 2201 respectively.
  • the power distribution executing unit 2271 is held at the locked position, the power holding power distribution executing unit 2271 enters the power holding power distribution cavity 2201 .
  • the power-sustaining power distribution execution unit 2271 is kept at the release position, the power-sustaining power distribution execution unit 2271 is moved away from the power distribution cavity 2101 to be released by the power distribution object 30 or the mobile power distribution device 21 .
  • the power-sustaining power distribution chamber 2201 further includes a first power-sustaining power distribution chamber 2201A and a second power-sustaining power distribution chamber 2201B, the mobile power distribution device 21 is placed in the first power-sustaining power distribution chamber 2201A, And the mobile power distribution device 21 is powered by the power output unit 210 .
  • the object to be distributed 30 is placed in the second power-sustaining power distribution cavity 2201B, and the object to be distributed 30 is powered by the power-sustaining output unit 210 .
  • the power-holding device 22 includes at least one power-holding interaction part 228, which can be used for interaction, wherein the power-holding interaction part 228 can actively detect the user's user characteristics or the power-holding interaction part 228 can receive the user's power release request.
  • the power-holding interaction unit 228 can feed back at least one of the instruction 102, the sharing terminal feedback 103, at least one bill to be paid 104, power related information 105, payment authorization information 106, order task information 107, service information 108, and merchant feedback 109.
  • the power distribution object 30 is connected to the power holding device 22 by a circuit limited by the power holding power distribution execution unit 2271 .
  • the mobile power distribution device 21 is powered by the power-sustaining power distribution execution unit 2271 in a limited manner. In other modified embodiments, the mobile power distribution device 21 is freely held in the power holding power distribution chamber 2201 of the power holding device 22 .
  • the power holding device 22 can be used as the sharing terminal 200 for the user to rent the power distribution object 30 interactively.
  • the power distribution object 30 can be leased directly through the power holding device 22 .
  • the power-holding device 22 receives the user's request 1011 for using electricity, and releases the object 30 to be distributed.
  • the user obtains the third device identifier 1001C of the power-holding device 22 by scanning the QR code of the power-holding device 22, so that the server 10 obtains the user identifier 1002 and the power-holding device carrying the user authorization.
  • the server 10 generates a pair of power release instructions 1021 corresponding to the power holding device 22 with the third device identifier 1001C according to the power request 1011, and the power release instruction 1021 After being received by the power-holding device 22 , the power-holding device 22 executes the power release instruction 1021 to release the power-distributed object 30 accommodated therein.
  • the power holding device 22 After the power distribution object 30 is placed back into the power holding power distribution chamber 2201 corresponding to the power holding device 22, the power holding device 22 sends the task end feedback 1031 to the server 10, wherein the task end feedback 1031 carries the third The device identifier 1001C and the first device identifier 1001A of the power distribution object 30, the server 10 generates an order to be paid 1041 according to the task end feedback 1031 for the user to pay.
  • the server 10 When the user sends at least one payment authorization message 106 to the server 10 through the user terminal 40 to pay the pending bill 104 .
  • the server 10 generates an order task message 107, the order has been completed. It is worth mentioning that the user can obtain the order task information 107 through the user terminal 40 .
  • the power-holding device 22 obtains the user identifier 1002 of the user by actively obtaining the user's characteristic information, and the power-holding device 22 sends a user request carrying the user identifier 1002 and the third device identifier 1001C
  • the server 10 In order to make the server 10 obtain the power usage request 1011 carrying the user identifier 1002 authorized by the user and the third device identifier 1001C of the power holding device 22, the server 10 generates a pair of third device identifiers 1001C according to the power usage request 1011
  • the power holding device 22 corresponds to the power release instruction 1021. After the power holding device 22 receives the power release instruction 1021, the power holding device 22 executes the power release instruction 1021 to release the power distribution object 30.
  • the difference from the implementation shown in Fig. 18B of the appended drawings is that the power holding device 22 does not directly execute the power release command 1021 .
  • the power holding device 22 sends the power release command 1021 to the mobile power distribution device 21 , and the mobile power distribution device 21 executes the power release command 1021 to release the power distribution object 30 accommodated therein.
  • the power-sustaining output unit 225 can be circuit-connected to the mobile power distribution device placed in the power-sustaining power distribution chamber 2201, and the power-sustaining The output part 225 receives the current of the mobile power distribution device 21 placed in the power-holding power distribution cavity 2201, and the power-holding battery part 221 stores the power sent by the mobile power distribution device 21; or
  • the power-holding output unit 225 can be circuit-connected to the power-distributed object 30 placed in the power-holding power distribution cavity 2201, The power holding output unit 225 receives the current from the power receiving object 30 placed in the power holding power distribution chamber 2201 , and the power holding battery unit 221 stores the power sent by the power distribution object 30 .
  • a shared power distribution management system 100 is installed on a server 10, and the shared power distribution management system 100 further includes at least one power distribution center 110 and a management center 120, wherein the power distribution center 110 includes at least one power distribution unit 111, the management center 120 includes at least one power distribution management unit 121, the power distribution management unit 121 is communicably connected to the power distribution unit 111, and the power distribution unit 111 according to the power distribution request At least one instruction 102 is allocated.
  • the power distribution unit 111 can communicate with at least one of the power supplementation station 20 and/or the power distribution object 30 .
  • the power distribution unit 111 matches at least one power distribution object 30 according to the user's request and releases the power distribution object 30 .
  • the power distribution center 110 further includes a query unit 112, which can query the relevant power distribution information of the power distribution unit 111, wherein the query unit 112 sends the relevant power distribution information of the power distribution unit 111 to the policy generation center 130 for use in Build strategy.
  • a query unit 112 which can query the relevant power distribution information of the power distribution unit 111, wherein the query unit 112 sends the relevant power distribution information of the power distribution unit 111 to the policy generation center 130 for use in Build strategy.
  • the power distribution management unit 121 includes at least one power distribution object management module 1211 and at least one electric energy replenishment station management module 1221, and the power distribution object management module 1211 manages information such as the power quantity, location, and communication intensity of the power distribution object 30 .
  • the electric energy supplementary station management module 1221 manages information such as the power, location, and communication intensity of the electric energy supplementary station 20
  • the electric energy supplementary station management module 1211 includes a mobile power distribution device management organization 12211, and the mobile power distribution device management organization 12211 manages the mobile power distribution device The quantity, location, model, and device identification code of the device.
  • the electric energy replenishment station management module 1211 includes a mobile power distribution device management mechanism 12211 and at least one power-holding device management mechanism 1212.
  • the power distribution device management organization 12211 manages the quantity, location, model, and equipment identification code of the mobile power distribution device 21 .
  • the power-holding device management organization 1212 manages the quantity, location, model, and device identification code of the power-holding devices 22 .
  • the power-storage station management module 1211 includes at least one power-storage device management mechanism 1212, and the power-storage device management mechanism 1212 manages the number of power-storage devices 22, Location, model, device identification number.
  • the shared power distribution management system 100 includes at least one policy generation center 130, and the policy generation center 130 includes at least one power distribution strategy generation unit 131, and the power distribution strategy generation unit 131 generates a power distribution strategy according to the state of the power distribution object 30 , so that when one of the at least two power distribution objects 30 accommodated together meets the power distribution condition, one of them is released.
  • the power of the mobile power distribution device 22 not only meets its own electricity demand, but also needs to supply power to the object 30 to be distributed.
  • the mobile power distribution device 22 preferably supplies power to the object 30 to be distributed.
  • the power distribution object 30 supplies power.
  • the power distribution strategy generation unit 131 further includes information such as pricing strategy, space location strategy, and promotion strategy, and the present invention is not limited thereto.
  • the policy generation center 130 includes at least one management policy generation unit 132, and the management policy generation unit 132 generates a management plan for the mobile terminal 200 and the power-holding device 22, wherein when the management policy generation unit 132 receives the electric energy related Information to generate a device management strategy, wherein the device management strategy includes but not limited to the number of deliveries in a single geographical area space S1, delivery time, charging service time and other information.
  • the policy generation center 130 includes a management policy generation unit 132 , and the management policy generation unit 132 generates at least one management policy according to the electric energy related information 105 of the mobile power distribution device and/or the power distribution object 30 .
  • the shared power distribution management system 100 includes at least one payment center 140, the payment center 140 includes at least one payment unit 141 and at least one payment generation unit 142, and the payment generation unit 142 communicates with the payment generation unit 141, wherein the payment unit 141 is based on the The generated pending bill 104 is paid.
  • the shared power distribution management system 100 further includes at least one power monitoring center 150 .
  • the power monitoring center 150 can communicate with the power distribution unit 111 of the power distribution center 110 to obtain power-related information 105 by monitoring the status of the power distribution object 30 and the power replenishment station 20 in real time.
  • the power monitoring center 150 can communicate with the power distribution unit 111 of the power distribution center 110 to monitor the status of the mobile power distribution device 20 and the power distribution object 30 accommodated in the power replenishment station 20 in real time. Obtain the real-time status of the distributed object 30 and .
  • the power monitoring center 150 includes at least one sharing terminal monitoring unit 151, at least one power distribution process monitoring unit 152, and a power monitoring unit 153.
  • the sharing terminal monitoring unit 151 monitors the real-time status, power, communication signals and other information of the sharing terminal.
  • the power distribution process monitoring unit 152 monitors the power status, location status and online communication status of the power distribution object 30 in at least one power distribution process.
  • the power monitoring unit 153 obtains the power-related information of each charging supplementary station 20 and the object to be distributed 30, so that the power monitoring unit 153 obtains the power lease distribution status in at least one different geographical area environment S1, and obtains a power lease map .
  • the management strategy generation module 132 is communicably connected to the power monitoring center 150 , wherein the management strategy generation module 132 generates a management strategy according to the real-time status of the power distribution object 30 and/or the electric energy supplementation station 20 .
  • the real-time status of the object to be distributed 30 and/or the electric energy supplementary station 20 can be sent by any one of the object to be distributed 30 and/or the electric energy supplementary station 20 , and the present invention is not limited thereto.
  • the real-time status of the power distribution object 30 and/or the electric energy supplementation station 20 is sent by the electric energy supplementation station 20 .
  • the electric energy supplementary station 20 is communicatively connected to the power distribution object 30 , and the electric energy related information 105 is sent by the electric energy supplementary station 20 . That is to say, the power distribution unit 111 communicates with the power supplementation station 20 to communicate at least one of the user request 101 and the instruction 102 .
  • the real-time status of the power distribution object 30 and/or the electric energy supplementary station 20 is sent by the power distribution object 30 in real time, and the electric energy supplementation station 20 is communicatively connected to the power distribution object 30, and by The power-related information 105 is sent by the power-distributed object 30 . That is to say, the power distribution unit 111 communicates with the power-distributed object 30 to communicate at least one of the user request 101 and the instruction 102 .
  • the power distribution management unit 121 further includes at least one electric energy supplementary station management module 1211 and at least one distributed object management module 1212, and the electric energy supplementary station management module 123 manages
  • the electric energy replenishment station 20 is used to control the electric energy replenishment station 20 to ensure that the electricity is sufficient to supply power to the object 30 to be distributed.
  • a sharing method of another preferred embodiment of the present invention is disclosed and explained in detail, wherein the sharing method includes the following steps:
  • the sharing method includes the following steps:
  • step (s001) of the sharing method the following steps are included:
  • steps (s001.1) and (s002) of the sharing method further include the following steps:
  • the sharing terminal 200 may be implemented as the mobile power distribution device 21 , the power holding device 22 or a part of the mobile power distribution device 21 or the power holding device 22 .
  • step (s001) of the sharing method the following steps are further included:
  • a user request carrying at least one device identifier 1001 of the shared terminal 200 and the user identifier 1002 of the user is triggered.
  • step (s001.2) of the sharing method further includes the following steps:
  • step (s001.1) of the sharing method includes the following steps:
  • the user identification code 1002 of the user is actively detected by the sharing terminal 200 to obtain the user identification code 1002 of the user.
  • step (s002) of the sharing method includes the following steps:
  • the step (s002.2) of the sharing method comprises the following steps:
  • the way for the object to be distributed 30 to be released includes, but is not limited to, mechanically ejecting to release the object to be distributed 30 , supplying power to the object to be distributed 30 , and controlling the object to be distributed 30 to output current.
  • step (s001) of the sharing method the following steps are included:
  • the sharing terminal 200 is arranged at intervals, so that the user can use the sharing terminal 200 when he is in the social space unit S2 where he is.
  • step (s004) of the sharing method the following steps are further included:
  • the user request is selected from at least one of a power release request, a power replacement request, and a power return request; or
  • the user request is a power-up request
  • the user request is an interactive entertainment request
  • the step (s002) of the sharing method includes the following steps:
  • the sharing method further includes the following steps:
  • At least one sharing terminal 200 is respectively set in at least two social space units of a geographical area space S1, wherein each user can share an interaction-related information with the sharing terminal 200, wherein the interaction-related information is user request or execution feedback.
  • the steps of the sharing method further include the steps of:
  • the sharing method further includes the following steps:
  • At least one power-holding device 22 is used as a communication transfer station in the geographical area space to communicate with one of the server 10 and the sharing terminal 200 .
  • the sharing method further includes the following steps:
  • the mobile power distribution device 21 feeds back and returns to the server 10 to end the power release.
  • the communication mode in the sharing method is 4G/5G/WIFI/BT/private area network.
  • the shared power rental system 1 is convenient for users to obtain power when they are in the social space unit S2.
  • the shared power rental system 1 facilitates users to obtain power without moving around in the social space unit S2.
  • the shared electricity rental system 1 facilitates users to socialize in their respective social space units S2, so as to break up their respective social space units S2.
  • the mobile power distribution device 21 is placed in a single social space unit S2 in a manner divided by social distance, so that users can obtain power in real time in the social space unit S2 that stays for a long time.
  • the number of mobile power distribution devices 21 is more than three, and the mobile power distribution devices 21 form a shared power distribution network in different social space units S2 to associate with different social space units S2. Further, the separated social space units S2 can be communicatively linked through the mobile power distribution device 21 configured therein.
  • the mobile power distribution device 21 is configured in different social space units S2 in a mobile manner, so that users do not need to enter other social space units S2, as long as they are in the social space unit S2 where they are. Use the shared power distribution management system 100 immediately.
  • the mobile power distribution device 21 and/or the power-holding device 22 transmit at least one power distribution-related information of the power distribution object 30 with a matching identifier, and the power distribution-related information includes but is not limited to the power distribution The identifier of the object 30, the power related information and the corresponding mobile power distribution device 21 store the power information.
  • the server sends a return permission command to the electric energy supplementation station 20 or the distributed object 30 placed in the electric energy supplementation station 20, so as to receive the distributed object 30 to be returned .
  • each electric energy replenishment station 20 and the object 30 accommodated therein constitute a sharing terminal 200 , so that users can use electricity, interact and/or entertain through the sharing terminal 200 .
  • the electric energy replenishment station 20 includes at least one mobile power distribution device 21 and a power holding device 22, wherein the mobile power distribution device 21 can be plugged and accommodated in the power holding device 22, when the mobile power distribution device 21 It is placed away from the power holding device 22, and the power distribution object 30 is pluggably accommodated in the mobile power distribution device 21.
  • the mobile power distribution device 21 can replenish electric energy to the power distribution object 30 on the spot in the form of a built-in battery. .
  • the electric energy supplementary station 20 is communicated with the shared power distribution management system 100, and the electric energy supplementary station 20 sends an instruction to the distributed power distribution management system 100 after receiving at least one distributed object 30.
  • Object 30 so that the object 30 to be distributed is controlled by the mobile power distribution device 21 to release electric energy.
  • the electric energy replenishment station 20 and/or the object to be distributed 30 communicate with the shared power distribution management system 100 via 4G/5G or by connecting to a local area network.
  • the electric energy replenishment station 20 and/or the object to be distributed 30 when the electric energy replenishment station 20 and/or the object to be distributed 30 is connected to a mobile phone hotspot, WIFI or other private area network, the electric energy replenishment station 20 communicates with the shared power distribution management system 100 .
  • the electric energy replenishment station 20 includes at least two mobile power distribution devices 21, and the mobile power distribution devices 21 can be conveniently moved and placed at the location where power is needed, so that users can obtain the mobile power distribution devices in their area in time. The electric energy of the distributed object 30 released by the device 21.
  • the electric energy replenishment station 20 includes at least two power-holding devices 22, and the power-holding devices 22 are placed at power-demanding locations to accommodate at least one power-distributing object 30 for long-term power supply, so that users can The area where it is located acquires the electric energy of the object to be distributed 30 released by the mobile power distribution device 21 in a timely manner.
  • the power supply station 20 includes at least one mobile power distribution device 21 and at least one power holding device 22 capable of accommodating and supplying power to the mobile power distribution device 21 , and the power holding device 22 is kept charged for a long time.
  • At least one power distribution-related information is sent between the two mobile power distribution devices 21 .
  • the mobile power distribution device 21 sends at least one power distribution-related information of the power distribution object 30 with a matching identifier.
  • the power distribution related information includes but is not limited to the identifier of the power distribution.
  • the information and the corresponding mobile power distribution device 21 are stored with information such as at least one storage space.
  • the mobile power distribution device 21 is placed in a single social space unit S2 in a manner divided by social distance, so that users can obtain power in real time in the social space unit S2 that stays for a long time.
  • the number of mobile power distribution devices 21 is more than three, and the mobile power distribution devices 21 form a shared power distribution network in different social space units S2 to associate with different social space units S2. Further, the separated social space units S2 can be communicatively linked through the mobile power distribution device 21 configured therein.
  • the mobile power distribution device 21 is configured in different social space units S2 in a mobile manner, so that users do not need to enter other social space units S2, as long as they are in the social space unit S2 where they are. Use the shared power distribution management system 100 immediately.
  • the mobile power distribution device 21 and/or the power-holding device 22 transmit at least one power distribution-related information of the power distribution object 30 with a matching identifier, and the power distribution-related information includes but is not limited to the power distribution The identifier of the object 30, the power related information and the corresponding mobile power distribution device 21 store the power information.
  • the shared power distribution management system 100 can manage power distribution related information before the power distribution object 30 is returned.
  • the shared power distribution management system 100 can acquire the spatial position of the power distribution object 30 in the environment.
  • the shared power distribution management system 100 can be queried for lease-related information of at least one power distribution object 30 .
  • the shared power distribution management system 100 includes at least one power distribution center 110, and the power distribution center 110 includes at least one power distribution unit, and the power distribution unit can communicate with the power replenishment station 20, the mobile power distribution device 21 and the At least one of the electrical objects 30 .
  • the power distribution unit matches at least one power distribution object 30 to be released according to the user's request.
  • the shared power distribution management system 100 includes at least one power distribution strategy generation unit 131, and the power distribution strategy generation unit 131 includes at least one power distribution strategy generation module, and the power distribution strategy generation module A power distribution strategy is generated for releasing when one of the at least two power distribution objects 30 accommodated together meets the power distribution condition.
  • the power distribution strategy generation unit 131 includes a power distribution strategy generation Z center 130 , and the power distribution strategy generation Z center 130 generates at least one management strategy according to the state of the storage capacity of the mobile power distribution device 21 .
  • the shared power distribution management system 100 includes at least one payment center 140, and the payment center 140 includes at least one payment generation unit 142 and at least one payment unit 141, and the payment generation unit 142 communicates with the payment generation unit 142, wherein the payment unit 141 Obtain a payment interface according to the payment-related information generated by the payment generating unit 142 for the authenticated user to pay.
  • the shared power distribution management system 100 further includes at least one power monitoring unit 153 , wherein the power monitoring unit 153 obtains the real-time state of the power distribution object 30 by monitoring the state of the power distribution object 30 in real time.
  • One aspect of the present application provides a shared terminal 200, wherein the shared terminal 200 communicates with a server 10 to perform power supply, including:
  • one or more power charging stations 20 wherein at least one of the power charging stations 20 is located in a social space unit in a geographical area space S1;
  • each power distribution object 30 is powered by the electric energy supplementation station 20 , and the power distribution object 30 is configured to discharge electricity by the electric energy supplementation station 20 .
  • the electric energy replenishment station 20 is a mobile power distribution device 21.
  • the mobile power distribution device 21 has a built-in battery. 21 is movably placed in a social space unit in a geographical area space S1, and each power distribution object 30 is restricted by the mobile power distribution device 21 whether to release power.
  • the electric energy replenishment station 20 is a mobile power distribution device 21, and the power distribution object 30 can be powered by the mobile power distribution device 21, and the mobile power distribution device 21 is placed in a geographic location by being connected to an external power source A social space unit in the regional space S1, and each power distribution object 30 is limited by the mobile power distribution device 21 to release power.
  • the power distribution object 30 is fixedly arranged on the mobile power distribution device 21; or
  • the power distribution object 30 is detachably accommodated in the mobile power distribution device 21; or
  • the power distribution object 30 is detachably placed in the mobile power distribution device 21 .
  • the sharing terminal 200 according to claim 2 or 3, wherein the mobile power distribution device 21 is configured to communicate with the power distribution object 30 to limit whether the power distribution object 30 releases power.
  • the power distribution object 30 is detachably housed in the mobile power distribution device 21, and the mobile power distribution device 21 has at least one power distribution cavity 2101 and a release opening that connects the power distribution cavity 2101 and the external space. 2102, the object 30 to be distributed is plugged into the chamber 2101 from the release opening 2102; or
  • the power distribution object 30 is detachably accommodated in the mobile power distribution device 21.
  • the mobile power distribution device 21 includes a mobile power distribution part 210 and a power distribution actuator 213.
  • the power distribution actuator 213 is arranged on the mobile power distribution part 210.
  • the power distribution object 30 is powered by the mobile power distribution unit 210, and the power distribution object 30 is limited by the power distribution actuator 213.
  • the mechanism 213 is a locking mechanism or a magnetic attraction mechanism.
  • the power distribution object 30 is connected to the mobile power distribution device 21 to be powered by the mobile power distribution device 21, wherein the power distribution object 30 includes positive and negative ports and signal ports to communicate with the mobile power distribution device device 21.
  • the power distribution object 30 is detachably housed in the mobile power distribution device 21, and the mobile power distribution device 21 has at least one power distribution cavity 2101 and a release opening that connects the power distribution cavity 2101 and the external space. 2102, the object 30 to be distributed is plugged into the chamber 2101 from the release opening 2102; or
  • the power distribution object 30 is detachably accommodated in the mobile power distribution device 21.
  • the mobile power distribution device 21 includes a mobile power distribution part 210 and a power distribution actuator 213.
  • the power distribution actuator 213 is arranged on the mobile power distribution part 210.
  • the power distribution object 30 is powered by the mobile power distribution unit 210, and the power distribution object 30 is limited by the power distribution actuator 213.
  • the mechanism 213 is a locking mechanism or a magnetic attraction mechanism.
  • the release condition satisfied by the power distribution object 30 is that the power distribution object 30 with relatively high power among at least two power distribution objects 30 is released; or
  • the distributed object 30 that satisfies the release condition is a distributed object 30 whose power is greater than the minimum power distribution threshold and can communicate with the electric energy replenishment station 20; or
  • the minimum power distribution threshold of the distributed object 30 to be released may be 30%; or
  • the minimum power distribution threshold of the distributed object 30 to be released may be 40%; or
  • the minimum power distribution threshold of the distributed object 30 that is released from the condition may be 50%; or
  • the minimum power distribution threshold of the distributed object 30 that is released from the condition may be 60%; or
  • the minimum power distribution threshold of the power distribution object 30 to be released may be 70%.
  • the present application provides a shared power rental system, including:
  • one or more power charging stations 20 wherein at least one of the power charging stations 20 is located in a social space unit in a geographical area space S1;
  • Each distributed object 30 is powered by the electric energy replenishment station 20, and the distributed electric objects 30 are configured to discharge electricity by the electric energy replenishment station 20;
  • At least one server 10 the server 10 processes power distribution-related information, and at least one of one or more power-distributed objects 30 and one or more power supplementation stations 20 communicates with the server 10 to execute power distribution-related information.
  • the sharing terminal 200 includes more than two electric energy replenishment stations 20, and each electric energy replenishment station 20 can communicate with the server 10; or
  • the shared terminal 200 includes more than two electric energy replenishment stations 20, the electric energy replenishment stations 20 are one or more master electric energy replenishment stations 20 and one or more slave electric energy replenishment stations 20, the master electric energy replenishment stations 20 can communicate with the server 10, and the slave electric energy The replenishment station 20 communicates with the server 10 in the manner of communicating with the main electric energy replenishment station 20 .
  • the sharing terminal 200 includes more than two power distribution objects 30, and each power distribution object 30 can communicate with the server 10; or
  • the sharing terminal 200 includes more than two distributed objects 30, and the distributed objects 30 are one or more main distributed objects 30 and one or more slave distributed objects 30, and the main distributed objects 30 can communicate with
  • the server 10 communicates with the server 10 from the power distribution object 30 in the manner of communicating with the main power distribution object 30, and the electric energy replenishment station 20 communicates with the corresponding main power distribution object 30 or the slave power distribution object to execute the server 10 An instruction to release the electric energy of the object 30 to be distributed.
  • the sharing terminal 200 includes more than two mobile power distribution devices 21, and each mobile power distribution device 21 can communicate with the server 10. order; or
  • the sharing terminal 200 includes more than two mobile power distribution devices 21, the mobile power distribution devices 21 are one or more master mobile power distribution devices 21A and one or more slave mobile power distribution devices 21B, and the master mobile power distribution device 21A can communicate with
  • the server 10 communicates with the server 10 by communicating with the master mobile power distribution device 21A from the mobile power distribution device 21B. power command.
  • the object to be distributed 30 and the electric energy replenishment station 20 are integrally set; or
  • the object to be distributed 30 is detachably accommodated in the electric energy replenishment station 20, and after a power release command 1021 is triggered, the object to be distributed 30 is released by the electric energy replenishment station 20; or
  • the power distribution object 30 is limitedly supported by the electric energy replenishment station 20 , and after a power release command 1021 is triggered, the power distribution object 30 is released by the electric energy replenishment station 20 .
  • the present application provides a sharing terminal 200, wherein the sharing terminal 200 communicates with a server 10 to perform power supply, including:
  • the mobile power distribution device 21 has a built-in battery, and the power distribution object 30 can be powered by the mobile power distribution device 21 in a way away from an external power source, and the mobile power distribution device 21 can be removably placed in a geographical location A social space unit S2 in the regional space S1, and each power distribution object 30 is restricted by the mobile power distribution device 21 whether to release power; and
  • the sharing terminal 200 includes at least two mobile power distribution devices 21 , and each power distribution object 30 is powered by the corresponding mobile power distribution device 21 .
  • the power distribution object 30 is integrally arranged on the mobile power distribution device 21; or
  • the power distribution object 30 is detachably accommodated in the mobile power distribution device 21; or
  • the power distribution object 30 is detachably placed in the mobile power distribution device 21 .
  • the mobile power distribution device 21 is configured to communicate with the power distribution object 30 to limit whether the power distribution object 30 releases power.
  • the power distribution object 30 is detachably housed in the mobile power distribution device 21, and the mobile power distribution device 21 has at least one power distribution cavity 2101 and a release opening that connects the power distribution cavity 2101 and the external space. 2102, the object 30 to be distributed is plugged into the chamber 2101 from the release opening 2102; or
  • the power distribution object 30 is detachably placed in the mobile power distribution device 21.
  • the mobile power distribution device 21 includes a mobile power distribution unit 210 and a power distribution actuator 213.
  • the power distribution actuator 213 is arranged on the mobile power distribution unit 210.
  • the power distribution object 30 is powered by the mobile power distribution unit 210, and the power distribution object 30 is limited by the power distribution actuator 213.
  • the mechanism 213 is a locking mechanism or a magnetic attraction mechanism.
  • the present application provides a shared power rental system 1, including:
  • Each distributed object 30 is powered by the electric energy replenishment station 20, and the distributed electric objects 30 are configured to discharge electricity by the electric energy replenishment station 20;
  • One or more power holding devices 22 wherein the power holding devices 22 are placed in the same geographical area space S1 , and the mobile power distribution device 21 can be moved to any power holding device 22 to be powered by the power holding device 22 .
  • any mobile power distribution device 21 communicates with at least one power-holding device 22; or
  • the mobile power distribution device 21 includes one or more master mobile power distribution devices 21A and one or more slave mobile power distribution devices 21B.
  • the master mobile power distribution device 21A communicates with the power holding device 22 , communicating from the mobile power distribution device 21B to the main mobile power distribution device 21A to communicate with at least one power-holding device 22; or
  • Any power distribution object 30 communicates with at least one power holding device 22; or
  • the power-distributed objects 30 include one or more main power-distributed objects 30A and one or more power-distributed objects 30.
  • the main power-distributed objects 30A communicate with the power-holding device 22,
  • the slave power distribution object 30B can communicate with the main mobile power distribution device 21A to communicate with at least one power holding device 22 .
  • the power-holding devices 22 include one or more master power-holding devices 22A and one or more slave power-holding devices 22B, wherein:
  • Any mobile power distribution device 21 communicates with the host power distribution device 22A; or
  • the mobile power distribution device 21 includes one or more master mobile power distribution devices 21A and one or more slave mobile power distribution devices 21B.
  • the master mobile power distribution device 21A communicates with the master power distribution device 22A , communicating from the mobile power distribution device 21B to the master mobile power distribution device 21A to communicate with the master power distribution device 22A; or
  • Any power distribution object 30 communicates with the master power device 22A; or
  • the power-distributed objects 30 include one or more main power-distributed objects 30A and one or more power-distributed objects 30, and the main power-distributed objects 30A communicate with the main electric device 22A,
  • the slave power distribution object 30B can communicate with the master mobile power distribution device 21A to communicate with the master power device 22A.
  • the power sharing system 1 further includes a server 10 , the server 10 processes power rent related information, and one or more power holding devices 22 can communicate with the server 10 .
  • the shared power rental system 1 further includes a server 10, the server 10 processes information related to power rental, the host power device 22A can communicate with the server 10, and the slave power device 22B communicates with the host power device 22A. communicate with the server 10.
  • the present application provides a mobile power distribution device 21, wherein the mobile power distribution device 21 is suitable for releasing the electric energy of a power distribution object 30, including:
  • At least one mobile power distribution unit 210 wherein the mobile power distribution unit 210 can be removably placed in a social space unit S2 in a geographical area space S1;
  • At least one power storage unit 211 wherein the power storage unit 211 stores electric energy
  • a control module 212 wherein the control module 212 processes the release power distribution command 1021 after receiving a power distribution release command 1021;
  • the mobile power distribution device 21 further includes an input unit 214, wherein the input unit 214 inputs current to the power storage unit 211 to store electrical energy; or
  • the mobile power distribution device 21 includes at least one detachable power storage unit 211 , the power storage unit 211 and the mobile power distribution unit 210 are detachably arranged, and the power storage unit 211 can be charged after being detached.
  • the mobile power distribution device 21 further includes a power distribution actuator 213, and the power distribution actuator 213 executes the execution release power distribution command 1021 sent by the control module 212 to release the restricted power distribution object 30 ,in:
  • the mobile power distribution device 21 has a mobile storage cavity 2100, at least one distributed cavity 2101, and a release opening 2102 that connects the powered distribution cavity 2101 with the external space, and the powered distribution cavity 2101 and the mobile storage cavity 2100 are kept at intervals , the mobile power distribution part 210 is accommodated in the mobile accommodation cavity 2100, so that the object 30 to be distributed is limited by the power distribution actuator 213 in such a way that it is accommodated in the distribution cavity 2101; or
  • the power distribution actuator 213 has a release position and a limit position. When the power distribution actuator 213 is in the limit position, the surface of the power distribution actuator 213 and the mobile power distribution part 210 defines a distribution chamber 2101 for The power distribution object 30 placed in the mobile power distribution unit 210 is stuck in the mobile power distribution device 21; or
  • the distributed actuator 213 includes an induction coil that can be energized. When the induction coil is energized, it attracts the object 30 with a magnet in a magnetic induction manner. When the induction coil stops being energized, the object 30 can be energized. was taken; or
  • the mobile power distribution device 21 has a mobile storage chamber 2100, and the power distribution object 30 is built in the mobile storage chamber 2100, and the power distribution object 30 communicates with the control module 212 for the power distribution object 30 to be placed in the mobile storage
  • the cavity 2100 outputs current to the device.
  • the present application provides a shared power rental system 1, wherein the shared terminal 200 communicates with a server 10 to perform power supply, including:
  • One or more electric energy replenishment stations 20, the object 30 to be distributed can be powered by the electric energy replenishment station 20 in a manner away from an external power source, and each object 30 to be distributed is restricted by the electric energy replenishment station 20 whether to release electricity;
  • Each power distribution object 30 is powered by the mobile power distribution device 21, and the power distribution object 30 is configured to release electricity by the mobile power distribution device 21, and the power distribution object 30 is moved
  • the power replenishment station 20 further includes one or more mobile power distribution devices 21 and one or more power holding devices 22, the mobile power distribution device 21 can be moved to the power holding device 22 to be charged, and the power holding device 22 can be charged.
  • the device 22 is placed in the geographical area space S1 and is connected to an external power source by a circuit, the mobile power distribution device 21 has a built-in battery, and at least one of the mobile power distribution devices 21 is placed in a social space unit S2 of the geographical area space S1; or
  • the electric energy replenishment station 20 further includes one or more mobile power distribution devices 21 and one or more power holding devices 22.
  • the power holding devices 22 are placed in the geographical area space S1 and are connected to an external power source by a circuit.
  • the mobile power distribution device 21 At least one of is placed in a social space unit S2 of the geographical area space S1 and is circuit connected to an external power source.
  • the electric energy replenishment station 20 includes at least two mobile power distribution devices 21, each power distribution object 30 is powered by the corresponding mobile power distribution device 21, and more than two mobile power distribution devices 21 are respectively placed in independent The social space unit S2.
  • the power distribution object 30 is integrally arranged on the mobile power distribution device 21; or
  • the power distribution object 30 is detachably accommodated in the mobile power distribution device 21; or
  • the power distribution object 30 is detachably placed in the mobile power distribution device 21 .
  • the mobile power distribution device 21 is configured to communicate with the power distribution object 30 to limit whether the power distribution object 30 releases power.
  • the power distribution object 30 is detachably housed in the mobile power distribution device 21, and the mobile power distribution device 21 has at least one power distribution cavity 2101 and a release opening that connects the power distribution cavity 2101 and the external space. 2102, the object 30 to be distributed is plugged into the chamber 2101 from the release opening 2102; or
  • the power distribution object 30 is detachably accommodated in the mobile power distribution device 21.
  • the mobile power distribution device 21 includes a mobile power distribution part 210 and a power distribution actuator 213.
  • the power distribution actuator 213 is arranged on the mobile power distribution part 210.
  • the power distribution object 30 is powered by the mobile power distribution unit 210, and the power distribution object 30 is limited by the power distribution actuator 213.
  • the mechanism 213 is a locking mechanism or a magnetic attraction mechanism.
  • the mobile power distribution device 21 includes at least one control module 212, at least one power distribution actuator 213, at least one output unit 215, at least one power storage unit 211, and at least one interaction processing unit 216, wherein the control module The group 212, the power distribution actuator 213, the output unit 215, the power storage unit 211 and the interaction processing unit 216 are integrally provided; or
  • the mobile power distribution device 21 includes a mobile power distribution part 210 and a power storage part 211, and the mobile power distribution part 210 and the power storage part 211 are detachable; or
  • the mobile power distribution device 21 includes a mobile power distribution unit 210, a power storage unit 211 and an interaction processing unit 216, and the mobile power distribution unit 210, the power storage unit 211 and the interaction processing unit 216 are detachably arranged; or
  • the mobile power distribution device 21 includes at least one control module 212, at least one power distribution actuator 213, at least one output part 215, and at least one power storage part 211, wherein the control module 212, power distribution actuator 213, output part 215 and Power storage unit 211 is integrally provided.
  • the mobile power distribution device 21 includes a mobile power distribution part 210 and a power storage part 211, the mobile power distribution part 210 and the power storage part 211 are detachable, and the space between the mobile power distribution part 210 and the power storage part The relationship is selected from stacking up and down, being installed left and right, the power storage unit 211 is supported by the mobile power distribution unit 210, the mobile power distribution unit 210 is supported by the power storage unit 211, and the power storage unit 211 is plugged and accommodated in the mobile power distribution unit.
  • the unit 210 and the mobile power distribution unit 210 are pluggably accommodated in the type group of the mobile power distribution unit 210 .
  • the mobile power distribution device 21 further includes an input unit 214, wherein the input unit 214 inputs current to the power storage unit 211 to store electrical energy; or
  • the mobile power distribution device 21 When the mobile power distribution device 21 has a built-in battery, the mobile power distribution device 21 includes at least one detachable power storage unit 211 , the power storage unit 211 is detachable, and can be charged after the power storage unit 211 is detached.
  • any mobile power distribution device 21 communicates with at least one power-holding device 22; or
  • the mobile power distribution device 21 includes one or more master mobile power distribution devices 21A and one or more slave mobile power distribution devices 21B.
  • the master mobile power distribution device 21A communicates with the power holding device 22 , communicating from the mobile power distribution device 21B to the main mobile power distribution device 21A to communicate with at least one power-holding device 22; or
  • Any power distribution object 30 communicates with at least one power holding device 22; or
  • the power distribution objects 30 include one or more main power distribution objects 30A and one or more slave power distribution objects 30B, and the main power distribution objects 30A communicate with the power holding device 22 , the slave power distribution object 30B can communicate with the main mobile power distribution device 21A to communicate with at least one power holding device 22 .
  • the power-holding devices 22 include one or more master power-holding devices 22A and one or more slave power-holding devices 22B, wherein:
  • Any mobile power distribution device 21 communicates with the host power distribution device 22A; or
  • the mobile power distribution device 21 includes one or more master mobile power distribution devices 21A and one or more slave mobile power distribution devices 21B.
  • the master mobile power distribution device 21A communicates with the master power distribution device 22A , communicating from the mobile power distribution device 21B to the master mobile power distribution device 21A to communicate with the master power distribution device 22A; or
  • Any power distribution object 30 communicates with the master power device 22A; or
  • the power-distributed objects 30 include one or more main power-distributed objects 30A and one or more power-distributed objects 30, and the main power-distributed objects 30A communicate with the main electric device 22A,
  • the slave power distribution object 30B can communicate with the master mobile power distribution device 21A to communicate with the master power device 22A.
  • the power sharing system 1 further includes a server 10 , the server 10 processes power rent related information, and one or more power holding devices 22 can communicate with the server 10 .
  • the shared power rental system 1 further includes a server 10, the server 10 processes information related to power rental, the host power device 22A can communicate with the server 10, and the slave power device 22B communicates with the host power device 22A. communicate with the server 10.
  • the server 10 after the server 10 receives at least one return-related information, the server 10 sends a return permission instruction to the electric energy supplementation station 20 or the distributed object 30 placed in the electric energy supplementation station 20 to receive the returned Power distribution object 30 .
  • the release condition satisfied by the power distribution object 30 is that the power distribution object 30 with relatively high power among at least two power distribution objects 30 is released; or
  • the distributed object 30 that satisfies the release condition is a distributed object 30 whose power is greater than the minimum power distribution threshold and can communicate with the electric energy replenishment station 20; or
  • the power distribution object 30 that meets the release condition is implemented as having an electric power greater than the minimum power distribution threshold, and the minimum power distribution threshold of the power distribution object 30 that is released is 60%.
  • the present application provides a mobile power distribution device 21, wherein the mobile power distribution device 21 is suitable for releasing the electric energy of a power distribution object 30, including:
  • At least one mobile power distribution unit 210 wherein the mobile power distribution unit 210 can be removably placed in a social space unit S2 in a geographical area space S1;
  • a control module 212 wherein the control module 212 processes the release power distribution command 1021 after receiving a power distribution release command 1021;
  • An output unit 215 the output unit 215 is placed in the mobile power distribution unit 210 for the output unit 215 to supply power to the power distribution object 30 .
  • control module 212 the output unit 215 and the mobile power distribution unit 210 are integrated; or
  • the mobile power distribution device 21 includes a mobile power distribution part 210 and a power storage part 211, and the mobile power distribution part 210 and the power storage part 211 are detachable; or
  • the mobile power distribution device 21 includes a mobile power distribution unit 210, a power storage unit 211 and an interaction processing unit 216, and the mobile power distribution unit 210, the power storage unit 211 and the interaction processing unit 216 are detachably arranged; or
  • the mobile power distribution device 21 includes a mobile power distribution unit 210 and an interaction processing unit 216, wherein the mobile power distribution unit 210 and the interaction processing unit 216 are detachably arranged.
  • the mobile power distribution device 21 further includes an input part 214 and a power storage part 211, the input part 214 is connected to the power storage part 211 by a circuit, the input part 214 is connected to an external power source by a long-time circuit, and the power storage part
  • the electric part 211 is connected to the output part 215 by a circuit, and the output part 215 can output the electric quantity stored in the electric storage part 211; or
  • the mobile power distribution device 21 further includes an input part 214, and the input part 214 is connected to the power storage part 211 by a circuit. , the input part 214 is powered; or
  • the mobile power distribution device 21 includes at least one detachable power storage unit 211 , the power storage unit 211 is detachable, and the power storage unit 211 can be charged after being detached.
  • the mobile power distribution device 21 includes a mobile power distribution communication unit 2121, wherein the communication unit 2121 is set in the mobile power distribution unit 210, and the communication unit 2121 is used for communication.
  • the mobile power distribution device 21 further includes a power distribution actuator 213, and the power distribution actuator 213 executes the execution release power distribution command 1021 sent by the control module 212 to release the restricted power distribution object 30 ,in:
  • the mobile distribution device 21 has a mobile storage cavity 2100, at least one distributed cavity 2101, and a release opening 2102 that connects the powered distribution cavity 2101 with the external space, and the mobile distribution cavity and the mobile storage cavity 2100 are kept at intervals,
  • the mobile power distribution part 210 is accommodated in the mobile power distribution cavity, so that the object 30 to be distributed is limited by the power distribution actuator 213 in a manner of being accommodated in the power distribution cavity 2101; or
  • the power distribution actuator 213 has a release position and a limit position. When the power distribution actuator 213 is in the limit position, the surface of the power distribution actuator 213 and the mobile power distribution part 210 defines a distribution chamber 2101 for The released object placed in the mobile power distribution unit 210 is stuck in the mobile power distribution device 21; or
  • the power distribution actuator 213 includes an induction coil that can be energized. When the induction coil is energized, it attracts the power distribution object 30 with a magnet in a magnetic induction mode. When the power distribution of the induction coil is stopped, the power distribution object is supplied. 30 can be taken; or
  • the mobile power distribution device 21 has a mobile storage chamber 2100, and the power distribution object 30 is built in the mobile storage chamber 2100, and the power distribution object 30 communicates with the control module 212 for the power distribution object 30 to be placed in the mobile storage
  • the cavity 2100 outputs current to the device.
  • control module 212 of the mobile power distribution device 21 is configured for an a la carte system, at least one linked game, and at least one shared power supply management system.
  • the present application provides a shared terminal 200, including:
  • a power distribution object 30 wherein the power distribution object 30 is placed in the mobile power distribution part 210 of the mobile power distribution device 21 , and the power distribution object 30 is configured to discharge electricity by the mobile power distribution device 21 .
  • the mobile power distribution device 21 includes at least two communication units 2121.
  • the communication units 2121 are arranged in one mobile power distribution unit 210, and the mobile power distribution devices 21 are respectively placed in Two independent social space units S2 of a geographical area space S1, the communication unit 2121 of the mobile power distribution device 21 of one social space unit S2 can communicate with the communication unit 2121 of the mobile power distribution device 21 of at least one other social space unit S2 , at least one of the power distribution object 30 placed corresponding to the mobile power distribution device 21 , and at least one mobile power distribution device 21 placed in another social space unit S2 .
  • the present application provides a shared power rental system 1, including:
  • a mobile power distribution device 21 wherein the mobile power distribution device 21 includes at least one mobile power distribution unit 210, a control module 2122 and a communication unit 2121, and the mobile power distribution device 21 is placed in at least one social space of a geographical area space S1 Unit S2;
  • a power-holding device 22, the power-holding device 22 and the mobile power distribution device 21 are placed in the same geographical area space S1;
  • a server 10 wherein the server 10 processes a release power distribution command 10211021 to the power holding device 22, and the power holding device 22 sends the release power distribution command 10211021 to the interactive processing part 216 of the mobile power distribution device 21, and the interactive processing part 216 sends it to the control module Group 212 to process release power distribution command 10211021.
  • the shared power rental system 1 further includes a power distribution object 30, the power distribution object 30 can be powered by the mobile power distribution device 21 and/or the power holding device 22, and the power holding device 22 has a first Power-sustaining power distribution chamber 2202 and one or more second power-sustaining power distribution chambers 2202, the mobile power distribution device 21 is placed in the first power-sustaining power distribution chamber 2202, and the mobile power distribution device 21 is powered by the power-sustaining output part 215 , the object to be distributed 30 is placed in the second power-sustaining power distribution cavity 2202, and the object to be distributed 30 is powered by the power-sustaining output unit 215; or
  • the power holding device 22 has a power holding power distribution chamber 2202, the mobile power distribution device 21 is placed in the power holding power distribution chamber 2202, and the mobile power distribution device 21 is powered by the power holding output part 215, and the mobile power distribution device 21 can be moved to social space unit S2.
  • the mobile power distribution device 21 includes a master mobile power distribution device 21A and a slave mobile power distribution device 21B, wherein:
  • Any mobile power distribution device 21 communicates with the host power distribution device 22A; or
  • the mobile power distribution device 21 includes one or more master mobile power distribution devices 21A and one or more slave mobile power distribution devices 21B.
  • the master mobile power distribution device 21A communicates with the master power distribution device 22A , communicating from the mobile power distribution device 21B to the master mobile power distribution device 21A to communicate with the master power distribution device 22A; or
  • the shared power rental system 1 further includes a power distribution object 30, and any power distribution object 30 communicates with the host power device 22A; or
  • the shared power rental system 1 further includes a distributed object 30, and there are more than two distributed objects 30, and the distributed object 30 includes one or more main distributed objects 30A and one or more distributed objects
  • the master power distribution object 30A communicates with the master power device 22A
  • the slave power distribution object 30B can communicate with the master mobile power distribution device 21A to communicate with the master power device 22A.
  • the present application provides a power holding device 22, comprising:
  • a power-sustaining input part 214 wherein the power-sustaining input part 214 is used to input current
  • the power holding device 22 has one or more power holding power distribution chambers 2202 and at least one receiving opening 2202 that conducts the power holding power distribution chambers 2202 and the external space, and at least one power holding output part 215 is arranged in the power holding power distribution chambers 2202, to output current to the equipment placed in the power distribution chamber 2202.
  • there are more than two power holding and distribution parts and the two power holding and distribution parts are arranged in a modular manner, and the receiving openings 2202 of the two power holding and distribution parts face the same direction.
  • the power holding device 22 includes at least one power holding and distribution execution unit, at least one power distribution execution unit is arranged in the power holding power distribution chamber 2202, and the power distribution execution unit is between a locking position and a release position. When the power distribution execution unit is held at the locking position, the power distribution execution unit is used for the locking position, and when the power distribution execution unit is at the release position, the power distribution execution unit is stored.
  • the power-holding device 22 further includes a power-holding battery part, the power-holding battery part is connected to the power-holding input part 214 and the power-holding output part 215 by a circuit, and the power-holding battery part stores the power-holding input part 214 input current, the power-sustaining output unit 215 outputs the power stored in the power-sustaining battery unit.
  • the power-sustaining device 22 further includes a power-sustaining interaction unit, which is circuit-connected to the power-sustaining control unit to actively detect user characteristic information and/or receive power rental-related information.
  • the power-holding control unit includes a power-holding control module and at least one power-holding communication module, the power-holding communication module is connected to the power-holding control module by a circuit, the power-holding control module is used for processing charging-related information, and the power-holding The communication module can communicate with other devices in a power sharing system 1 .
  • the power-sustaining device 22 has a first power-sustaining power distribution chamber 2202 and one or more second power-sustaining power distribution chambers 2202, and at least one of the power-sustaining output parts 215 is placed in the first power-sustaining distribution chamber 2202.
  • the electrical cavity 2202 is used for outputting current, and at least one of the charging output parts 215 is placed in the second power-sustaining distribution cavity 2202 for outputting current.
  • the power holding device 22 includes at least one power holding and distribution execution unit, at least one power distribution execution unit is arranged in the second power holding power distribution cavity 2202, and the power distribution execution unit is in a locking position and a release position. switch between positions, when the power distribution execution unit is held at the locking position, the power distribution execution unit is used for the locking position; when the power distribution execution unit is at the release position, the power distribution execution unit is stored.
  • the present application provides a shared power rental system 1, including:
  • a power-holding device 22 wherein the power-holding device 22 includes at least one power-holding input part 214, at least one power-holding output part 215 and has one or more power-holding power distribution chambers 2202, wherein the power-holding input part 214 is circuit-connected to an external power source to keep it live; and
  • the unit 215 supplies power, and the mobile power distribution device 21 can be moved to a social space unit S2 of the geographical area space S1.
  • the power holding device 22 includes a power distribution object 30, the power holding device 22 has a first power holding power distribution cavity 2202 and one or more second power holding power distribution cavities 2202, the mobile power distribution device 21 is placed in the first power-sustaining power distribution chamber 2202, and the mobile power distribution device 21 is powered by the power-sustaining output part 215, and the power distribution object 30 is placed in the second power-sustaining power distribution chamber 2202, and the power distribution object 30 Power is supplied by the power output unit 215 .
  • the power holding device 22 includes at least two power holding power distribution units and a power holding communication unit arranged at each power holding power distribution unit, and the power holding communication unit communicates with the mobile power distribution device 21 and the power distribution unit respectively. /or the power distribution object 30 .
  • the shared power rental system 1 further includes a server 10, and the power holding device 22 includes at least two power holding power distribution units and a power holding communication unit arranged at each power holding power distribution unit, The electrical communication unit communicates with one or more of another electrical communication unit, the server 10 , the mobile power distribution device 21 , and the power distribution object 30 provided in the electrical power distribution unit.
  • the power holding device 22 includes one or more main power holding devices 22A and one or more slave power holding devices 22B, and the power holding communication part of the main power holding device 22A communicates with another set in the power holding power distribution One or more of the power-sustaining communication unit of the department, the server 10, the mobile power distribution device 21, and the power-distributed object 30 can communicate with another power-sustaining device that is set at the power-sustaining power distribution unit from the power-storing device 22 One or more of the communication unit, the mobile power distribution device 21 and the power distribution object 30 .
  • the power-sustaining output unit 215 can be circuit-connected to the mobile power distribution device 21 placed in the power-sustaining power distribution chamber 2202 , the power holding output unit 215 receives the current of the mobile power distribution device 21 placed in the power holding power distribution cavity 2202, and the power holding battery part stores the power sent by the mobile power distribution device 21; or
  • the power-sustaining output unit 215 can be circuit-connected to the power-distributed object 30 placed in the power-sustaining power distribution chamber 2202, and the power-sustaining output unit 215 Receiving the current of the object to be distributed 30 placed in the power holding power distribution cavity 2202 , the power holding battery unit stores the amount of electricity sent by the object to be distributed 30 .
  • the present application provides a mobile power distribution device 21, wherein the mobile power distribution device 21 is suitable for releasing the electric energy of a power distribution object 30, including:
  • At least one mobile power distribution unit 210 wherein the mobile power distribution unit 210 can be removably placed in a social space unit S2 in a geographical area space S1;
  • control module 212 wherein the control module 212 further includes a control module and a communication module, wherein the control module processes the release power distribution instruction 1021 after receiving a release power distribution instruction 1021, and the communication module is connected to the control module by a circuit, The communication module is used for communication;
  • An output part 215, the output part 215 is placed in the mobile power distribution part 210, so that the output part 215 supplies power to the power distribution object 30;
  • An interaction processing part 216 the interaction processing part 216 is connected to the control module 212 by circuit, the communication module is connected to the interaction processing part 216 by circuit, the interaction processing part 216 can receive instructions and/or feedback.
  • control module 212 the output unit 215 and the mobile power distribution unit 210 are integrated; or
  • the mobile power distribution device 21 includes a power storage unit 211, the mobile power distribution unit 210 and the power storage unit 211 are detachable, and the communication module is placed in the mobile power distribution unit 210; or
  • the mobile power distribution device 21 includes a power storage unit 211, the mobile power distribution unit 210, the power storage unit 211 and the interaction processing unit 216 are detachably arranged, and the communication module is placed in the interaction processing unit 216; or
  • the mobile power distribution device 21 includes a power storage unit 211, the mobile power distribution unit 210, the power storage unit 211 and the interaction processing unit 216 are detachably arranged, and the communication module is placed in the mobile power distribution unit 210; or
  • the mobile power distribution unit 210 and the interaction processing unit 216 are detachably arranged, and the communication module is placed in the interaction processing unit 216; or
  • the mobile power distribution unit 210 and the interaction processing unit 216 are detachably provided, and the communication module is placed in the mobile power distribution unit 210 .
  • the mobile power distribution device 21 further includes an input part 214 and a power storage part 211, the input part 214 is connected to the power storage part 211 by a circuit, the input part 214 is connected to an external power source by a long-time circuit, and the power storage part
  • the electric part 211 is connected to the output part 215 by a circuit, and the output part 215 can output the electric quantity stored in the electric storage part 211; or
  • the mobile power distribution device 21 further includes an input part 214, and the input part 214 is connected to the power storage part 211 by a circuit. , the input part 214 is powered; or
  • the mobile power distribution device 21 includes at least one detachable power storage unit 211 , the power storage unit 211 is detachable, and the power storage unit 211 can be charged after being detached.
  • the mobile power distribution device 21 further includes a power distribution actuator 213, and the power distribution actuator 213 executes the execution release power distribution command 1021 sent by the control module 212 to release the restricted power distribution object 30 ,in:
  • the mobile power distribution device 21 has a mobile storage cavity 2100, at least one distributed cavity 2101, and a release opening 2102 that connects the powered distribution cavity 2101 with the external space, and the powered distribution cavity 2101 and the mobile storage cavity 2100 are kept at intervals , the mobile power distribution unit 210 is housed in the power distribution cavity 2101, so that the power distribution object 30 is limited by the power distribution actuator 213 in a manner of being accommodated in the power distribution cavity 2101; or
  • the power distribution actuator 213 has a release position and a limit position. When the power distribution actuator 213 is in the limit position, the surface of the power distribution actuator 213 and the mobile power distribution part 210 defines a distribution chamber 2101 for The released object placed in the mobile power distribution unit 210 is stuck in the mobile power distribution device 21; or
  • the power distribution executive mechanism 213 includes an induction coil that can be energized. When the induction coil is energized, it attracts the object 30 to be distributed with a magnet in a magnetic induction manner. can be taken; or
  • the mobile power distribution device 21 has a mobile storage chamber 2100, and the power distribution object 30 is built in the mobile storage chamber 2100, and the power distribution object 30 communicates with the control module 212 for the power distribution object 30 to be placed in the mobile storage
  • the cavity 2100 outputs current to the device.
  • the mobile power distribution device 21 includes a master mobile power distribution device 21A and a slave mobile power distribution device 21B, wherein the slave mobile power distribution device 21B can communicate with the master mobile power distribution device 21A in a short distance, and the master mobile power distribution device Electrical device 21A may communicate over long distances and/or over short distances; or
  • Short-distance communication and/or long-distance communication can be performed between the mobile power distribution devices 21 .
  • the present application provides a shared terminal 200, including:
  • a power distribution object 30 wherein the power distribution object 30 is placed in the mobile power distribution part 210 of the mobile power distribution device 21 , and the power distribution object 30 is configured to discharge electricity by the mobile power distribution device 21 .
  • the mobile power distribution device 21 includes at least one communication module.
  • Two independent social space units S2 of the regional space S1 the communication module of the mobile power distribution device 21 of one social space unit S2 can communicate with the communication module of the mobile power distribution device 21 of at least one other social space unit S2, placed At least one of the at least one mobile power distribution device 21 corresponding to the power distribution object 30 of the mobile power distribution device 21 is placed in another social space unit S2.
  • the communication module of the mobile power distribution device 21 of one social space unit S2 and the communication module of the mobile power distribution device 21 of another social space unit S2, and the communication module is circuit-connected to the interaction processing unit 216, to The interaction processing part 216 for at least two social space units S2 is connected.
  • the mobile power distribution device 21 is configured for an a la carte system, at least one linked game, and at least one shared power supply management system.
  • the present application provides a shared power rental system 1, including:
  • the power device 22 and the mobile power distribution device 21 held by one or more power holding devices 22 are placed in the same geographic area space S1, and the power holding device 22 is connected to an external power source by a circuit to supply power to the mobile power distribution device 21;
  • a server 10 wherein the server 10 processes a release power distribution command 10211021 to the power holding device 22, and the power holding device 22 sends the release power distribution command 10211021 to the interactive processing part 216 of the mobile power distribution device 21, and the interactive processing part 216 sends it to the control module Group 212 to process release power distribution command 10211021.
  • the communication module of one mobile power distribution device 21 can communicate with at least one of the communication module of another mobile power distribution device 21, the server 10, and the power holding device 22. one.
  • the mobile power distribution device 21 includes a master mobile power distribution device 21A and a slave mobile power distribution device 21B, wherein:
  • Any mobile power distribution device 21 communicates with the power holding device 22; or
  • the power-holding device 22 includes one or more main power-holding devices 22A and one or more slave power-holding devices 22B.
  • the main mobile power distribution device 21A communicates with the main power-holding device 22A, and the slave mobile power distribution The device 21B communicates with the master mobile power distribution device 21A to communicate with the master power distribution device 22A; or
  • Power holding device 22 is more than two, and power holding device 22 comprises one or more main power holding devices 22A and one or more slave power holding devices 22B, and the slave mobile power distribution device 21B communicates with the main mobile power distribution device 21A, and the main mobile power distribution device The power distribution device 21A communicates with the slave power-holding device 22B, and the slave power-holding device 22B is circuit-connected to the master power device 22A to communicate with the master power device 22A; or
  • Any power distribution object 30 communicates with the power holding device 22 .
  • the shared power rental system 1 further includes a power distribution object 30, the power distribution object 30 can be powered by the mobile power distribution device 21 and/or the power holding device 22, and the power holding device 22 has a first Power-sustaining power distribution chamber 2202 and one or more second power-sustaining power distribution chambers 2202, the mobile power distribution device 21 is placed in the first power-sustaining power distribution chamber 2202, and the mobile power distribution device 21 is powered by the power-sustaining output part 215 , the object to be distributed 30 is placed in the second power-sustaining power distribution cavity 2202, and the object to be distributed 30 is powered by the power-sustaining output unit 215; or
  • the power holding device 22 has a power holding power distribution chamber 2202, the mobile power distribution device 21 is placed in the power holding power distribution chamber 2202, and the mobile power distribution device 21 is powered by the power holding output part 215, and the mobile power distribution device 21 can be moved to social space unit S2.
  • the mobile power distribution device 21 includes a master mobile power distribution device 21A and a slave mobile power distribution device 21B, wherein the slave mobile power distribution device 21B can communicate with the master mobile power distribution device 21A in a short distance, and the master mobile power distribution device Electrical device 21A may communicate over long distances and/or over short distances; or
  • the power holding device 22 is circuit connected to an external power source; or
  • the power-holding device 22 includes a master power-holding device 22A and a slave power-holding device 22B, the master power-holding device 22A can communicate with the server 10, the slave power-holding device 22B can communicate with the master power-holding device 22A, and the mobile power distribution device 21 can communicate over a long distance In each host power device 22A.
  • the mobile power distribution device 21 is configured for an a la carte system, at least one game that can be linked, and at least one shared power supply management system.
  • the mobile power distribution device 21 is held in at least two social space units of the geographical area space S1, wherein the mobile power distribution device 21 is held in the social space unit S2 to release the electric energy of the power distribution object 30 .
  • the number of power-holding devices 22 is two, and the power-holding devices 22 are communicatively connected to form a shared power supply network.
  • the shared power rental system 1 further includes a server 10, wherein the server 10 processes a release power distribution command 10211021 to the power holding device 22, and the power holding device 22 sends the release power distribution command 10211021 to the mobile power distribution device 21
  • the interaction processing unit 216, the interaction processing unit 216 sends to the control module 212 to process and release the power distribution command 10211021.
  • the shared power rental system 1 further includes at least one service terminal and a server 10, the service terminal receives at least one power distribution service reminder from the server 10, and the power distribution service reminder is displayed or voiced to remind the service personnel Provide power storage maintenance service for the mobile power distribution device 21 .
  • the power distribution object 30 that meets the release condition is implemented with an electric power greater than the minimum power distribution threshold, and the minimum power distribution threshold of the power distribution object 30 that is released is 30%.
  • the shared power rental system 1 further includes a server 10, and the server 10 receives at least one device identifier and the user carrying the power holding device 22, the mobile power distribution device 21 or the power distribution object 30 and the user For a power distribution-related request of the identifier, the server 10 generates a release power distribution instruction 1021 .
  • the shared power rental system 1 further includes a server 10. After receiving the user's identification code, the server 10 sends a return instruction to the mobile power distribution device 21, and the mobile power distribution device 21 receives the borrowed The power distribution object 30 and the mobile power distribution device 21 feed back to the server 10 to end the power release.
  • the mobile power distribution device 21 further includes a power distribution actuator 213, and the power distribution actuator 213 executes the execution release power distribution command 1021 sent by the control module 212 to release the restricted power distribution object 30 ,in:
  • the mobile distribution device 21 has a mobile storage cavity 2100, at least one distributed cavity 2101, and a release opening 2102 that connects the powered distribution cavity 2101 with the external space, and the mobile distribution cavity and the mobile storage cavity 2100 are kept at intervals,
  • the mobile power distribution part 210 is accommodated in the mobile power distribution cavity, so that the object 30 to be distributed is limited by the power distribution actuator 213 in a manner of being accommodated in the power distribution cavity 2101; or
  • the power distribution actuator 213 has a release position and a limit position. When the power distribution actuator 213 is in the limit position, the surface of the power distribution actuator 213 and the mobile power distribution part 210 defines a distribution chamber 2101 for The released object placed in the mobile power distribution unit 210 is stuck in the mobile power distribution device 21; or
  • the power distribution actuator 213 includes an induction coil that can be energized. When the induction coil is energized, it attracts the power distribution object 30 with a magnet in a magnetic induction mode. When the power distribution of the induction coil is stopped, the power distribution object is supplied. 30 can be taken; or
  • the mobile power distribution device 21 has a mobile storage chamber 2100, and the power distribution object 30 is built in the mobile storage chamber 2100, and the power distribution object 30 communicates with the control module 212 for the power distribution object 30 to be placed in the mobile storage
  • the cavity 2100 outputs current to the device.
  • the power-holding device 22 executes the release power distribution instruction 1021 after receiving the power distribution release command 1021 sent by the server 10, and the power-holding device 22 sends the power distribution release command 1021 to the distributed Subject 30; and/or
  • the power holding device 22 After receiving the power distribution release instruction 1021 sent by the server 10 , the power holding device 22 sends it to the power distribution target 30 , and the power distribution target 30 and/or the mobile power distribution device 21 executes the power distribution release command 1021 .
  • the object to be distributed 30 has a built-in battery, wherein:
  • the distributed object 30 is connected to the electrical equipment by wires to discharge the electricity; and/or
  • the object to be distributed 30 releases electricity by docking with the electric device.
  • the power distribution object 30 and the mobile power distribution device 21 are integrally set; or
  • the object to be distributed 30 is detachably accommodated in the mobile power distribution device 21, and after a power distribution release instruction 10211021 is triggered, the object to be distributed 30 is released by the mobile power distribution device 21; or
  • the object to be distributed 30 is supported in a limited position by the mobile power distribution device 21 , and after a power distribution release command 10211021 is triggered, the object to be distributed 30 is released by the mobile power distribution device 21 to release electric energy.
  • the present application provides at least two mobile power distribution devices 21, and the two mobile power distribution devices 21 are respectively placed in at least one social space unit S2 of a geographical area space S1, wherein the mobile power distribution device 21 Including at least one mobile power distribution unit 210, a communication unit and at least one interaction processing unit 216, the communication unit of the mobile power distribution device 21 of one interaction space unit can communicate with the mobile distribution unit of at least one interaction space unit of the same social space unit S2.
  • the communication part of the electrical device 21 is used to link the interaction processing part 216 of the mobile power distribution device 21 in two interactive space units.
  • the mobile power distribution device 21 further includes a power storage part 211 and an output part 215, the output part 215 is placed in the mobile power distribution part 210, and the output part 215 is connected to the power storage part 211 by a circuit, so as to The power supply and output unit 215 supplies power to the power distribution object 30 .
  • control module 212 the communication module, the output unit 215, and the mobile power distribution unit 210 are integrated.
  • the mobile power distribution device 21 further includes a power storage unit 211, the mobile power distribution unit 210 and the power storage unit 211 are detachable, and the communication module is placed in the mobile power distribution unit 210; or
  • the mobile power distribution device 21 further includes a power storage unit 211, the mobile power distribution unit 210, the power storage unit 211 and the interaction processing unit 216 are detachably arranged, and the communication module is placed in the interaction processing unit 216; or
  • the mobile power distribution device 21 further includes a power storage unit 211, the mobile power distribution unit 210, the power storage unit 211 and the interaction processing unit 216 are detachably arranged, and the communication module is placed in the mobile power distribution unit 210; or
  • the mobile power distribution unit 210 and the interaction processing unit 216 are detachably arranged, and the communication module is placed in the interaction processing unit 216; or
  • the mobile power distribution unit 210 and the interaction processing unit 216 are detachably arranged, and the communication module is placed in the mobile power distribution unit 210 and the interaction processing unit 216 .
  • the mobile power distribution device 21 can be configured modularly, wherein the mobile power distribution device 21 further includes at least one connection mechanism, and at least two mobile power distribution units 210 are detachably connected by the connection mechanism, wherein the connection The mechanism is a magnetic attraction mechanism or a snap-in mechanism.
  • the sharing terminal 200 further includes a power distribution object 30, the power distribution object 30 and the mobile power distribution device 21 are placed in the same social space unit S2, and the power distribution object 30 is limitedly placed
  • the mobile power distribution unit 210 of the mobile power distribution device 21 discharges electric power as the power distribution object 30 is arranged by the mobile power distribution device 21 .
  • the sharing terminal 200 further includes a power distribution object 30, and there are more than two mobile power distribution devices 21.
  • the mobile power distribution device 21 includes at least one communication unit 2121, and the communication unit 2121 is set in a mobile power distribution device.
  • the electrical part 210 and the mobile power distribution device 21 are respectively placed in two independent social space units S2 of a geographical area space S1, and the communication unit 2121 of the mobile power distribution device 21 of a social space unit S2 can communicate with at least one other social space At least one of the communication unit 2121 of the mobile power distribution device 21 in the space unit S2, the power distribution object 30 placed in the corresponding mobile power distribution device 21, and at least one of the at least one mobile power distribution device 21 placed in the other social space unit S2 .
  • the mobile power distribution device 21 is configured for an a la carte system, at least one linked game, and at least one shared power supply management system.
  • the present application provides a shared power rental system 1, including:
  • a shared terminal 200 there are at least two mobile power distribution devices 21, and the two mobile power distribution devices 21 are respectively placed in at least one social space unit S2 of a geographical area space S1, wherein the mobile power distribution device 21 includes at least one mobile power distribution device
  • One or more power holding devices 22, the power holding device 22 and the mobile power distribution device 21 are located in the same geographical area space S1; and
  • a server 10 wherein the server 10 processes a release power distribution command 10211021 to the power holding device 22, and the power holding device 22 sends the release power distribution command 10211021 to the interactive processing part 216 of the mobile power distribution device 21, and the interactive processing part 216 sends it to the control module Group 212 to process release power distribution command 10211021.
  • the mobile power distribution device 21 includes a master mobile power distribution device 21A and a slave mobile power distribution device 21B, wherein the slave mobile power distribution device 21B can communicate with the master mobile power distribution device 21A in a short distance, and the master mobile power distribution device Electrical device 21A may communicate over long distances and/or over short distances; or
  • the mobile power distribution device 21 can communicate with each power holding device 22 over a long distance; or
  • the power-holding device 22 includes a master power-holding device 22A and a slave power-holding device 22B, the master power-holding device 22A can communicate with the server 10, the slave power-holding device 22B can communicate with the master power-holding device 22A, and the mobile power distribution device 21 can communicate over a long distance In each host power device 22A.
  • powered devices 22 include one or more master powered devices 22A and one or more slave powered devices 22B communicable with master powered devices 22A, wherein:
  • Any mobile power distribution device 21 communicates with the host power distribution device 22A; or
  • the mobile power distribution device 21 includes a main mobile power distribution device 21A and a slave mobile power distribution device 21B, the main mobile power distribution device 21A communicates with the host power distribution device 22A and/or the slave power holding device 22B, and the slave mobile power distribution device 21B communicates at the master mobile power distribution device 21A to communicate with the master power distribution device 22A; or
  • the sharing terminal 200 further includes a power distribution object 30, and any power distribution object 30 communicates with the host power device 22A; or
  • the sharing terminal 200 further includes at least two distributed objects 30, and the distributed objects 30 include one or more main distributed objects 30A and one or more distributed objects 30, and the main distributed objects 30A communicate with
  • the main electric device 22A can communicate with the main mobile power distribution device 21A from the power distribution object 30B to communicate with the main electric device 22A.
  • the sharing terminal 200 further includes a power distribution object 30, and the power distribution object 30 has a built-in battery, wherein:
  • the distributed object 30 is connected to the electrical equipment by wires to discharge the electricity; and/or
  • the object to be distributed 30 releases electricity by docking with the electric device.
  • the shared power rental system 1 further includes at least one service terminal and a server 10, the service terminal receives at least one power distribution service reminder from the server 10, and the power distribution service reminder is displayed or voiced to remind the service personnel Provide power storage maintenance service for the mobile power distribution device 21 .
  • the power distribution object 30 that meets the release condition is implemented with an electric power greater than the minimum power distribution threshold, and the minimum power distribution threshold of the power distribution object 30 that is released is 30%.
  • the shared power rental system 1 further includes a server 10, and the server 10 receives at least one device identifier and the user carrying the power holding device 22, the mobile power distribution device 21 or the power distribution object 30 and the user For a power distribution-related request of the identifier, the server 10 generates a release power distribution instruction 1021 .
  • the shared power rental system 1 further includes a server 10. After receiving the user's identification code, the server 10 sends a return instruction to the mobile power distribution device 21, and the mobile power distribution device 21 receives the borrowed The power distribution object 30 and the mobile power distribution device 21 feed back to the server 10 to end the power release.
  • the mobile power distribution device 21 further includes a power distribution actuator 213, and the power distribution actuator 213 executes the execution release power distribution command 1021 sent by the control module 212 to release the restricted power distribution object 30 ,in:
  • the mobile distribution device 21 has a mobile storage cavity 2100, at least one distributed cavity 2101, and a release opening 2102 that connects the powered distribution cavity 2101 with the external space, and the mobile distribution cavity and the mobile storage cavity 2100 are kept at intervals,
  • the mobile power distribution part 210 is accommodated in the mobile power distribution cavity, so that the object 30 to be distributed is limited by the power distribution actuator 213 in a manner of being accommodated in the power distribution cavity 2101; or
  • the power distribution actuator 213 has a release position and a limit position. When the power distribution actuator 213 is in the limit position, the surface of the power distribution actuator 213 and the mobile power distribution part 210 defines a distribution chamber 2101 for The released object placed in the mobile power distribution unit 210 is stuck in the mobile power distribution device 21; or
  • the power distribution actuator 213 includes an induction coil that can be energized. When the induction coil is energized, it attracts the power distribution object 30 with a magnet in a magnetic induction mode. When the power distribution of the induction coil is stopped, the power distribution object is supplied. 30 can be taken; or
  • the present application provides a shared power supply management system, wherein the shared power supply management system is suitable for releasing the electric energy of at least one object 30 to be distributed, including:
  • a power distribution center 110 wherein the power distribution center 110 includes at least one power distribution unit 111, and the power distribution unit 111 distributes at least one release power distribution command 10211021 according to the power distribution request;
  • a strategy generation center 130 wherein the power distribution center 110 includes at least one power distribution unit 111 , and the strategy generation center 130 includes at least one management strategy generation unit 132 .
  • the shared power supply management system further includes a power monitoring center 150.
  • the power monitoring center 150 can communicate with the power distribution unit 111 of the power distribution center 110 for real-time monitoring to obtain power-related information, wherein at least A power distribution object 30 and at least one power supplementation station 20 are monitored.
  • the strategy generation center 130 includes at least one power distribution strategy generation unit 131, and the power distribution strategy generation unit 131 generates a power distribution strategy according to the state of at least one power distribution object 30, for the One of the at least two power distribution objects 30 that meets the power distribution condition is released.
  • the policy generation center 130 includes at least one management policy generation unit 132.
  • the management policy generation unit 132 generates a management policy according to the real-time status of the power distribution object 30 and/or a mobile power distribution device 21.
  • the generation unit 132 receives the power related information from the power distribution strategy generation unit 131 to generate a device management strategy, wherein the device management strategy includes at least one of delivery quantity, delivery time, and charging service time of a single geographic area space S1.
  • the shared power supply management system further includes a management center 120, wherein the management center 120 includes at least one electric energy supplementation station management module 1211, wherein the electric energy supplementation station management module 1211 is communicably connected to the management policy generation unit 132 , wherein the electric energy replenishment station management module 1211 generates the management policy according to the management policy generation unit 132 .
  • the shared power supply management system further includes a power monitoring center 150.
  • the power monitoring center 150 includes at least one shared terminal monitoring unit 151, at least one power distribution process monitoring unit 152, and a power monitoring unit 153.
  • the shared terminal monitors The unit 151 monitors the real-time status, power and/or communication signal of the sharing terminal 200, and the power distribution process monitoring unit 152 monitors the power status, location status and/or online communication status of a power distribution object 30 in at least one power distribution process,
  • the electric energy monitoring unit 153 obtains the electricity lease distribution status in at least one different geographic area environment, so as to obtain an electricity lease map.
  • the present invention provides a power-sustaining device 22, including one or more power-sustaining power distribution units 220, a power-sustaining control unit 222, and one or more power-sustaining output units 215, wherein the power-sustaining The electric output part 215 is respectively circuit connected to the said power holding control part 222, and said power holding output part 215 is arranged on said power holding power distribution part, wherein said power holding device 22 has one or more power holding distribution parts.
  • the power distribution chamber 2201 is used to output current.
  • the present invention provides a power-sustaining device 22, including one or more power-sustaining power distribution units 220, a power-sustaining control unit 222, and one or more power-sustaining output units 215, wherein the power-sustaining The electric output part 215 is respectively circuit connected to the said power holding control part 222, and said power holding output part 215 is arranged on said power holding power distribution part, wherein said power holding device 22 has one or more power holding distribution parts.
  • the power distribution chamber 2201 is used to output current.

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Abstract

一种共享租电系统,适于释放一被配电对象(30)的电能,共享租电系统包括一移动配电装置(21)、一个或多个持电装置以及一服务器(30),移动配电装置(21)是至少二个,两个移动配电装置(21)分别被置于一地理区域空间的至少一社交空间单位,其中移动配电装置(21)包括至少一移动配电部(210)、至少一交互处理部(216)和一通信模块(2121),移动配电装置(21)被置于一地理区域空间的至少一社交空间单位,以供至少两个所述社交空间单位的所述交互处理部(216)被连接,持电装置(22)和移动配电装置(21)被置于同一地理区域空间。

Description

共享租电系统 技术领域
本申请涉及租电领域,尤其涉及共享租电系统。
背景技术
近年来,随着移动设备的广泛应用,手机作为交流通信的日常移动设备,人们越来越离不开手机。但是,手机的续航时间有限,人们有时候需要长时间待机使用的情况下,由于手机的被配电对象容量有限,人们常常在远离插座的情况下需要给手机续电。现在有一种共享被配电对象充电柜可以为需要充电的被配电对象进行充电,以解决手机的被配电对象容量有限、使用可持续性不强的问题。
实际使用中,但是由于共享充电柜常常被置于一个商业空间的角落,用户需要特定位置找到共享充电柜后,再沿途找到目标共享充电柜,以用于归还借的充电宝。但是用户在一个空间中走动较远的距离才能够取出、归还充电宝,较为不便。
此外,由于每个充电宝都是单独和共享充电柜通信地连接,因此,当信号不佳的情况下,充电宝不能够即时地通信至共享充电柜相关信息,如充电宝的电量信息。
发明内容
本发明的其它优势和特点通过下述的详细说明得以充分体现并可通过所附图特地指出的手端和装置的组合得以实现。
依本发明的一个方面,能够实现前述目的和其他目的和优势的本发明的一移动配电装置,其中所述移动配电装置适于释放一被配电对象的电能,包括:
至少一移动配电部,其中所述移动配电部可被移动地置于一地理区域空间中的一个社交空间单位;
一控制模组,其中所述控制模组进一步地包括一控制模块和一通信模块,其中所述控制模块接收到一释放配电指令后处理所述释放配电指令,所述通信模块被电路连接于所述控制模块,所述通信模块用于通信;
一输出部,所述输出部被置于所述移动配电部,以供所述输出部供电于所述被配电对象;以及
一交互处理部,所述交互处理部被电路连接于所述控制模组,所述通信模块被电路连接于所述交互处理部,所述交互处理部可接收指令和/或反馈。
依本发明的另一个方面,本发明提供一移动配电装置,其中所述移动配电装置适于释放一被配电对象的电能,包括:
至少一移动配电部,其中所述移动配电部可被移动地置于一地理区域空间中的一个社交空间单位;
一控制模组,所述控制模组接收到一释放配电指令后处理所述释放配电指令;以及
一输出部,所述输出部被置于所述移动配电部,以供所述输出部供电于所述被配电对象。
依本发明的另一个方面,本发明提供一持电装置,包括:
一个或多个持电配电部;
一持电控制部;
一持电输入部,其中持电输入部用于输入电流;以及
一个或多个持电输出部,其中所述持电输入部和所述持电输出部分别电路连接于所述持电控制部,并且所述持电输入部和所述持电输出部被设置于所述持电配电部;
其中所述持电装置具有一个或多个持电配电腔和导通所述持电配电腔和外部空间的至少一收容开口2202,至少一个所述持电输出部被设置于所述持电配电腔,以输出电流至被置于所述持电配电腔的设备。
依本发明的另一个方面,本发明提供一共享终端,包括:
至少二个移动配电装置,两个所述移动配电装置分别被置于一地理区域空间的至少一社交空间单位,其中所述移动配电装置包括至少一移动配电部和至少一交互处理部,一个交互空间单位的所述移动配电装置的所述交互处理部可通信于至少一个其他交互空间单位的所述移动配电装置的所述交互处理部;和
一被配电对象,其中所述被配电对象被置于所述移动配电装置的所述移动配电部,所述被配电对象被所述移动配电装置配置地释放电量。
依本发明的另一个方面,本发明提供一共享租电系统,包括:
一移动配电装置,所述移动配电装置是至少二个,两个所述移动配电装置分别被置于一地理区域空间的至少一社交空间单位,其中所述移动配电装置包括至少一移动配电部、至少一交互处理部和一通信模块,所述移动配电装置被置于一地理区域空间的至少一社交空间单位,以供至少两个所述社交空间单位的所述交互处理部被连接;
一个或多个持电装置所持电装置和所述移动配电装置被置于同一地理区域空间,所述持电装置被电路连接于外部电源,以供电于所述移动配电装置;和
一服务器,其中所述服务器处理一用电释放指令至所述持电装置,所述持电装置发送所述用电释放指令至所述移动配电装置的所述交互处理部,所述交互处理部发送至所述控制模组,以处理所述用电释放指令。
依本发明的另一个方面,本发明提供一移动配电装置,其中所述移动配电装置适于释放一被配电对象的电能,包括:
至少一移动配电部,其中所述移动配电部可被移动地置于一地理区域空间中的一个社交空间单位;
至少一蓄电部,其中所述蓄电部存储电能;
一控制模组,其中所述控制模组接收到一释放配电指令后处理所述释放配电指令;
一输出部,以供所述输出部用于输出电流。
依本发明的另一个方面,本发明提供一共享供电管理系统,其中所述共享供电管理系统适于释放至少一被配电对象的电能,包括:
一配电中心,其中所述配电中心包括至少一配电单元,所述配电单元根据配电请求分配至少一用电释放指令;以及
一策略生成中心,其中所述配电中心包括至少一配电单元,所述策略生成中心包括至少一管理策略生成单元。
依本发明的另一个方面,本发明提供一共享方法,包括以下步骤:
(s001)至少一用户请求被触发后,生成一指令;和
(s002)藉由被保持于一社交空间单位的至少一共享终端,在接收到所述指令后执行所述指令。
依本发明的另一个方面,本发明提供一共享租电系统,包括:
至少二移动配电装置,至少一所述移动配电装置被置于一地理区域空间的至少一社交空间单位,以供至少两个所述社交空间单位的所述交互处理部被连接;
一个或多个持电装置所持电装置和所述移动配电装置被置于同一地理区域空间,所述持电装置被电路连接于外部电源,以供电于所述移动配电装置;和
一服务器,其中所述服务器处理一用电释放指令至所述持电装置,所述持电装置发送所述用电释放指令至所述移动配电装置的所述交互处理部,所述交互处理部发送至所述控制模组,以处理所述用电释放指令;
其中所述移动配电装置被配置地用于一点菜系统、可联动的至少一游戏、至少一共享供电管理系统。
通过对随后的描述和附图的理解,本发明进一步的目的和优势将得以充分体现。与现有技术相比,本申请的有益效果为:在一些实施例中,方便用户处于社交空间单元S2时即可获得电量。在一些实施例中,方便用户在社交空间单元S2内无需走动就可以获得电量。在一些实施例中,方便用户在各自的社交空间单元S2内实现社交,以打破各自的社交空间单元S2。在一些实施例中,移动配电装置以社交距离为划分的方式被置于单个社交空间单元,以使得用户能够实时地在长时间停留的社交空间单元内获取电能。在一些实施例中,移动配电装置的数量是三个以上,移动配电装置组成一共享配电网,在不同的社交空间单元,以关联不同的社交空间单元。进一步地,被分隔的社交空间单元可以通过被配置于其中的移动配电装置而通信地关联起来。在一些实施例中,移动配电装置以移动的方式被配置于不同的社交空间单元中,以方便用户不需要进入其他社交空间单元,只要在自己所处的社交空间单元就可以立刻使用共享配电管理系统。在一些实施例中,移动配电装置和/或持电装置之间发送至少一被匹配标识符的被配电对象的配电相关信息,配电相关信息包括且不限于被配电对象的标识符、电能相关信息以及对应的移动配电装置收容电量信息。在一些实施例中,服务器发送一归还许可指令于所述电能补充站或者被置于所述电能补充站的所述被配电对象,以接收待归还的所述被配电对象。
附图说明
图1A是根据本发明的较佳实施例的共享租电系统的示意图。
[根据细则91更正 28.02.2023]
图1B是根据本发明的上述较佳实施例的共享租电系统的应用示意图。
图1C是根据本发明的上述较佳实施例的变形实施例的共享租电系统的示意图。
图1D是根据本发明的上述较佳实施例的变形实施例的共享租电系统的应用示意图。
图2A至图4B是根据本发明的上述较佳实施例的共享租电系统的示意图。
图4C至图4H是根据本发明的上述较佳实施例的共享租电系统的另一个示意图。
图5A至图6B是根据本发明的上述较佳实施例的共享租电系统的另一个示意图。
图7A和图7B是根据本发明的上述较佳实施例的共享租电系统的2种示意图。
图8A是根据本发明的另一个较佳实施例的共享租电系统的示意图。
图8B至图11B是根据本发明的上述较佳实施例的共享租电系统的示意图。
图12A至图12F是根据本发明的上述较佳实施例的共享租电系统的应用示意图。
图13A是根据本发明的另一个较佳实施例的共享租电系统的另一个示意图。
图13B是根据本发明的另一个较佳实施例的变形实施例的共享租电系统的另一个示意图。
[根据细则91更正 28.02.2023]
图13C和图13D是根据本发明的上述较佳实施例的共享租电系统的应用示意图。
图14A至图14C是根据本发明的上述较佳实施例的变形实施例的共享租电系统一个示意图。
图15A至图15D是根据本发明的上述较佳实施例的变形实施例的共享租电系统一个示意图。
图16A至图16D是根据本发明的上述较佳实施例的变形实施例的的一个示意图。
图16E至图16G是根据本发明的上述较佳实施例的变形实施例的实施方式的一个示意图。
图16H和图16I是根据本发明的上述较佳实施例的变形实施例的租电的一个示意图。
图17A至图17C是根据本发明的另一个较佳实施例的共享租电系统的的一个示意图。
图17D是根据本发明的上述较佳实施例的变形实施例的共享租电系统一个示意图。
[根据细则91更正 28.02.2023]
图17E是根据本发明的上述较佳实施例的变形实施例的共享租电系统一个示意图。
图17F是根据本发明的上述较佳实施例的变形实施例的共享租电系统一个示意图。
图18A至图18D是根据本发明的上述较佳实施例的变形实施例的共享租电系统一个示意图。
图19是根据本发明的上述较佳实施例的变形实施例的共享租电系统一个示意图。
具体实施方式
下面,结合具体实施方式,对本申请做进一步描述,需要说明的是,在不相冲突的前提下,以下描述的各实施例之间或各技术特征之间可以任意组合形成新的实施例。
在本申请的描述中,需要说明的是,对于方位词,如有术语“中心”、“横向”、“纵向”、“长度”、“宽度”、“厚度”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”、“顺时针”、“逆时针”等指示方位和位置关系为基于附图所示的方位或位置关系,仅是为了便于叙述本申请和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定方位构造和操作,不能理解为限制本申请的具体保护范围。
需要说明的是,本申请的说明书和权利要求书中的术语“第一”、“第二”等是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。
本申请的术语“包括”和“具有”以及他们的任何变形,意图在于覆盖不排他的包含,例如,包含了一系列步骤或单元的过程、方法、系统、产品或设备不必限于清楚地列出的那些步骤或单元,而是可包括没有清楚地列出的或对于这些过程、方法、产品或设备固有的其它步骤或单元。
本申请的说明书和权利要求书中的术语“多个”是指两个或两个以上。
以下描述用于揭露本发明以使本领域技术人员能够实现本发明。以下描述中的较佳实施例只作为举例,本领域技术人员可以想到其他显而易见的变型。在以下描述中界定的本发明的基本原理可以应用于其他实施方案、变形方案、改进方案、等同方案以及没有背离本发明的精神和范围的其他技术方案。
本发明的一个较佳实施例的共享租电系统1被详细地揭露并诠释,共享租电系统1包括至少一服务器10、至少一电能补充站20以及至少一被配电对象30。被配电对象30被收容供电于电能补充站20,电能补充站20可通信地连接于服务器10,被配电对象30被配置为机械和通信连接于电能补充站20。
共享租电系统1能够支配至少一被配电对象30被释放。
共享租电系统1被能够管理被配电对象30被归还。在一些实施例中,共享租电系统1能够支配至少一被配电对象30释放电能。在一些实施例中,共享租电系统1通信地连接于一个或多个被配电对象30和一个或多个电能补充站20中的至少一个。
在一些实施例中,其中电能补充站20包括至少一个移动配电装置21和一持电收容装置,其中移动配电装置21可被插拔地收容于持电收容装置,当移动配电装置21被远离持电收容装置地被放置,被配电对象30被可被插拔地收容于移动 配电装置21,移动配电装置21以内置电池的方式可实地地向被配电对象30补充电能。
在一些实施例中,电能补充站20收容供电于至少一被配电对象30,电能补充站20可被通信于服务站1,以释放至少一被配电对象30。
在一些实施例中,电能补充站20可被方便移动地置于需电位置,在一些实施例中,电能补充站20和被收容于其中的被配电对象30构成一共享终端200,以使得用户可以通过共享终端200用电、交互和/或娱乐。在一些实施例中,电能补充站20的所述移动配电装置21和被收容于其中的被配电对象30构成一共享终端200,以使得用户可以通过共享终端200用电、交互和/或娱乐。在一些实施例中,电能补充站和/或被配电对象以4G/5G或者连接于局域网的方式通信于共享配电管理系统。
在一些实施例中,在电能补充站20和/或被配电对象30被连接于手机热点、WIFI或者其他私域网时,在电能补充站20通信于共享配电管理系统。
在一些实施例中,电能补充站20包括至少二持电装置22,持电装置22被供电地置于需电位置,以长时间收容供电至少一被配电对象30,以使得用户能够在其所在区域及时地获取被移动配电装置21释放的被配电对象30的电能。
在一些实施例中,电能补充站20包括至少一移动配电装置21和可收容供电于移动配电装置的至少一持电装置22,持电装置22被长时间带电地保持。在一些实施例中,2个移动配电装置被通信地连接,2个移动配电装置之间发送至少一配电相关信息。
在一些实施例中,移动配电装置21之间发送至少一被匹配标识符的被配电对象30的配电相关信息,配电相关信息包括且不限于被配电对象的标识符、被配电前的电能相关信息以及对应的移动配电装置被保持至少一收容空位等信息。
在一些实施例中,被配电对象30被归还前的配电相关信息可显示于用户。所述移动配电装置21可反馈配电相关信息。所述共享终端200的至少其中一个可通信于服务器10,以通信配电相关信息。
参考说明书附图之图1A,电能补充站20可以被配置有电源模块,电源模块可以内置于电能补充站20,当然也可以采用外部电源,特别是,电源模块为外部电源时,此外部电源可以为AC电源,也可以为DC电源,或者无线充电电源;此时电能补充站20的电源模块可以适于给被配电对象30充电。
进一步,被配电对象30具有正、负极端口和信号端口,当被配电对象30机械连接于电能补充站20时,上述正、负极端口和信号端口均与电能补充站20对应端口连接,以实现电能补充站20通过正负极端口向被配电对象30提供电力,并通过信号端口与被配电对象30直接接触通信;具体的详见下文。
优选地,被配电对象30是一充电宝的供电设备或者智能供电设备。用户通过租借被配电对象30可以给其他设备60供电。
参考说明书附图之图1B,至少一个电能补充站20和被配电对象30被一起地保持于地理区域空间S1的其中一个社交空间单元S2S2,以便于一个社交空间单元S2S2的人使用电能补充站20和被配电对象30。
值得一提的是,社交空间单元S2是一个地理区域空间S1内的用户为了保持社交距离而划分的空间单位。地理区域空间S1指的是以功能场所为划分的区域空间。每个地理区域空间S1包括多个社交空间单元S2。单个是地理空间区域S1中的社交空间单元S2是以社交距离作为分界的,由于朋友和陌生人的社交距离不同,一般处于亲密社交距离的人群会共同地使用一张桌子,而陌生人之间常常为了保持社交距离而选定地分割的社交空间单元S2。
具体以餐饮饭店的空间区域为例,将餐饮饭店的空间区域S1网格化形成多个社交空间单元S2,每一个社交空间单元S2投放有一电能补充站20和被配电对象30,电能补充站20和被配电对象30直接或间接与服务器10通信连接,如,与服务器10通信连接。空间单元S2内的用户可以实现触手可及的共享服务。
本发明的共享租电系统100不仅可以根据因地制宜,因时制宜的社交空间单元S2而放置,电能补充站20能够可移动地跟随地理空间区域S1内的社交空间单元S2变化而变化,在不占用大量空间的情况下,提供场景更加灵活多变的使用需求。进一步地,用户可以不通过跑到其他社交空间单元S2或者穿过多个社交空间单元S2走动,在自己的社交空间单元S2内就可以实现使用共享租电系统100,能够提供用户更加舒适愉快的使用体验。
共享租电系统1可以被配置于动车、飞机、候车广场等移动公共交通场所、图书馆、广场、餐饮等商业场所,在此本发明不受到任何限制。
参考说明书附图之图2A,在本发明的较佳实施例中,服务器10可分别通信于至少二个被保持于同一个地理区域空间S1的电能补充站20或被配电对象30。进一步地,电能补充站20可通信于被配电对象30,以使得每个社交区域空间S2的电能补充站20和被配电对象被通信连接于服务器10。优选地,每个社交空间单元S2的电能补充站20和/或被配电对象30设有通信模组,包括蜂窝类和非蜂窝类,例如,2G/3G/4G/5G/WIFI/蓝牙,以使得电能补充站20和/或被配电对象30以有2G/3G/4G/5G/WIFI/蓝牙,甚至蜂窝热点的方式通信于服务器10。
参考说明书附图之图2B,每个社交空间单元S2的电能补充站20设有通信模组,包括蜂窝类和非蜂窝类,例如,2G/3G/4G/5G/WIFI/蓝牙,以使得电能补充站20以有2G/3G/4G/5G/WIFI/蓝牙,甚至蜂窝热点的方式通信于服务器10。电能补充站20可通信和机械连接于被配电对象30。
参考说明书附图之图2C,每个社交空间单元S2的被配电对象30设有通信模组,包括蜂窝类和非蜂窝类,例如,2G/3G/4G/5G/WIFI/蓝牙,以使得被配电对象30以有2G/3G/4G/5G/WIFI/蓝牙,甚至蜂窝热点的方式通信于服务器10。电能补充站20可通信和机械连接于于被配电对象30。
在本发明的其他变形实施例中,参考说明书附图之图3A,每个社交空间单元S2的电能补充站20或者被配电对象30设有通信模组,包括蜂窝类和非蜂窝类,例如,2G/3G/4G/5G/WIFI/蓝牙,被保持于同一个地理区域空间S1的其他社交空间单元S2的电能补充站20或者被配电对象30发送通信相关信息至该社交空间单元S2S2的电能补充站2或者被配电对象30。
服务器10可通信于被保持于一个地理区域空间S1的至少一个电能补充站20或被配电对象30,被保持于同一个地理区域空间S1的其他电能补充站20和被配电对象30藉由被通信连接于服务器10的电能补充站20或者被配电对象30转发信息。
当通信中转的是电能补充站20时,被通信连接于服务器10的电能补充站20是主电能补充站20A。当通信中转的是被配电对象30时,被通信连接于服务器10的被配电对象30是主被配电对象30A。
所述主电能补充站20A可通信于所述服务器10,所述从电能补充站20B以通信于所述主电能补充站20A的方式通信于所述服务器10。
保持于同一个地理区域空间S1的其他电能补充站20或者被配电对象30是从电能补充站20B或者从被配电对象30B。即,至少一个社交空间单元S2的电能补充站20或被配电对象30可通信于服务器10,其他社交空间单元S2的电能补充站20或被配电对象30被通信于该社交空间单元S2的电能补充站20或被配电对象30的方式通信于服务器10。
每个社交空间单元S2的被配电对象30以4G/5G/WIFI/手机热点(私域网)的方式通信于其他被配电对象30。
举例来说,参考说明书附图之图3B,只需要至少一个电能补充站20或者被配电对象30设有4G/5G/WIFI,被保持于同一个地理区域空间S1的其他电能补充站20和被配电对象30发送通信相关信息至被可通信于服务器10的主电能补充站20A,藉由被可通信于服务器10的主电能补充站20A,从电能补充站20B以通信于服务器10。也就是说,被通信于服务器10的电能补充站20是主电能补充站20A,被保持于同一个地理区域空间S1的其他电能补充站20是从电能补充站20B。也就是说,被配电对象30以接触通信的方式通信于对应的电能补充站20。即,被配电对象30通信地连接于被收容供电的电能充电站20,其中收容供电于被配电对象30的从电能充电站20被电路连接于主电能充电站20,以发通信于服务器10。
在其他变形实施例中,从电能补充站20B和主电能补充站20A可通信地连接,其中通信方式可以是4G/5G/WIFI/BT(蓝牙)/手机热点(私域网),甚至LoRa的至少其中一个,本发明在此方面不受限制。
当电能充电站20以4G/5G/WIFI/手机热点的方式通信地连接于服务器10。其他电能充电站20以WIFI/蓝牙/私域网(手机热点)的方式通信地连接于电能补充站20,其他电能充电站20不需要设有4G/5G,并减少通信成本。值得一提的是,在通信方式上本发明不受到任何限制。电能充电站20可以被设计为至少其中一种通讯方式,以实现通信,其通讯的设计可以根据具体需要和成本进行设计。
在其他变形实施例中,从电能补充站20B和主电能补充站20A可通信地连接,其中通信方式可以是4G/5G/WIFI/BT(蓝牙)手机热点(私域网),甚至LoRa的至少其中一个,本发明在此方面不受限制。
优选地,被配电对象30以直接接触通信的方式通信于电能补充站20的方式通信于对应的电能补充站20,以减少通信成本。在其他变形实施例中,被配电对象30以无线通信的方式通信于电能补充站20的方式通信于对应的电能补充站20,其通信方式包括且不限于WIFI/蓝牙/私域网(手机热点)/4G/5G。
在其他变形实施例中,电能补充站20以无线通信连接于被配电对象30,电能补充站20以无线的方式可通信于再同一个地理区域空间S1内的其他被配电对象30。即,被保持于同一个地理区域空间S1的从电能补充站20B和被配电对象30分别通信于主电能补充站20A。
可选地,被配电对象30可通过至少两种通信方式通信。电能补充站20藉由至少一个被配电对象30通信于服务器10。
举例来说,参考说明书附图之图3C,被配电对象30以4G/5G或者WIFI通信地连接于服务器10。其他被配电对象30以WIFI信号通信地连接于被配电对象30,以此减少通信成本。可选地,被配电对象30以4G/5G或者WIFI通信地连接于服务器10。其他被配电对象30以蓝牙信号通信地连接于该被配电对象30。换言之,被通信于服务器10的被配电对象30为主被配电对象30,而被保持于同一个地理区域空间S1的其他被配电对象30通过主被配电对象30通信连接于服务器10而成为从被配电对象30B,其中,从被配电对象30B的通信方式相对于主被配电对象30A限制更少。在通信方式上本发明不受到任何限制。电能补充站20以直接接触的方式通信于被配电对象30。
可选地,电能补充站20以无线通信于被其供电的被配电对象30的方式获取通信相关信息或者发送通信相关信息。电能补充站20以通信协议通信于被配电对象30,其中被配电对象30中的从被配电对象30发送至主被配电对象30B。藉由主被配电对象30B,以发送电能补充站20的通信相关信息至服务器10。
参考说明书附图之图1A,在本发明的较佳实施例中,共享租电系统进一步地包括至少一用户终端40。用户终端40可通信地连接于服务器10,以通信至少一通信相关信息。
优选地,共享租电系统1进一步地包括至少一服务终端50,服务终端50可通信地连接于服务器10,以通信至少 一通信相关信息。
参考说明书附图之图4A和图4B,用户终端40或者电能充电站20发送至少一用户请求101至服务器10,服务器10接收到用户终端40或者电能充电站20发送的用户请求101后生成至少一指令102。
优选地,电能补充站20接收到服务器10发送的指令102。更优选地,电能补充站20接收到服务器10发送的指令102并且发送至少一共享终端反馈103。
可选地,被配电对象30接收到服务器10发送的指令102后发送给电能补充站20。更优选地,被配电对象30接收到服务器10发送的指令102,被配电对象30中转指令102至电能补充站20,并且被配电对象30中转电能补充站20发送的至少一共享终端反馈103至服务器10。
所述服务器10接收到至少一归还相关信息后,服务器10发送一归还许可指令于所述电能补充站20或者被置于所述电能补充站20的所述被配电对象30,以接收待归还的所述被配电对象30。
优选地,当用户藉由用户终端40或者电能充电站20发送至服务器10一用电请求1011时,服务器10根据用电请求1011生成一用电释放指令1021,服务器10发送用电释放指令1021至电能补充站20或者被配电对象30。
用电请求1011包括被配电对象30的设备标识符1001和用户的用户标识符1002,用电请求1011还可以包括其他相关信息,在此本发明不受任何限制。
参考说明书附图之图4A和图4B,服务器10接收到携带有电能补充站20或者被配电对象30的至少一设备标识符1001和用户的用户标识符1002的一配电相关请求1011。服务器10生成一释放配电指令1021,被配电对象30和/或电能充电站20接收到服务器10发送的释放配电指令1021后,控制执行端执行释放配电指令1021。
举例来说,参考说明书附图之图4C,用户通过用户终端40扫描电能补充站20的二维码图像信息以获得电能补充站20的第一设备标识符1001A,由于用户终端40被用户授权了用户的用户标识符1002,用户通过用户终端40的用户请求101可携带有电能补充站20的第一设备标识符1001A和用户的用户标识符1002。
用户终端40发送携带有电能补充站20或者被配电对象30的至少一设备标识符1001和用户的用户标识符1002的一配电相关请求1011至服务器10,服务器10接收到用户终端40发送的配电相关请求1011后生成一释放配电指令1021,电能补充站20接收到服务器10发送的释放配电指令1021后,控制执行端执行释放配电指令1021,以使得被配电对象30可被用户使用。
用户请求101被实施为一用电请求1011,且用电请求1011携带电能补充站20的第一设备标识符1001A和用户的用户标识符1002。
在其他实施例中,参考说明书附图之图4D,电能补充站20主动获取用户的特征信息,以获得用户的用户标识符1002。电能补充站20在用户的授权下发送携带有电能补充站20的第一设备标识符1001A和用户的用户标识符1002。
电能补充站20以主动获取的方式获取用户的特征信息,如人脸识别、指纹识别、语音识别、扫描二维码等探测方式,也可以采用账户密码的方式获取用户的特征信息或者接收到被授权的用户终端40的授权信息。电能补充站20在用户的授权下发送携带有电能补充站20的第一设备标识符1001A和用户的用户标识符1002。
电能补充站20发送携带有电能补充站20的至少一设备标识符1001和用户的用户标识符1002的一配电相关请求1011至服务器10,服务器10接收到用户终端40发送的配电相关请求1011后生成一释放配电指令1021,电能补充站20接收到服务器10发送的释放配电指令1021后执行释放配电指令1021,以使得被配电对象30可被用户使用,以得到一配电相关信息。
具体地,如上述所记载,被配电对象30机械连接于电能补充站20,电能补充站20内配置有控制器和执行端,控制器接收到释放配电指令1021后,控制执行端执行释放配电指令,以释放被配电对象30。
更具体地,执行端为由电机或电磁阀所驱动的执行机构,被配电对象30机械连接于电能补充站20时,被配电对象30由执行机构作用处于锁定状态,控制器接收到释放配电指令1021后,控制执行机构作用,与被配电对象30分离,以释放被配电对象30。举例来说,参考说明书附图之图4E,用户通过用户终端40扫描被配电对象30的二维码图像信息以获得电能补充站20的第二设备标识符1001B。
被配电对象30接收到电能补充站20发送的携带有电能补充站20或者被配电对象30的至少一设备标识符1001和用户的用户标识符1002的一配电相关请求1011,被配电对象30发送至服务器10。服务器10生成一释放配电指令1021,被配电对象30接收到服务器10发送的释放配电指令1021后执行释放配电指令1021,以使得被配电对象30可被用户使用。可选地,电能补充站20发送结束对应被配电对象30的配电任务并且携带有被配电对象30的第二设备标识符1001B的任务结束反馈1031至被配电对象30,被配电对象30中转任务结束反馈1031至服务器10,以使得服务器10接收到结束对应被配电对象30配电任务的并且携带有被配电对象30的第二设备标识符1001B的共享终端反馈103后处理生成至少一任务进行中信息。
参考说明书附图之图4F,和说明书附图之图4C所示的实施例不同的是,用户通过用户终端40通信连接于电能补充站20以获得电能补充站20的第一设备标识符1001A。
在本较佳实施例中,参考说明书附图之图4G,在用户结束订单任务时,服务器10生成一待支付账单104。用户藉由用户终端40发送至少一支付授权信息106至服务器10以支付待支付账单104。服务器10生成一订单任务信息107。值得一提的是,用户终端40始终可以通信地连接于服务器10以查看中间状态信息的订单任务信息107。订单任务信息107包括且不限于任务进行中信息、待支付账单104以及完成任务后的订单任务。
值得一提的是,参考说明书附图之图4H,在用户结束订单任务时,服务器10生成一待支付账单104。用户藉由电能补充站20发送至少一支付授权信息106至服务器10以支付待支付账单104。服务器10生成一订单任务信息107。值得一提的是,电能补充站20始终可以通信地连接于服务器10以查看中间状态信息的订单任务信息107。订单任务信息107包括且不限于任务进行中信息、待支付账单104以及完成任务后的订单任务。
用户可以和电能补充站20交互,其交互方式不受任何限制,交互方式包括且不限于触屏、语音、摄像、按键。参考说明书附图之图4H,用户通过电能补充站20的探测模块获取用户特征信息,且其显示屏显示的方式交互。
参考说明书附图之图5A和图6A,每个社交空间单元S2的信息中转站可以被直接通信连接于服务器10。每个社交空间单元S2的信息中转站可以相互地通信,以其中一个主要信息中转站为中转的方式通信于服务器10。电能充电站20可以被实施为同一个社交空间单元S2中的通信中转站。可选地,被配电对象30可以被实施为同一个社交空间单元S2中的通信中转站。
进一步地,参考说明书附图之图7A和图7B,电能充电站20可以被实施为同一个地理区域空间S1的通信中转站。被配电对象30可以被实施为同一个地理区域空间S1的通信中转站。
在另一个变形实施例中,电能补充站20和/或被配电对象30都可以作为社交空间单元S2或者地理区域空间S1的信息中转站,每个社交空间单元S2的信息中转站可根据情况实时地被选定,在此本发明不受到任何限制。也就说,根据信号的强弱,不同社交空间单元S2的电能补充站20和被配电对象30可以被选定地作为社交空间单元S2的信息中转站。
电能补充站20将满足被释放条件的被配电对象30的其中一个释放。满足被释放条件的被配电对象30被实施为电量大于最低配电阈值并且可通信于电能补充站20的被配电对象30。值得一提的是,满足被释放条件可以根据具体的条件设计进行,在此,被释放条件可以被实施为其他条件,本发明不受到任何限制。
值得一提的是,被释放条件的被配电对象30的最低配电阈值可以是30%。优选地,被释放条件的被配电对象30的最低配电阈值是40%。更优选地,被释放条件的被配电对象30的最低配电阈值是50%。更佳地,被释放条件的被配电对象30的最低配电阈值是60%。本领域技术人员应当可以理解并知晓,被释放条件的被配电对象30的最低配电阈值还可以是70%、75%、80%、85%、90%,在此本发明不受到任何限制。
可选地,被配电对象30满足的被释放条件是在被配电对象30中的电量相对较高的被配电对象30被释放。
进一步地,被租用结束的被配电对象30可以被置于就近的电能补充站20,当被配电对象30被电能补充站20接触通信时,电能补充站20发送结束对应被配电对象30的任务结束反馈1031,并且任务结束反馈1031携带有被配电对象30的设备标识符1001,以使得服务器10接收到电能补充站20和/或被配电对象30携带有被配电对象30的设备标识符1001的任务结束反馈1031后处理生成待支付账单104。
用户通过用户终端40获取到待支付账单104包括且不限于具体合同信息以及付费许可合同。用户授权以支付待支付账单104对应的费用。用户授权支付的账单完成信息106至服务器10,以使得服务器10根据账单完成信息106更新的根据移动配电装置和/或者被配电对象30的电能相关信息105。
值得一提的是,服务器10通信地连接于被配电对象30或者电能补充站20,以实时地获取移动配电装置和/或者被配电对象30的电能相关信息105,并得到一管理策略。
参考说明书附图之图1C,在较佳实施例的变形实施例中,被配电对象30接收到服务器10发送的指令102。更优选地,被配电对象30接收到服务器10发送的指令102并且发送至少一共享终端反馈103。
用户终端40发送携带有电能补充站20或者被配电对象30的至少一设备标识符1001和用户的用户标识符1002的用户请求101至服务器10,服务器10接收到用户终端40发送的配电相关请求后生成至少一指令102,被配电对象30接收到服务器10发送的指令102,被配电对象30发送指令102于电能补充站20,以使得电能补充站20被控制地执行指令102。
优选地,移动配电装置21通过被收容于其中的被配电对象30发送通信的相关信息。移动配电装置21通过被收容其中的被配电对象30可以是多个,本发明不受到任何限制。
参考说明书附图之图4A和图4B,共享租电系统1的服务器10根据共享终端反馈103生成至少一服务信息108,服务信息108被发送至服务终端50。服务信息108包括且不限于需要充电的服务提醒信息、下单信息、广告反馈信息、打分信息、用户支付菜单信息以及其他通信信息,在此本申请不受到限制。
参考说明书附图之图4A和图4B,服务信息108是一配电服务提醒,配电服务提醒可以被发送至服务终端50。配电服务提醒包括且不限于电能补充站20的电量低于补充最低阈值和/或设备故障,以提醒服务人员提供服务。
服务终端50可实时地发送至少一商家反馈109至服务器10。举例来说,电能补充站20和/或被配电对象30损坏,服务终端50可发送一维修反馈至服务器10,以供服务器10可自第三方获取信息。
优选地,共享租电系统1进一步地包括至少一服务终端50,服务终端50接收到服务器10的至少一配电服务提醒108。配电服务提醒108被显示或者语音的方式提醒服务人员对电能补充站20提供蓄电维护服务。
具体地,当被配电对象30和/或电能补充站20的电量低于预设的阈值时,被配电对象30或电能补充站20发送一信号至服务器,服务器发送配电服务提醒108至服务终端50,例如商家终端,该商家终端可以为商家手机终端或者商家PC终端,以短信或者语音的方式提醒服务人员对电能补充站20提供蓄电维护服务。进一步地,配电服务提醒108被服务器10发送至服务终端50,配电服务提醒108藉由用户解决服务需求,在此本发明不受到任何限制。
更优选地,电能补充站20或者被配电对象30实时地发送一共享终端反馈103至服务器10。服务器10根据移动配电装置和/或者被配电对象30的电能相关信息105得到一电能管理库,其中,共享终端反馈103可以包括至少一电能补充站20和/被配电对象30的异常警告、电能补充站20和/被配电对象30的电能相关信息。
在本发明的较佳实施例中,共享租电系统1的电能补充站20的实施方式不同而成为新的实施例,其中电能补充站20可以被实施为至少一移动配电装置21。
在一些实施例中,共享租电系统1管理至少一移动配电装置21,其中移动配电装置21执行被配电对象30配电。可选地,共享租电系统1可通信于至少一移动配电装置21,其中,藉由移动配电装置21被通信地获取释放至少一被配电对象30的指令,被配电对象被被移动配电装置21释放。在一些实施例中,共享租电系统1可实时地获取被收容于被配电对象的电能相关信息和移动配电装置21的电能相关信息。
在一些实施例中,被配电对象被可插拔地收容于移动配电装置21,被配电对象30的数量是2个以上,被配电对象和移动配电装置21被一体地组装。
参考说明书附图之图8A和图8B,本发明的另一个较佳实施例中,和参考说明书附图之图1A所示的较佳实施例不同的是,电能补充站20包括至少一移动配电装置21和至少一持电装置22。移动配电装置21可被收容供电于持电装置22,持电装置22长时间带电,当移动配电装置21的电量消耗完时,移动配电装置21被移动至持电装置22以被充电。每个移动配电装置21和被收容于其中的被配电对象30构成一共享终端200。也就是说,同一个地理区域空间S1包括多个共享终端200。每个共享终端200可通信地连接于服务器10。
值得一提的是,每个社交空间单元S2的信息中转站可以被直接通信连接于持电装置22。每个社交空间单元S2的信息中转站可以相互地通信,以其中一个主要信息中转站为中转的方式通信于服务器10。持电装置22可以被实施为同一个社交空间单元S2中的通信中转站。可选地,被配电对象30可以被实施为同一个社交空间单元S2中的通信中转站。持电装置22是地理区域空间S1的通信中转站,以通信地连接于服务器10和共享终端200。
进一步地,持电装置22可收容供电至少二个移动配电装置21。移动配电装置21被自由地拿取于持电装置22。可选地,移动配电装置21被锁位地置于持电装置22,当共享配电系统100下达解锁移动配电装置21或者通过人工开锁的方式打开锁扣时,移动配电装置21才能够从持电装置22脱离,在此本发明不受任何限制。此外,持电装置22收容移动配电装置21的数量不受任何限制,可根据具体需要进行设计,并且每个移动配电装置21被持电装置22独立地供电,优选地,2个移动配电装置21之间不相互影响。
值得一提的是,移动配电装置21的数量不受任何限制。移动配电装置21被远离持电装置22的方式保持于社交空间单元S2,移动配电装置21被保持于每个社交空间单元S2的方式服务于用户。当移动配电装置21没电时可被移动至持电装置22以被供电。
被配电对象30被收容供电于移动配电装置21。进一步地,被配电对象30被移动配电装置21收容供电的方式随着移动配电装置21移动,以使得用户不需要找到持电装置22就可以在最邻近的移动配电装置21租电。
参考说明书附图之图8B,每个移动配电装置21和对应的持电装置22被通信地连接,在本实施例中,移动配电装置21通过持电装置22发送通信的相关信息。
每个社交空间单元S2的被配电对象30设有通信模组,例如:4G/5G/WIFI/BT,以使得被配电对象30以有4G/5G/WIFI/BT/热点的方式通信于服务器10。电能补充站20可通信于被配电对象30。
每个社交空间单元S2的共享终端200设有通信模组,例如:4G/5G/WIFI,以使得共享终端200以有4G/5G/WIFI/热点的方式通信于持电装置22,持电装置22设有通信模组,例如:4G/5G/WIFI。
可选地,参考说明书附图之图8C,在其他变形实施例中,移动配电装置21的多个通信于持电装置22时,移动配电装置21通过其中至少一个移动配电装置21和持电装置22通信。即,至少一个移动配电装置21设有短距离通信模组和长距离通信模组,其他处于同一个地理区域空间S1内的移动配电装置21可以仅设有短距离通信模组。以使得移动配电装置21可通信地连接于持电装置22,持电装置22设有设有4G/5G和/或者WIFI模组或者设有光纤连接端口(即可有线连接于广域网),其他移动配电装置21设有蓝牙模组或者其他短距离通信模组,以使得其他移动配电装置21藉由设有设有4G/5G或者WIFI模组的移动配电装置21通信地连接于持电装置22。藉由整个配电组网的至少一个移动配电装置21通信于持电装置22、外部设备或者服务器10。
可选地,每个社交空间单元S2的共享终端200设有4G/5G/WIFI,被保持于同一个地理区域空间S1的其他社交空间单元S2的共享终端200发送通信相关信息至被可通信于服务器10的主移动配电装置21A,主移动配电装置21A被通信于持电装置22。即,每个社交空间单元S2的移动配电装置21或者被配电对象30设有4G/5G/WIFI的至少一个,被保持于同一 个地理区域空间S1的其他社交空间单元S2的移动配电装置21或者被配电对象30发送通信相关信息至该社交空间单元S2S2的持电装置22。
进一步地,持电装置22可通信于被保持于一个地理区域空间S1的至少一个移动配电装置21或被配电对象30,被保持于同一个地理区域空间S1的其他移动配电装置21和被配电对象30藉由被通信连接于服务器10的移动配电装置21或者被配电对象30转发信息。进一步地,当移动配电装置21被通信于持电装置22时,被通信连接于持电装置22的移动配电装置21是主移动配电装置21A。当持电装置22通信于被配电对象30时,被通信连接于持电装置22的被配电对象30是主被配电对象30A,保持于同一个地理区域空间S1的其他移动配电装置21或者被配电对象30是从移动配电装置21B或者从被配电对象30B。即,至少一个社交空间单元S2的移动配电装置21或被配电对象30可通信于持电装置22,持电装置22中转信息至服务器10,其他社交空间单元S2的移动配电装置21或被配电对象30被通信于该社交空间单元S2的移动配电装置21或被配电对象30的方式通信于持电装置22。
每个社交空间单元S2的被配电对象30以4G/5G/WIFI/手机热点(私域网)的方式通信于其他被配电对象30。
举例来说,参考说明书附图之图8C,只需要至少一个移动配电装置21或者被配电对象30设有通信模组,例如,4G/5G/WIFI,被保持于同一个地理区域空间S1的其他移动配电装置21和被配电对象30发送通信相关信息至主移动配电装置21A,藉由主移动配电装置21A被可通信于持电装置22,从移动配电装置21B以通信于服务器10。也就是说,被通信于持电装置22的移动配电装置21是主移动配电装置21A,被保持于同一个地理区域空间S1的其他移动配电装置21是从移动配电装置21B。也就是说,被配电对象30以接触通信的方式通信于对应的移动配电装置21。即,被配电对象30通信地连接于被收容供电的电能充电站20,其中收容供电被配电对象30的从电能充电站20B被电路连接于主电能充电站20A,以发送通信相关信息至服务器10。
在其他变形实施例中,从移动配电装置21B和主移动配电装置21A可通信地连接,其中通信方式可以是4G/5G/WIFI/BT(蓝牙)/手机热点(私域网)的至少其中一个,本发明在此方面不受任何限制。
当移动配电装置21以4G/5G/WIFI/手机热点的方式通信地连接于持电装置22。其他移动配电装置21以WIFI/蓝牙/私域网(手机热点)的方式通信地连接于持电装置22,其他移动配电装置21不需要设有4G/5G,并减少通信成本。值得一提的是,在通信方式上本发明不受到任何限制。电能充电站20可以被设计为至少其中一种通讯方式,以实现通信,其通讯的设计可以根据具体需要和成本进行设计。
在其他变形实施例中,从移动配电装置21B和主移动配电装置21A可通信地连接,其中通信方式可以是4G/5G/WIFI/BT(蓝牙)手机热点(私域网)的至少其中一个,本发明在此方面不受任何限制。
优选地,被配电对象30以直接接触通信的方式通信于移动配电装置21的方式通信于对应的移动配电装置21,以减少通信成本。在其他变形实施例中,被配电对象30以无线通信的方式通信于移动配电装置21的方式通信于对应的移动配电装置21,其通信方式包括且不限于WIFI/蓝牙/私域网(手机热点)/4G/5G。
在其他变形实施例中,移动配电装置21以无线通信连接于被配电对象30,移动配电装置21以无线的方式可通信于再同一个地理区域空间S1内的其他被配电对象30。即,被保持于同一个地理区域空间S1的从移动配电装置21B和被配电对象30分别通信于主移动配电装置21A。
可选地,被配电对象30可通过至少两种通信方式通信。移动配电装置21藉由至少一个被配电对象30通信于持电装置22。藉由持电装置22通信于服务器10。
举例来说,参考说明书附图之图8D,被配电对象30以通信模组,例如,4G/5G或者WIFI通信地连接于持电装置22,持电装置22中转通信相关信息至服务器10。其他被配电对象30以WIFI信号通信地连接于被配电对象30,以此减少通信成本。可选地,被配电对象30以4G/5G或者WIFI通信地连接于持电装置22。其他被配电对象30以蓝牙信号通信地连接于该被配电对象30。换言之,被通信于持电装置22的被配电对象30为主被配电对象30A,而被保持于同一个地理区域空间S1的其他被配电对象30通过主被配电对象30A通信连接于服务器10而成为从被配电对象30B,其中,从被配电对象30B的通信方式相对于主被配电对象30A限制更少。在通信方式上本发明不受到任何限制。移动配电装置21以直接接触的方式通信于被配电对象30。
更可选地,移动配电装置21以无线通信于被其供电的被配电对象30的方式获取通信相关信息或者发送通信相关信息。移动配电装置21以通信协议通信于被配电对象30,其中被配电对象30中的从被配电对象30发送至主被配电对象30B。藉由主被配电对象30B,以发送移动配电装置21的通信相关信息至持电装置22,持电装置22被通信于服务器10。
参考说明书附图之图8E,被保持于同一地理区域空间S1的2个持电装置22可通信地连接,以使得同一个地理区域空间S1的主移动配电装置21A可通信于任一持电装置22。
参考说明书附图之图8F,被保持于同一地理区域空间S1的2个持电装置22可通信地连接,以使得同一个地理区域空间S1的移动配电装置21可通信于任一持电装置22。
优选地,持电装置22提供至少一局域网,当移动配电装置21使用持电装置22提供的局域网时,根据移动配电装置21检测的持电装置22的信号以发送通信相关信息至持电装置22。进一步地,移动配电装置21壳根据任一持电装置22的信号强弱自动地更换局域网,以发送通信相关信息。
参考说明书附图之图8G,至少二个持电装置22被保持于同一地理区域空间S1。持电装置22包括一主持电装置 22A和一从持电装置22B,主持电装置22A和从持电装置22B可通信地连接,以使得同一个地理区域空间S1的共享终端200可通信于主持电装置22A和/或从持电装置22B。
在共享终端200无法通信于主持电装置22A或者距离从持电装置22B更近的所述共享终端200,共享终端200的被配电对象30或者移动配电装置21可优先地通信于从持电装置22B。可选地,共享终端200的被配电对象30或者移动配电装置21可直接通信于服务器10,优先的情况包括共享终端200的被配电对象30或者移动配电装置21不可通信连接于任一持电装置22。
在一个方面,共享终端200包括多个移动配电装置21和多个被配电对象30。移动配电装置21包括至少一主移动配电装置21A和至少一从移动配电装置21B,包括主移动配电装置21A的共享终端200是主共享终端200A,主共享终端200A可通信于主持电装置22A和/或从持电装置22B。也就是说,主移动配电装置21A可通信于主持电装置22A和/或从持电装置22B。
优选地,在主共享终端200A无法通信于主持电装置22A或者距离从持电装置22B更近的所述共享终端200,主共享终端200A的主移动配电装置21A可优先地通信于从持电装置22B。可选地,主共享终端200A的主移动配电装置21A可直接通信于服务器10,优先的情况包括主共享终端200A的主移动配电装置21A不可通信连接于任一持电装置22。
在另一个方面,共享终端200包括多个移动配电装置21和多个被配电对象30。被配电对象30包括至少一主被配电对象30A和至少一从被配电对象30B,包括主被配电对象30A的共享终端200是主共享终端200A,主共享终端200A可通信于主持电装置22A和/或从持电装置22B。也就是说,主被配电对象30A可通信于主持电装置22A和/或从持电装置22B。
优选地,在主共享终端200A无法通信于主持电装置22A或者距离从持电装置22B更近的所述共享终端200,主共享终端200A的主被配电对象30A可优先地通信于从持电装置22B。可选地,主共享终端200A的主被配电对象30A可直接通信于服务器10,优先的情况包括主共享终端200A的主被配电对象30A不可通信连接于任一持电装置22。
可选地,共享终端200的被配电对象30或者移动配电装置21可直接通信于服务器10,优先的情况包括共享终端200的被配电对象30或者移动配电装置21不可通信连接于任一持电装置22。
参考说明书附图之图8H,至少二个持电装置22被保持于同一地理区域空间S1。持电装置22包括一主持电装置22A和一从持电装置22B,主持电装置22A和从持电装置22B可通信地连接,以使得同一个地理区域空间S1的每个共享终端200可通信于主持电装置22A和/或从持电装置22B。在共享终端200无法通信于主持电装置22A或者距离从持电装置22B更近的所述共享终端200,共享终端200的被配电对象30或者移动配电装置21可优先地通信于从持电装置22B。
在共享终端200无法通信于主持电装置22A或者距离从持电装置22B更近的所述共享终端200,共享终端200的被配电对象30或者移动配电装置21可优先地通信于从持电装置22B。
可选地,共享终端200的被配电对象30或者移动配电装置21可直接通信于服务器10,优先的情况包括共享终端200的被配电对象30或者移动配电装置21不可通信连接于任一持电装置22。
参考说明书附图之图9A,在本发明的较佳实施例中,共享租电系统进一步地包括至少一用户终端40。用户终端40可通信地连接于服务器10,以通信至少一通信相关信息。
优选地,共享租电系统1进一步地包括至少一服务终端50,服务终端50可通信地连接于服务器10,以通信至少一通信相关信息。
参考说明书附图之图9A和图9B,用户终端40或者电能充电站20发送至少一用户请求101至服务器10,服务器10接收到用户终端40或者电能充电站20发送的用户请求101后生成至少一指令102。
优选地,移动配电装置21可以接收到服务器10发送的指令102。更优选地,移动配电装置21可以接收到服务器10发送的指令102并且发送至少一共享终端反馈103。
可选地,被配电对象30接收到服务器10发送的指令102后发送给移动配电装置21。更优选地,被配电对象30接收到服务器10发送的指令102至移动配电装置21,移动配电装置21发送至少一共享终端反馈103至少持电装置22,经过持电装置22打包发送共享终端反馈103至服务器10。
优选地,当用户藉由用户终端40或者电能充电站20发送至服务器10一用电请求1011时,服务器10根据用电请求1011生成一用电释放指令1021,服务器10发送用电释放指令1021至移动配电装置21或者被配电对象30。
用电请求1011包括被配电对象30的设备标识符1001和用户的用户标识符1002,用电请求1011还可以包括其他相关信息,在此本发明不受任何限制。
参考说明书附图之图9A和图9B,服务器10接收到携带有持电装置22、移动配电装置21或者被配电对象30的至少一设备标识符1001和用户的用户标识符1002的一配电相关请求1011。服务器10生成一释放配电指令1021,共享终端200接收到服务器10发送的释放配电指令1021后执行释放配电指令1021,以使得被配电对象30可被用户使用。即持电装置22接收到服务器10发送的释放配电指令1021后发送至被配电对象30和/或移动配电装置21,进而被配电对象30和/或移动配电装置21执行释放配电指令1021。
可选地,用户可以通过用户终端40扫描持电装置22的二维码图像信息以获得持电装置22的设备标识符1001。由 于用户终端40被用户授权了用户的用户标识符1002,用户通过用户终端40的是用户请求101可携带有移动配电装置21的第一设备标识符1001A和用户的用户标识符1002。即,在其他变形实施例中,用户可以通过持电装置22租用被配电对象30,持电装置22可被用户直接租用其收容供电的被配电对象30或者被收容供电的移动配电装置21中的被配电对象30。
可选地,参考说明书附图之图12A用户通过用户终端40扫描移动配电装置21的二维码图像信息以获得移动配电装置21的第一设备标识符1001A,由于用户终端40被用户授权了用户的用户标识符1002,用户通过用户终端40的是用户请求101可携带有移动配电装置21的第一设备标识符1001A和用户的用户标识符1002。
用户终端40发送携带有持电装置22、移动配电装置21或者被配电对象30的至少一设备标识符1001和用户的用户标识符1002的一配电相关请求1011至服务器10,服务器10接收到用户终端40发送的配电相关请求1011后生成一释放配电指令1021,持电装置22接收到服务器10发送的释放配电指令1021后,持电装置22发送至移动配电装置21,以使得移动配电装置21执行释放配电指令1021,以使得被配电对象30可被用户使用。
用户请求101被实施为一用电请求1011,且用电请求1011携带移动配电装置21的第一设备标识符1001A和用户的用户标识符1002。
在其他实施例中,参考说明书附图之图12B,移动配电装置21主动获取用户的特征信息,以获得用户的用户标识符1002。移动配电装置21在用户的授权下发送携带有移动配电装置21的第一设备标识符1001A和用户的用户标识符1002。
移动配电装置21以主动获取的方式获取用户的特征信息,如人脸识别、指纹识别、语音识别、扫描二维码等探测方式,也可以采用账户密码的方式获取用户的特征信息或者接收到被授权的用户终端40的授权信息。移动配电装置21在用户的授权下发送携带有移动配电装置21的第一设备标识符1001A和用户的用户标识符1002。
移动配电装置21发送携带有移动配电装置21的至少一设备标识符1001和用户的用户标识符1002的一配电相关请求1011至持电装置22,持电装置22发送至服务器10,服务器10接收到移动配电装置21发送的配电相关请求1011后生成一释放配电指令1021,移动配电装置21经过持电装置22的中转,以接收到服务器10发送的释放配电指令1021后执行释放配电指令1021,以使得被配电对象30可被用户使用。
可选地,用户通过用户终端40扫描被配电对象30的二维码图像信息以获得移动配电装置21的第二设备标识符1001B。
参考说明书附图之图12C,被配电对象30接收到移动配电装置21发送的携带有移动配电装置21或者被配电对象30的至少一设备标识符1001和用户的用户标识符1002的一配电相关请求1011,被配电对象30发送至持电装置22。藉由持电装置22的中转发送配电相关请求1011至服务器10。服务器10生成一释放配电指令1021,持电装置22接收到服务器10发送的释放配电指令1021后发送至被配电对象30,被配电对象30执行释放配电指令1021,以使得被配电对象30可被用户使用。
可选地,移动配电装置21发送结束对应被配电对象30的配电任务并且携带有被配电对象30的第二设备标识符1001B的任务结束反馈1031至被配电对象30,被配电对象30中转任务结束反馈1031至服务器10,以使得服务器10接收到结束对应被配电对象30配电任务的并且携带有被配电对象30的第二设备标识符1001B的共享终端反馈103后处理生成至少一任务进行中信息。
参考说明书附图之图12D,和说明书附图之图12A所示的实施例不同的是,用户通过用户终端40通信连接于移动配电装置21以获得移动配电装置21的第一设备标识符1001A。
在本较佳实施例中,参考说明书附图之图9A和图10A,在用户结束订单任务时,服务器10生成一待支付账单104。用户藉由用户终端40发送至少一支付授权信息106至服务器10以支付待支付账单104。服务器10生成一订单任务信息107。值得一提的是,用户终端40始终可以通信地连接于服务器10以查看中间状态信息的订单任务信息107。订单任务信息107包括且不限于任务进行中信息、待支付账单104以及完成任务后的订单任务。
值得一提的是,参考说明书附图之图9A和10B,在用户结束订单任务时,服务器10生成一待支付账单104。用户藉由移动配电装置21发送至少一支付授权信息106至持电装置22,持电装置22发送支付授权信息106至服务器10,以完成支付待支付账单104。服务器10生成一订单任务信息107。值得一提的是,持电装置22始终可以通信地连接于服务器10以发送至移动配电装置22,以用户藉由共享终端200查看中间状态信息的订单任务信息107。订单任务信息107包括且不限于任务进行中信息、待支付账单104以及完成任务后的订单任务。
用户可以和移动配电装置21交互,其交互方式不受限制,交互方式包括且不限于触屏、语音、摄像、按键。优选地,用户通过移动配电装置21的探测模块获取用户特征信息,且其显示屏显示的方式交互。
进一步地,参考说明书附图之图9A至图10B,持电装置22可以被实施为同一个地理区域空间S1的通信中转站。被配电对象30可以被实施为同一个地理区域空间S1的通信中转站。
在另一个变形实施例中,至少2个持电装置22可以被作为地理区域空间S1的信息中转站,每个社交空间单元S2的信息中转站可根据情况实时地被选定,在此本发明不受到任何限制。也就说,根据信号的强弱,不同社交空间单元S2的共享终端200可以被选定地通信于其中一个持电装置22,以使得持电装置22作为社交空间单元S2的信息中转站。
移动配电装置21将满足被释放条件的被配电对象30的其中一个释放。满足被释放条件的被配电对象30被实施为 电量大于最低配电阈值并且可通信于移动配电装置21的被配电对象30。值得一提的是,满足被释放条件可以根据具体的条件设计进行。此外,被释放条件可以被实施为其他条件,本发明不受到任何限制。
值得一提的是,被释放条件的被配电对象30的最低配电阈值可以是30%。优选地,被释放条件的被配电对象30的最低配电阈值是40%。更优选地,被释放条件的被配电对象30的最低配电阈值是50%。更佳地,被释放条件的被配电对象30的最低配电阈值是60%。本领域技术人员应当可以理解并知晓,被释放条件的被配电对象30的最低配电阈值还可以是70%、75%、80%、85%、90%,在此本发明不受到限制。
可选地,被配电对象30满足的被释放条件是在被配电对象30中的电量相对较高的被配电对象30被释放。
进一步地,被租用结束的被配电对象30可以被置于就近的移动配电装置21,当被配电对象30被移动配电装置21接触通信时,移动配电装置21发送结束对应被配电对象30的任务结束反馈1031,并且任务结束反馈1031携带有被配电对象30的设备标识符1001,以使得服务器10接收到被持电装置22中转的共享终端200携带有被配电对象30的设备标识符1001的任务结束反馈1031后处理生成待支付账单104。
用户通过用户终端40获取到待支付账单104包括且不限于具体合同信息以及付费许可合同。用户授权以支付待支付账单104对应的费用。用户授权支付的账单完成信息106至服务器10,以使得服务器10根据账单完成信息106更新的根据移动配电装置21和/或者被配电对象30的电能相关信息105。
值得一提的是,服务器10通信地连接于持电装置22,以实时地获取移动配电装置21和/或者被配电对象30的电能相关信息105,并得到一管理策略。
参考说明书附图之图9A,在较佳实施例的变形实施例中,被配电对象30接收到持电装置22转发的指令102。更优选地,被配电对象30接收到服务器10发送的指令102并且发送至少一共享终端反馈103。
用户终端40发送携带有电能补充站20或者被配电对象30的至少一设备标识符1001和用户的用户标识符1002的用户请求101至服务器10,服务器10接收到用户终端40发送的配电相关请求后生成至少一指令102,被配电对象30接收到被持电装置22中转的服务器10发送的指令102,被配电对象30发送指令102于移动配电装置21,以使得电能补充站20被控制地执行指令102。
优选地,移动配电装置21通过被收容于其中的被配电对象30发送通信的相关信息。移动配电装置21通过被收容其中的被配电对象30可以是多个,本发明不受到任何限制。
参考说明书附图之图9A和图9B,共享租电系统1的服务器10根据共享终端反馈103生成至少一服务信息108,服务信息108可以被发送至电能补充站20。服务信息108包括且不限于需要充电的服务提醒信息、下单信息、广告反馈信息、打分信息、用户支付菜单信息以及其他通信信息,在此本发明不受到任何限制。
参考说明书附图之图9A和图9B,服务信息108是一配电服务提醒,配电服务提醒可以被发送至服务终端50。配电服务提醒包括且不限于电能补充站20的电量低于补充最低阈值和/或设备故障,以提醒服务人员提供服务。
值得注意的,服务终端50,例如商家终端,可实时地发送至少一商家反馈109至服务器10。举例说,共享终端200损坏,服务终端50可发送一维修反馈至服务器10,以供服务器10可自第三方获取信息。
优选地,共享租电系统1进一步地包括至少一服务终端50,服务终端50接收到服务器10的至少一配电服务提醒108。配电服务提醒108被显示或者语音的方式提醒服务人员对电能补充站20提供蓄电维护服务。
进一步地,配电服务提醒108被服务器10发送至用户终端50,配电服务提醒108藉由用户解决服务需求,在此本发明不受到任何限制。
更优选地,电能补充站20或者被配电对象30实时地发送一共享终端反馈103至服务器10。服务器10根据移动配电装置和/或者被配电对象30的电能相关信息105得到一电能管理库,其中,共享终端反馈103可以包括至少一电能补充站20和/被配电对象30的异常警告、电能补充站20和/被配电对象30的电能相关信息。
参考说明书附图之图13A,本发明的另一个较佳实施例中,和参考说明书附图之图1A所示的较佳实施例不同的是,共享租电系统1的共享终端200的实施方式不同而成为新的实施例,其中电能补充站20被实施为至少一移动配电装置21。
举例来说,在一餐厅作为一地理区域空间S1的应用场景时,共享租电系统1的至少三个移动配电装置21被放置于该餐厅的座位或者桌面中,每个餐厅的每个被配置有至少一个移动配电装置21,在用餐的用户不需要左右移动,寻找就可以在餐桌位置上实时地租用被配电对象30。
进一步地,移动配电装置21包括至少一移动配电部210并且具有一移动收容腔2100、至少一被配电腔2101以及导通被配电腔2101和外部空间的一释放开口2102,移动配电腔2100和移动收容腔2101被间隔地保持,移动配电部210可通信地连接于其他设备,移动配电部210被容置于移动配电腔2100,并且被配电对象30以被收容于被配电腔2101的方式被移动配电部210限位地保持。
移动配电部210进一步地包括至少一蓄电部211、一控制模组212、一配电执行机构213、一输出部215以及一输入部214,其中蓄电部211、配电执行机构213以及输出部215分别电路连接于控制模组212,当输入部214被连接于外部的市电或者DC电源,控制模组212将输入电能转化为适于蓄电部211存储的电能,蓄电部211存储电量,当被配电对象30被 输出部215输出电能,被配电对象30被收容于被配电腔2101。
配电执行机构213被设置于移动配电部210,被配电对象30被移动配电部210供电,被配电对象30被配电执行机构213限位,当移动配电部213执行释放指令时,被配电对象30被释放,其中配电执行机构213是卡位机构或者磁吸机构。当配电执行机构213是磁吸机构,被配电对象30被置于预设位置时,被配电对象30被自动地磁吸。当配电执行机构213是卡位机构,被配电对象30被置于预设位置时,被配电对象30被置入触发地锁定或者被配电对象30被置入后被自动地锁定。
所述服务器10接收到至少一归还相关信息后,服务器10发送一归还许可指令于所述电能补充站20或者被置于所述电能补充站20的所述被配电对象30,以接收待归还的所述被配电对象30。进一步地,服务器10发送一归还许可指令于所述移动配电装置21或者被置于移动配电装置21的所述被配电对象30,以供所述移动配电装置21的所述移动配电部210接收待归还的所述被配电对象30,所述配电执行机构213执行锁定所述被配电对象30。
优选地,输出部215被电路连接于控制模组212,输出部215输出电流至被收容于被配电腔2101的被配电对象30。输出部215包括至少二个输出端2150,其中输出端2150可被电路连接于被配电对象30。输出端2150可无线或有线地连接于被配电对象30,在此方面本发明不受到任何限制。
控制模组212包括一控制模块2121和至少一通信模块2122,通信模块2122可通信地连接于控制模块2121,通信模块2122可通信地连接于其他移动配电装置21、被配电对象30以及服务器10。可选地,通信模块2122可通信地连接于其他系统,在此本发明不受到任何限制。
配电执行机构213被控制模组212控制地活动,以自动地释放被收容于被配电腔2101的被配电对象30。
优选地,配电执行机构213包括一电机2131和一活动主体2132,其中电机2131传动地连接于活动主体2132,电机2131被控制模组212控制地驱动,电机2131被传动地连接于活动主体2132,活动主体2132被电机2131驱动地进入配电腔2101,以卡位于被保持于被配电腔2101的被配电对象30的一凹槽(未标号)。即,活动主体2132在一卡位位置和一释放位置之间切换,当活动主体2132被保持于卡位位置时,活动主体2132进入配电腔2101。当活动主体2132被保持于释放位置时,活动主体2132被远离配电腔2101,以被配电对象30自由地保持。
活动主体2132被保持于被配电腔2101,当被配电对象30置于被配电腔2101时,活动主体2132被被配电对象30挤压地保持。也就是说,被配电对象30相对于活动主体2132靠近释放开口2102。被配电对象30被置于被配电腔2101时,活动主体2132被驱动地脱离配电腔2101时,被配电对象30不被活动主体2132限位,以使得活动主体2132在回复力的作用下带动被配电对象30向外弹出,且被配电对象30凸起于移动配电装置21的外表面,进而被配电对象30凸出于移动配电装置21表面的部分可被用户抓取。当被配电对象30被用户自释放开口2102置入配电腔2101时,活动主体2132被驱动地保持于卡位位置,以卡位被配电对象30。
被配电对象30被收容供电于移动配电装置21。进一步地,被配电对象30被移动配电装置21收容供电的方式随着移动配电装置21移动,以使得用户可以在最近的移动配电装置21被租电。被使用结束的被配电对象30可以被快速地归还于就近的移动配电装置21。移动配电装置21可被电路连接于外部DC电源、AC电源或者市电。
优选地,参考说明书附图之图13A,蓄电部211包括至少二个电池2111。也就是说,移动配电装置21自带内置的电池2111,以使得被配电对象30被移动配电装置21收容供电,同时,移动配电装置21可用于通信、交互,以使得移动配电装置21不仅作为收容供电装置。
蓄电部211包括至少四个电池2111。当被配电对象30置于移动配电装置21时,电池2111优选地自动供电于被配电对象30。
在其他变形实施例中,移动配电装置21作为移动设备时,电池2111可优选地保持至少20%以上的电量用于其自身的使用。
值得一提的是,电池2111优选地保持自身使用的电量可根据具体的需求而设定,本领域技术人员应当可以理解并知晓,在此本发明不受任何限制。
控制模组212包括至少一通信单元2121和一控制单元2120,控制单元2120可处理信息,用于智能服务,通信单元2121被电路连接于控制单元2120。通信单元2121用于通信。优选地,通信单元2121可接收到外部设备和/或服务器10的信息。
可选地,通信单元2121的类型选自4G/5G基板、WIFI基板、蓝牙(BT)基板的类型组。
优选地,移动配电装置21被服务器10控制地执行一释放配电指令1021,以释放被配电对象30的电能。在本较佳实施例中,移动配电装置21以弹出被配电对象30的方式以释放被配电对象30,用户可以在许可时间内获取被配电对象30。
可选地,移动配电装置21以控制被配电对象30向外输出电流的方式以释放被配电对象30的电能。
优选地,输出部215被实施为至少三个插脚,当被配电对象30被插接于输出部215时,输出部215电路连接于被配电对象30,并且输出部215通信于被配电对象30。也就是说,输出部215的插脚的其中一个可通信于配电对象30。
参考说明书附图之图13B,被配电对象30包括至少一配电控制部310、一配电供电部320、一配电输入部330以及一配电输出部340,配电控制部310电路连接于配电供电部320、配电输入部330以及配电输出部340,配电输入部330被配 电控制部310控制地输入电流,配电输出部340输出电流。优选地,配电输入部330输入DC电流,配电输出部340以有绳或无绳地方式输出DC电流。
配电供电部320包括至少一配电电池321,由于被配电对象30可脱离移动配电装置20的方式电路连接于其他设备60,被配电对象30方便用户在无充电座时供电。
优选地,配电输入部330以插接的方式电路连接于移动配电装置20,当被配电对象30的配电输入部330被插接于输出部215的三个插脚时,输出部215电路连接于被配电对象30,并且输出部215通信于被配电对象30。
参考说明书附图之图13B,在一个变形实施例中,和说明书附图之图13B所示的较佳实施例不同的是,移动配电装置21以无线地供电于被配电对象30。移动配电装置21的输出部215被实施为一无线输出部,当被配电对象30被置于移动配电装置21时,输出部215被控制模组212控制地输出电流。被配电对象30不需要被插接于移动配电装置20就可以被控制地输出电流。进一步地,被配电对象30和移动配电装置21可以是可拆卸的被设置,但是通过移动配电装置21控制被配电对象21向外释放电能的方式控制被配电对象21被配电于其他设备50。也就是说,被配电对象30不是以物理限制其不能自移动配电装置21脱离的方式限制被配电对象30是否能够被配电的方式相其他设备50输出电流,而是通过移动配电装置21发送至被配电对象21一释放指令后,被配电对象21才能输出电流,以供电于其他设备20。
参考说明书附图之图13C,被配电对象30自移动配电装置的配电腔2101被释放后,被配电对象30移动地供电于其他设备60。
可选地,参考说明书附图之图13D,在一个变形实施例中,被配电对象30可以是被一体地设置于移动配电装置21,以使得被配电对象30被释放电能的方式供电于其他设备50。也就是说,被配电对象30和移动配电装置21被组装为一体。设备60被靠近于移动配电装置21时被电路连接,其中设备60被靠近于移动配电装置21的方式包括被贴合于移动配电装置21或者设备60距离移动配电装置21一定距离内,以使得设备60被移动配电装置21供电。优选地,设备60被贴合于移动配电装置21的顶面的方式被移动配电装置21供电。
详而言之地是,被配电对象21被电路连接于设备50的充电方式不受本发明的限制,也就是说,被配电对象21以无线充电、有线充电的方式的至少其中一个方式供电于设备50。
参考说明书附图之图13A,被配电对象30被卡位的方式收容于移动配电装置21,以使得被配电对象30不会随意地被拿取,当移动配电装置21被移动至一有供电需要的位置,被配电对象30只能在共享配电管理系统100的控制下被释放。
当一移动配电装置21处于通信异常状态时,与该移动配电装置21相近的其他移动配电装置21可获取该移动配电装置21的异常信息以发送包括该移动配电装置通信异常状态的共享终端反馈103。优选地,所述移动配电装置21发送共享终端反馈103至服务器10和/或所述移动配电装置21发送共享终端反馈103至所述持电装置22,以通过所述持电装置22发送共享终端反馈103至服务器10。
参考说明书附图之图14A,本发明的另一个较佳实施例中,和参考说明书附图之图13A所示的较佳实施例不同的是,共享租电系统1包括至少二个移动配电装置21,并且每个移动配电装置21可用于交互,以使得移动配电装置21可以被保持于用户的社交空间单元S2内时提供用户交互和娱乐的服务。
进一步地,移动配电装置21包括至少一移动配电部210和至少一交互处理部216,并交互处理部216被电路连接于移动配电部210,以供用户交互于交互处理部2160。移动配电部210可通信地连接于交互处理部216。
值得一提的是,作为每个社交空间单元S2的共享终端200,共享终端200可以打破被分割的社交空间单元S2S2,以打破用户的社交间隔。在本较佳实施例中,移动配电装置21之间可通信地连接,以使得用户在不同的移动配电装置21时,可交互。
举例来说,当用户同时选择同一个被移动配电装置21的交互处理部216显示的一游戏时,两个移动配电装置21通信地连接,以进行pk游戏。参考说明书附图之图14A,交互处理部216包括至少一显示器,以显示一移动合并圆圈的游戏,交互处理部216被用户触屏或者遥控的方式被控制游戏的进行,用户之间相互pk的方式进行交互。
值得一提的是,2个移动配电装置21还可以进行交流。
在其他较佳实施例中,移动配电装置21被实时为移动至任意一个需电位置,相邻的移动配电装置21可通信的连接,共享租电系统1包括至少二个移动配电装置21,移动配电装置21被实时为移动至任意一个需电位置,相邻的移动配电装置21可通信的连接,使得共享租电系统1形成包括一移动配电装置信息列表的电能相关信息105。移动配电装置21之间可通信,使得移动配电装置信息列表可实时地提供至少一该范围内的移动配电装置信息列表至用户,以提示用户相邻的实时移动配电装置21可被服务。
此外,移动配电装置21之间可通信,当某一移动配电装置21距离信号源较远,所受信号覆盖较弱,可以通过其它信号覆盖较好的移动配电装置21进行信号转发至该移动配电装置21。
移动配电装置信息列表包括且不限于相邻移动配电装置数量、电量、可租信息显示等信息,在此本发明不受任何限制,可根据具体需要进行设计。
值得一提的是,移动配电装置21是多个。也就是说,移动配电装置21的数量选自2、3、4、5、6、7、8、9、10、11、12、13、14、15、16、17、18、19、20、21、22、23、24、25、26、27、28、20、30、31、32、33、34、35、36、37、 38、39、40的数量组。
更优选地,共享租电系统1形成一租电地图。移动配电装置21之间可通信,使得移动配电装置21可实时地提供至少一该范围内的租电地图至用户,以提示用户相邻的实时移动配电装置21可被服务。
租电地图包括且不限于显示相邻的移动配电装置21的数量、电量、距离、可租被配电对象30的数量等信息。
进一步地,被配电对象30通过对应的移动配电装置21发送通信的相关信息。当一个移动配电装置21处于通信异常状态时,与该移动配电装置21相近的其他移动配电装置21可获取该移动配电装置21的异常信息以发送包括该移动配电装置通信异常状态的共享终端反馈103至服务器10。
在本发明的较佳实施例中,由于多个餐桌位置都设有被移动配电装置21,移动配电装置21可通信地地连接于其他移动配电装置21。
优选地,交互处理部216可通信地连接于共享配电系统100和其他服务系统,如点餐系统、娱乐系统等系统,在此本发明不受到任何限制。
更可选地,当该餐桌位置的移动配电装置21无法正常被租电时,移动配电装置21可提供用户邻近的可被组电的移动配电装置21的列表信息。
参考说明书附图之图14B,交互处理部216可通信地连接于一点菜系统400,其中点菜系统400显示内容包括且不限于至少一菜色、价格以及推广信息。用户可以通过遥控、触屏、语音、动作的方式触发。换言之,交互处理部216可以包括多个探测模块和显示器。探测模块包括且不限于图像探测、声音探测、动作探测、按压力探测以及温度探测,在此本领域技术人员可以理解并知晓。
探测模块的图像探测可以是有色光探测、激光探测、雷达探测、红外探测的类型组。探测模块的按压力探测和温度探测被集成于显示器,以被用户触屏的方式触发。
当一菜色被触发加入购物车后,交互处理部216显示一购物车模块,当用户确定下单时,交互处理部216发送订单信息至点菜系统,以生成至少一下单信息。同时,交互处理部216可显示订单下单信息。
参考说明书附图之图14C,控制模组212有写入投屏协议,当移动配电装置21和智能设备被保持于同一个WIFI时,智能设备被触发投屏时,移动配电装置21的交互处理部216投影智能设备的显示内容。
优选地,智能设备是设备60,进一步地,设备60可以被实施为手机、ipad。
参考说明书附图之图15A,本发明的另一个较佳实施例中,和参考说明书附图之图14A所示的较佳实施例不同的是,交互处理部216被可拆卸地安装于移动配电部210。移动配电部210和交互处理部216可被组装。由于移动配电部210和交互处理部216可拆卸地被设置,交互处理部216可以被远离移动配电部210的方式被用于用户使用,以便于用户使用。移动配电部210收容限位被配电对象30。
移动配电部210包括蓄电部211、至少一控制模组212、至少一配电执行机构213、输出部215以及输入部214。即,移动配电部210和交互处理部216可被独立地保持。
交互处理部216进一步地包括一交互蓄电部2161、至少一交互控制部2162、至少一交互连接部2163以及一交互输入部2164,其中交互控制部2162电力路连接于交互蓄电部2161、交互连接部2163以及交互输入部2164,交互输入部2164可电路连接于移动配电部210的输出部215的其中一个输出端2150。交互蓄电部2161存储电量,以供交互处理部216可脱离电源地使用。
交互控制部2162包括一交互控制模块21621和至少一交互通信模块21622,交互通信模块21622可通信地连接于交互控制模块21621,交互通信模块21622可通信地连接于移动配电装置21的通信模块2122、其他交互处理部216或者服务器10,在此本发明不收任何限制。
交互处理部216可被连接于移动配电部210。交互连接部2163包括至少一第一交互连接件21631,第一交互连接件21631可被连接于移动配电部210,第一交互连接部21631被设置于交互处理部216。
第一交互连接部21631可以被实施为磁性元件,以使得交互处理部216被吸附于移动配电部210。交互处理部216还可以包括第二交互连接件21632,第二交互连接件21632被设置于移动配电部210,以连接第一交互连接件21632。
在其他变形实施例中,第一交互连接件21631被设置于移动配电部210,交互连接部216被连接于被保持于移动配电部210的第一交互连接件21631。第一交互连接件21631可以被实施为磁性元件、限位元件,在此本发明不受到任何限制。
交互处理部216和移动配电部210以模块化地被组装。在其他变形实施例中,交互处理部216、蓄电部211和其他模块可以被模块化地被设置,以简化装置的装配、元件关系,也更加节省成本。
参考说明书附图之图15B,移动配电装置21可通信地连接持电装置22,并且移动配电装置21之间可通信地连接。
参考说明书附图之图15C,藉由移动配电装置21的交互处理部216通信于服务器10,交互处理部216通信连接于移动配电部210,其中通信相关信息在不同的社交空间单元S2的交互处理部216之间通信地连接。同一社交空间单元S2的 每个交互处理部216通信于对应的移动配电部210,以通信通信相关信息。
参考说明书附图之图15D,藉由移动配电装置21的移动配电部210通信于服务器10,交互处理部216通信连接于移动配电部210,其中通信相关信息在不同的社交空间单元S2的移动配电部210之间通信地连接。同一社交空间单元S2的每个交互处理部216通信于对应的移动配电部210,以通信通信相关信息。
参考说明书附图之图16A,本发明的另一个较佳实施例中,和参考说明书附图之图14A所示的较佳实施例不同的是,共享租电系统1的蓄电部211和其他模块可以被模块化地被设置,以简化装置的装配、元件关系,也更加节省成本。即,移动配电部210包括至少一控制模组212、至少一配电执行机构213、输出部215、输入部214以及交互处理部216。即,移动配电部210、蓄电部211分别被独立地保持。
值得一提的是,在本较佳实施例中,移动配电装置21的蓄电部211被长期持电地保持,也就是说,移动配电装置21的蓄电部211作为一持电装置22。
蓄电部211可长期带电,移动配电部210以被蓄电部211供电的方式被蓄电部211支撑。即,移动配电部210被置于蓄电部211的方式被蓄电部211供电。移动配电部210不装配电池,以减少了移动配电部210的整体体积,简化装置的装配、元件关系,也更加节省成本。
蓄电部211包括一电池组2110、蓄电输入端2111以及蓄电输出端2112,其中蓄电部211的电池组2110通过蓄电输入端2111输入电流,电池组2110通过蓄电输出端2112输出电流。
电池组2110包括多个电池,以蓄电。蓄电输出端2112可以选自无线输出端和/或有线输出端。
优选地,蓄电输出端2112被实施为无线输出的方式供电于移动供电部210。
参考说明书附图之图16A,被配电对象30藉由自移动配电部210被释放的方式远离移动配电部210,以充电于用户的设备60。
参考说明书附图之图16B,被配电对象30被一体地设置于移动配电部210,通过被释放电量的方式无线供电于用户的设备60。
参考说明书附图之图16C和图16D,和参考说明书附图之图15所示的较佳实施例不同的是,共享租电系统1的交互处理部216、蓄电部211和其他模块可以被模块化地被设置,以简化装置的装配、元件关系,也更加节省成本。即,移动配电部210包括至少一控制模组212、至少一配电执行机构213、输出部215以及输入部214。即,移动配电部210、蓄电部211、交互处理部216可被独立地保持。
值得一提的是,在本较佳实施例中,移动配电装置21的蓄电部211被长期持电地保持,也就是说,移动配电装置21的蓄电部211作为一持电装置22。
蓄电部211可长期带电,移动配电部210以被蓄电部211供电的方式被蓄电部211支撑。即,移动配电部210被置于蓄电部211的方式被蓄电部211供电。移动配电部210不装配电池,以减少了移动配电部210的整体体积,简化装置的装配、元件关系,也更加节省成本。
蓄电部211包括至少一电池组2110、至少一蓄电输入端2111以及至少一蓄电输出端2112,其中蓄电部211的电池组2110通过蓄电输入端2111输入电流,电池组2110通过蓄电输出端2112输出电流。
电池组2110包括多个电池,以蓄电。蓄电输出端2112可以选自无线输出端和/或有线输出端。
优选地,蓄电输出端2112被实施为无线输出的方式供电于移动供电部210。
参考说明书附图之图16C,在本较佳实施例中,被配电对象30藉由自移动配电部210被释放的方式远离移动配电部210,以充电于用户的设备60。
参考说明书附图之图16D,在本较佳实施例中,被配电对象30被一体地设置于移动配电部210,通过被释放电量的方式无线供电于用户的设备60。
参考说明书附图16F和图16G,蓄电部211被保持于一支撑物或者一支撑面,蓄电部211长期带电。即,蓄电部211被电路连接于AC电源,移动配电部210以可相对蓄电部211活动的方式被蓄电部211支撑。
参考说明书附图16F和图16G,蓄电部211被预埋地被保持于一支撑物或者一支撑面,蓄电部211被固定地保持,移动配电部210以可相对蓄电部211活动的方式被蓄电部211支撑。
蓄电部211和移动配电部210被可拆卸地分离,蓄电部211被预埋地被保持于一支撑物或者一支撑面,蓄电部211被固定地保持,移动配电部210以可相对于蓄电部211活动的方式被蓄电部211供电。蓄电部211被预埋,以简化外部线路。
蓄电部211和移动配电部210的电路连接方式不受到任何限制,蓄电部211和移动配电部210可以无线地电路连接,也可以有线地电路连接,如触电连接,本领域技术人员可以理解并知晓。
优选地,移动配电部210的输出部215有线地输出,输出部215以有线的方式输出电流,移动配电装置210以收容的方式地供电于被配电对象30。
参考说明书附图之图16E和图16G,被配电对象30被一体地置于移动配电部210。优选地,无线输出部215以无线的方式输出电流,移动配电装置210以无线地供电于设备60。
在其他变形实施例中,被配电对象30被一体地置于移动配电部210。无线输出部215以有绳的方式输出电流,移动配电装置210以有绳地电路连接于设备60。
参考说明书附图之图16H和图16I,用户可以通过交互处理部216中转通信相关信息,并且交互处理部216通信于服务器10和移动配电部210。交互处理部216在用户的授权下发送用电请求1011至服务器10,服务器10生成用电释放指令1021至移动配电部210,移动配电部210执行用电释放指令1021,以释放被配电对象30。参考说明书附图之图16H,移动配电部210执行用电释放指令1021的方式是释放被配电对象30。参考说明书附图之图16H,移动配电部210执行用电释放指令1021的方式是直接释放被配电对象30电量,而不需要释放被配电对象30的实体。
可选地,服务器10生成用电释放指令1021至交互处理部216,通过交互处理部216中转用电释放指令1021至移动配电部210,移动配电部210执行用电释放指令1021。
参考说明书附图之图17A至图17D,本发明的较佳实施例被详细地揭露并诠释,持电装置2222包括一持电控制部222、一个或多个持电输入部224以及一个或多个持电输出部225。所述持电控制部222可通信于服务器10,并且接收服务器10发送的通信相关信息,并且处理配电相关信息。持电控制部222被电路连接于持电输入部224以及持电输出部225,持电输出部225输出AC和/或DC电流。
持电装置2222包括一整流部223,其中整流部223可导通地连接于持电输入部224,以整流输入的AC电流为DC电流。
持电装置2222包括一检测部226,检测部226实时地检测持电输入部224和持电输出部225的电流、电压、温度,检测部226发送至少一持电检测结果至持电控制部222,持电控制部222处理持电检测结果并且控制持电输入部224和持电输出部225输入输出。
优选地,移动配电装置2121被置于持电装置2222时,移动配电装置2121被持电装置2222收容并且被持电装置2222供电。优选地,持电装置2222进一步地包括一持电配电部220,移动配电装置2121被置于持电配电部220时,移动配电装置2121被持电配电部220收容并且被持电输出部225供电。
持电配电部220具有至少一持电配电腔2201和导通每个持电配电腔2201与外部空间的至少一收容开口2202。持电输出部225是多个。持电输出部225被设置于持电配电部220的各个持电配电腔2201,当移动配电装置2121被置于持电配电部220的各个持电配电腔2201时,移动配电装置2121的移动移动配电输入部214被持电装置2222的持电输出部225供电。
优选地,移动配电装置2121的移动移动配电输入部214被电路连接于持电装置2222的持电输出部225。更优选地,持电输出部225被实施为至少二个接电端子。移动配电装置2121的移动输入部214可对接于持电输出部225,以通电。此外,持电输出部225可以被实施为TYPE C端口、USB端口、Lightning接口、或者其他同类型的端口,在此不受本申请的限制。
可选地,持电装置2222的持电输出部225是无线输出电流,以使得每个移动配电装置2121被置于收容腔2201时,持电输出部225可感应地输出电流至移动配电装置2121。
持电配电部220包括多个持电配电腔2201,并且持电输出部225的数量大于等于持电配电腔2201,使得每个被置于持电配电腔2201的移动配电装置2121可被所述持电输出部225供电。进一步说,每个被置于持电配电腔2201的移动配电装置2121可被所述持电输出部225电路连接或者无线地供电。
参考说明书附图之图17C,持电装置22包括至少一持电交互部228,持电交互部228可用于交互,其中持电交互部228可主动地探测用户的用户特征或者持电交互部228可接收到用户发出的用电释放请求。持电交互部228可反馈指令102、共享终端反馈103、至少一待支付账单104、电能相关信息105、支付授权信息106、订单任务信息107、服务信息108、商家反馈109的至少其中一个。
参考说明书附图之图17D,更优选地,持电装置2222进一步地包括一持电电池部221。持电电池部221被电路连接于持电输出部225和持电输入部224。持电电池部221存储电量。值得一提的是,持电电池部221、整流部223、持电输入部224、持电输出部225以及检测部226分别电路连接于持电控制部222,当持电输入部224被连接于外部的市电或者DC电源,持电控制部222将输入电流转化为适于持电电池部221存储的电流,持电电池部221存储电量,当移动配电装置2121被置于持电装置2222时,持电装置2222被持电输出部225供电。被配电对象3030被收容于持电配电腔2201。
值得一提的是,持电控制部222、持电输入部224以及持电输出部225被设置于持电配电部220。持电电池部221、持电控制部222、整流部223、持电输入部224以及持电输出部225被设置于持电配电部220。
参考说明书附图之图17E,可选地,持电装置22可被模块化地叠加,以使得2个以上的持电装置22可以电路连接,当不同空间需要不同的数量的移动配电装置21,持电装置22可以模块化地装配。
优选地,持电输出部225被电路连接于持电控制部222,持电输出部225输出电流至被收容于持电配电腔2202的移动配电装置21。输出部215包括至少二个持电输出单元2251,其中持电输出单元2251可被电路连接于移动配电装置21。持电输出单元2251可无线或有线地连接于移动配电装置21,在此方面本发明不受到任何限制。
持电装置22包括多个持电输出单元2251,并且持电装置22具有分别输出持电输出单元2251的持电配电腔2202,每个移动配电装置21被单独地置于其中一个持电配电腔2202并且被对应的持电输出单元2251通电,以使得移动配电装置21被持电装置22供电。移动配电装置21被持电装置22独立地供电。
进一步地,持电装置22长时间持电,不仅被长时间电路连接于外部电源,其自身的存储电量也可以在断电情况下继续持电。
持电控制部222包括一持电控制模块2221和至少一持电通信模块2222,持电通信模块2222可通信地连接于持电控制模块2221,持电通信模块2222可通信地连接于其他持电装置22、移动配电装置21、被配电对象30以及服务器10。可选地,持电通信模块2222可通信地连接于其他系统,本申请不受到限制。
整流部223整理自持电输入部224通过的电流,以整流成可被持电电池部221存储的DC电流。
检测部226实时地检测持电电池部221、持电输入部224和持电输出部225的电流、电压、温度,检测部226发送至少一持电检测结果至持电控制部222,持电控制部222处理持电检测结果,并控制持电电池部221、持电输入部224和持电输出部225。
参考说明书附图之图18A至图18D,在本发明其他变形实施例中,和说明书附图之图17A所示的较佳实施例不同的是,持电装置22的实施方式不同,其中持电装置22可收容供电于移动配电装置21和被配电装置22,其中持电装置22进一步地包括至少一持电配电执行部227,其中持电配电执行部227包括多个持电配电执行单元2271,以使得持电配电执行单元2271分别被置于持电配电腔2201,当持电配电执行单元2271可以在一卡位位置和一释放位置之间切换,当持电配电执行单元2271被保持于卡位位置时,持电配电执行单元2271进入持电配电腔2201。当持电配电执行单元2271被保持于释放位置时,持电配电执行单元2271被远离配电腔2101,以被配电对象30或者移动配电装置21被释放。
持电配电腔2201进一步地包括一第一持电配电腔2201A和一第二持电配电腔2201B,所述移动配电装置21被置于所述第一持电配电腔2201A,并且所述移动配电装置21被所述持电输出部210供电。所述被配电对象30被置于所述第二持电配电腔2201B,并且所述被配电对象30被所述持电输出部210供电。
进一步地,持电装置22包括至少一持电交互部228,持电交互部228可用于交互,其中持电交互部228可主动地探测用户的用户特征或者持电交互部228可接收到用户发出的用电释放请求。持电交互部228可反馈指令102、共享终端反馈103、至少一待支付账单104、电能相关信息105、支付授权信息106、订单任务信息107、服务信息108、商家反馈109的至少其中一个。
优选地,被配电对象30以被持电配电执行单元2271限位地电路连接于持电装置22。
移动配电装置21被持电配电执行单元2271限位地供电。在其他变形实施例中,移动配电装置21被自由地保持于持电装置22的持电配电腔2201。
详而言之的是,持电装置22可以被作为共享终端200,以供用户交互地租用被配电对象30。
参考说明书附图之图18B至图18D,藉由持电装置22,可以直接租用被配电对象30。
参考说明书附图之图18B至图18D,藉由持电装置22,持电装置22接收到用户的用电请求1011,释放被配电对象30。在附图18B中,用户扫码持电装置22的二维码的方式获取持电装置22的第三设备标识符1001C,以使得服务器10获取携带有用户授权的用户标识符1002和持电装置22的第三设备标识符1001C的用电请求1011,服务器10根据用电请求1011生成一对设有第三设备标识符1001C的持电装置22对应的用电释放指令1021,用电释放指令1021被持电装置22接收后,持电装置22执行用电释放指令1021,以释放被收容其中的被配电对象30。
当被配电对象30被放置回持电装置22对应的持电配电腔2201后,持电装置22发送任务结束反馈1031至服务器10,其中任务结束反馈1031携带有持电装置22的第三设备标识符1001C和被配电对象30的第一设备标识符1001A,服务器10根据任务结束反馈1031生成一待支付订单1041,以供用户支付。
当用户用户藉由用户终端40发送至少一支付授权信息106至服务器10以支付待支付账单104。服务器10生成一订单任务信息107,已完成订单。值得一提的是,用户可以通过用户终端40获取订单任务信息107。
参考说明书附图之图18C,持电装置22主动地获取用户的特征信息的方式获取用户的用户标识符1002,持电装置22发送携带有用户标识符1002和第三设备标识符1001C的用户请求以使得服务器10获取携带有用户授权的用户标识符1002和持电装置22的第三设备标识符1001C的用电请求1011,服务器10根据用电请求1011生成一对设有第三设备标识符1001C的持电装置22对应的用电释放指令1021,用电释放指令1021被持电装置22接收后,持电装置22执行用电释放指令1021,以释放被配电对象30。
参考说明书附图之附图18D中,和参考说明书附图之图18B所示的实施方式不同的是,持电装置22不直接执行用电释放指令1021。持电装置22发送用电释放指令1021至移动配电装置21,移动配电装置21执行用电释放指令1021,以释放被收容其中的被配电对象30。
可选地,持电控制部222接收到一断电相关信息后处理一反供电指令时,持电输出部225可电路连接于被置于持电配电腔2201的移动配电装置,持电输出部225接收到被置于持电配电腔2201的移动配电装置21的电流,持电电池部221存储移动配电装置21发送的电量;或者
可选地,在持电控制部222接收到一断电相关信息后处理一反供电指令时,持电输出部225可电路连接于被置于持电配电腔2201的被配电对象30,持电输出部225接收到被置于持电配电腔2201的被配电对象30的电流,持电电池部221存储被配电对象30发送的电量。
参考说明书附图之图19,本发明的另一个较佳实施例中,共享配电管理系统100被装配于服务器10,共享配电管理系统100进一步地包括至少一配电中心110和一管理中心120,其中配电中心110包括至少一配电单元111,管理中心120包括至少一配电管理单元121,配电管理单元121可通信地连接于配电单元111,配电单元111根据配电请求分配至少一指令102。
配电单元111可通信于电能补充站20和/或者被配电对象30的至少其中一个。配电单元111根据用户的请求匹配至少一被配电对象30并且释放被配电对象30。
优选地,配电中心110进一步地包括一查询单元112,查询单元112可查询配电单元111的相关配信息,其中查询单元112发送单元111的相关配电信息至策略生成中心130,以用于生成策略。
优选地,配电管理单元121包括至少一被配电对象管理模块1211和至少一电能补充站管理模块1221,被配电对象管理模块1211管理被配电对象30的电量、位置、通信强度等信息。电能补充站管理模块1221管理电能补充站20的电量、位置、通信强度等信息
值得一提的是,电能补充站20被实施为至少一移动配电装置21时,电能补充站管理模块1211包括一移动配电装置管理机构12211,移动配电装置管理机构12211管理移动配电装置的数量、位置、型号、设备标识码。
当电能补充站20被实施为至少一移动配电装置21和至少一持电装置22时,电能补充站管理模块1211包括一移动配电装置管理机构12211和至少一持电装置管理机构1212,移动配电装置管理机构12211管理移动配电装置21的数量、位置、型号、设备标识码。持电装置管理机构1212管理持电装置22的数量、位置、型号、设备标识码。
可选地,当电能补充站20被实施为至少一持电装置22时,电能补充站管理模块1211包括至少一持电装置管理机构1212,持电装置管理机构1212管理持电装置22的数量、位置、型号、设备标识码。
进一步地,共享配电管理系统100包括至少一策略生成中心130,策略生成中心130包括至少一配电策略生成单元131,配电策略生成单元131根据被配电对象30的状态生成一配电策略,以供当被收容于一起的至少二个被配电对象30中满足配电条件的其中一个被释放。
值得注意的,当移动配电装置22是一智能设备时,移动配电装置22不仅其电量满足自身的用电需求,还需要供电于被配电对象30。根据配电策略生成单元131的配电策略,移动配电装置22优选地供电于被配电对象30,当移动配电装置22低于自身所需的电量时,移动配电装置22停止给被配电对象30供电。
配电策略生成单元131还进一步地包括定价策略、空间位置策略、推广策略等信息,在此本发明不受到任何限制。
策略生成中心130包括至少一管理策略生成单元132,管理策略生成单元132生成对移动终端200、持电装置22的管理方案,其中当管理策略生成单元132接收到配电策略生成单元131的电能相关信息以生成一设备管理策略,其中设备管理策略包括且不限于单一地理区域空间S1的投递数量,投递时间、充电服务时间等信息。
策略生成中心130包括管理策略生成单元132,管理策略生成单元132根据移动配电装置和/或者被配电对象30的电能相关信息105生成至少一管理策略。共享配电管理系统100包括至少一支付中心140,支付中心140包括少一支付单元141和至少一支付生成单元142,支付生成单元142通信于支付生成单元141,其中支付单元141根据支付生成单元142生成的待支付账单104进行支付。
共享配电管理系统100进一步地包括至少一电能监控中心150。在一些实施例中,电能监控中心150可通信于配电中心110的配电单元111,以实时地监控被配电对象30和电能补充站20的状态的方式得到电能相关信息105。
在一些实施例中,电能监控中心150可通信于配电中心110的配电单元111,以实时地监控移动配电装置20以及被收容于电能补充站20的被配电对象30的状态的方式获得被配电对象30和的实时状态。
电能监控中心150包括至少一共享终端监控单元151、至少一配电过程监控单元152以及一电能监控单元153,共享终端监控单元151监控共享终端的实时状态、电量、通信信号等信息。配电过程监控单元152监控至少一配电过程中的被配电对象30的电量状态、位置状态和在线通信状态。电能监控单元153获取每个充电补充站20和被配电对象30的电能相关信息,以使得电能监控单元153得到至少一不同的地理区域环境S1下的电量租用分布状态,以获得一电量租用地图。
管理策略生成模块132被可通信地连接于电能监控中心150,其中管理策略生成模块132根据被配电对象30和/或者电能补充站20的的实时状态生成一管理策略。
值得一提的是,被配电对象30和/或者电能补充站20的的实时状态可以由被配电对象30和/或者电能补充站20任意一个发送,在此本发明不受任何限制。
在一个变形实施例中,被配电对象30和/或者电能补充站20的的实时状态被电能补充站20发送。电能补充站20被通信地连接于被配电对象30,并且藉由电能补充站20发送电能相关信息105。也就是说,配电单元111通信于电能补充站20,以通信用户请求101和指令102的至少其中一个。
在其他变形实施例中,被配电对象30和/或者电能补充站20的的实时状态被被配电对象30实时地发送,电能补充站20被通信地连接于被配电对象30,并且藉由被配电对象30发送电能相关信息105。也就是说,配电单元111通信于被配电对象30,以通信用户请求101和指令102的至少其中一个。
在一些实施例中,配电管理单元121进一步地包括至少一电能补充站管理模块1211和至少一被配电对象管理模块1212,电能补充站管理模块123根据管理策略生成模块132生成的管理策略管理电能补充站20,以控制电能补充站20保证电量充足,以供电于被配电对象30。
本发明的另一个较佳实施例的一共享方法被详细地揭露并诠释,其中共享方法包括以下步骤:
(s001)至少一用户请求被触发后,生成一指令;和
(s002)藉由被保持于一社交空间单元S2S2的至少一共享终端200,在接收到指令后执行指令。
进一步地,共享方法包括以下步骤:
(s003)任务结束被触发后,生成一待支付账单;和
(s004)在用户授权支付后,完成支付。
进一步地,共享方法的步骤(s001)之前包括以下步骤:
(s001.1)藉由共享终端200,携带有至少一共享终端200的设备标识符1001和用户的用户标识符1002的用户请求被触发。
进一步地,共享方法的步骤(s001.1)和(s002)中进一步地包括以下步骤:
共享终端200可以被实施为移动配电装置21、持电装置22或者移动配电装置21或者持电装置22的一部分。
进一步地,共享方法的步骤(s001)之前进一步地包括以下步骤:
(s001.2)藉由用户终端40,携带有至少一共享终端200的设备标识符1001和用户的用户标识符1002的用户请求被触发。
进一步地,共享方法的步骤(s001.2)进一步地包括以下步骤:
扫描共享终端200的设备二维码,以获取共享终端200的设备标识码1001。
进一步地,共享方法的步骤(s001.1)包括以下步骤:
藉由共享终端200,主动探测用户的用户标识码1002,以获得用户的用户标识码1002。
进一步地,共享方法的步骤(s002)包括以下步骤:
(s002.1)藉由被保持于一社交空间单元S2S2的至少一共享终端200,执行用电释放指令1021;和
(s002.2)被配电对象30被释放。
优选地,共享方法的步骤(s002.2)包括以下步骤:
被配电对象30被释放的方式包括且不限于机械地弹出以释放被配电对象30、供电于被配电对象30,控制被配电对象30输出电流。
进一步地,共享方法的步骤(s001)之前包括以下步骤:
(s000)于一个社交区域空间S1的至少二个社交空间单元S2,间隔地设置共享终端200,以供用户处于自己所处的社交空间单元S2就可以使用共享终端200。
进一步地,共享方法的步骤(s004)之后进一步地包括以下步骤:
(s005)藉由至少一移动配电装置20,交互于用户。
在一些实施例中,用户请求选自用电释放请求、换电请求、还电请求的至少其中一个;或者
用户请求是补电请求;或者
用户请求是用交互娱乐请求;或者
用户请求是用点菜请求。
在一些实施例中,共享方法的步骤(s002)包括以下步骤:
(s002.1)藉由被保持于一社交空间单位S2的至少一共享终端200,执行释放配电指令10211021;和
(s002.2)被配电对象30被释放或者被配电对象30被释放电量。
在一些实施例中,共享方法进一步地包括以下步骤:
于一个地理区域空间S1的至少二个社交空间单元,分别设置至少一共享终端200,其中,每个用户可共享终端200分别交互一交互相关信息,其中交互相关信息是用户请求或者执行反馈。
在一些实施例中,共享方法的步骤进一步地包括以下步骤:
(s006)藉由被置于地理区域空间S1的至少一移动配电装置21,以作为社交空间单元的通信中转站,执行释放配电指令10211021和/或交互相关信息;或者
(s006`)藉由被置于地理区域空间S1的至少一被配电对象30,以作为社交空间单元的通信中转站,通信至少一交互相关信息至至少一移动配电装置21。
在一些实施例中,共享方法的进一步地包括以下步骤:
藉由至少一持电装置22,以作为地理区域空间的通信中转站,通信于服务器10和共享终端200的其中一个。
在一些实施例中,共享方法的进一步地包括以下步骤:
在接收到用户的身份识别码后,发送一接收归还指令于至少一移动配电装置21;
藉由移动配电装置21,接收被借的被配电对象30;以及
藉由移动配电装置21,移动配电装置21反馈一归还反馈至服务器10,以结束电能释放。
在一些实施例中,中共享方法中通信的方式是4G/5G/WIFI/BT/私域网。
值得一提的是,共享租电系统1方便用户处于社交空间单元S2时即可获得电量。在一些实施例中,共享租电系统1方便用户在社交空间单元S2内无需走动就可以获得电量。在一些实施例中,共享租电系统1方便用户在各自的社交空间单元S2内实现社交,以打破各自的社交空间单元S2。在一些实施例中,移动配电装置21以社交距离为划分的方式被置于单个社交空间单元S2,以使得用户能够实时地在长时间停留的社交空间单元S2内获取电能。
在一些实施例中,移动配电装置21的数量是三个以上,移动配电装置21组成一共享配电网,在不同的社交空间单元S2,以关联不同的社交空间单元S2。进一步地,被分隔的社交空间单元S2可以通过被配置于其中的移动配电装置21而通信地关联起来。
在一些实施例中,移动配电装置21以移动的方式被配置于不同的社交空间单元S2中,以方便用户不需要进入其他社交空间单元S2,只要在自己所处的社交空间单元S2就可以立刻使用共享配电管理系统100。在一些实施例中,移动配电装置21和/或持电装置22之间发送至少一被匹配标识符的被配电对象30的配电相关信息,配电相关信息包括且不限于被配电对象30的标识符、电能相关信息以及对应的移动配电装置21收容电量信息。在一些实施例中,服务器发送一归还许可指令于所述电能补充站20或者被置于所述电能补充站20的所述被配电对象30,以接收待归还的所述被配电对象30。
在一些实施例中,每个电能补充站20和被收容于其中的被配电对象30构成一共享终端200,以使得用户可以通过共享终端200用电、交互和/或娱乐。
在一些实施例中,其中电能补充站20包括至少一个移动配电装置21和一持电装置22,其中移动配电装置21可被插拔地收容于持电装置22,当移动配电装置21被远离持电装置22地被放置,被配电对象30被可被插拔地收容于移动配电装置21,移动配电装置21以内置电池的方式可实地地向被配电对象30补充电能。
在一些实施例中,藉由电能补充站20被通信于共享配电管理系统100,电能补充站20接收到共享配电管理系统100释放至少一被配电对象30的指令后发送至被配电对象30,以使得被配电对象30被移动配电装置21控制地释放电能。
在一些实施例中,电能补充站20和/或被配电对象30以4G/5G或者连接于局域网的方式通信于共享配电管理系统100。
在一些实施例中,在电能补充站20和/或被配电对象30被连接于手机热点、WIFI或者其他私域网时,在电能补充站20通信于共享配电管理系统100。
在一些实施例中,电能补充站20包括至少二移动配电装置21,移动配电装置21可被方便移动地置于需电位置,以使得用户能够在其所在区域及时地获取被移动配电装置21释放的被配电对象30的电能。
在一些实施例中,电能补充站20包括至少二持电装置22,持电装置22被供电地置于需电位置,以长时间收容供电至少一被配电对象30,以使得用户能够在其所在区域及时地获取被移动配电装置21释放的被配电对象30的电能。
在一些实施例中,电能补充站20包括至少一移动配电装置21和可收容供电于移动配电装置21的至少一持电装置22,持电装置22被长时间带电地保持。
在一些实施例中,2个移动配电装置21之间发送至少一配电相关信息。
移动配电装置21之间发送至少一被匹配标识符的被配电对象30的配电相关信息,配电相关信息包括且不限于被配电对象30的标识符、被配电前的电量相关信息以及对应的移动配电装置21被保持至少一收容空位等信息。
在一些实施例中,移动配电装置21以社交距离为划分的方式被置于单个社交空间单元S2,以使得用户能够实时地在长时间停留的社交空间单元S2内获取电能。
在一些实施例中,移动配电装置21的数量是三个以上,移动配电装置21组成一共享配电网,在不同的社交空间单元S2,以关联不同的社交空间单元S2。进一步地,被分隔的社交空间单元S2可以通过被配置于其中的移动配电装置21而通信地关联起来。
在一些实施例中,移动配电装置21以移动的方式被配置于不同的社交空间单元S2中,以方便用户不需要进入其他社交空间单元S2,只要在自己所处的社交空间单元S2就可以立刻使用共享配电管理系统100。
在一些实施例中,移动配电装置21和/或持电装置22之间发送至少一被匹配标识符的被配电对象30的配电相关信息,配电相关信息包括且不限于被配电对象30的标识符、电量相关信息以及对应的移动配电装置21收容电量信息。
在一些实施例中,共享配电管理系统100能够管理被配电对象30被归还前的配电相关信息。
在一些实施例中,共享配电管理系统100能够获取被配电对象30在环境的空间位置。
在一些实施例中,共享配电管理系统100能够被查询至少一被配电对象30的租赁相关信息。
在一些实施例中,共享配电管理系统100包括至少一配电中心110,配电中心110包括至少一配电单元,配电单元可通信于电能补充站20、移动配电装置21以及被配电对象30的至少其中一个。配电单元根据用户的请求匹配至少一被配电对象30被释放。在一些实施例中,共享配电管理系统100包括至少一配电策略生成单元131,配电策略生成单元131包括至少一配电策略生成模块,配电策略生成模块根据被配电对象30的状态生成一配电策略,以供当被收容于一起的至少二个被配电对象30中满足配电条件的其中一个被释放。在一些实施例中,配电策略生成单元131包括配电策略生成Z中心130,配电策略生成Z中心130根据移动配电装置21的收容电量状态生成至少一管理策略。在一些实施例中,共享配电管理系统100包括至少一支付中心140,支付中心140包括至少一支付生成单元142和至少一支付单元141,支付生成单元142通信于支付生成单元142,其中支付单元141根据支付生成单元142生成的支付相关信息得到一支付界面,以供被认证的用户付款。在一些实施例中,共享配电管理系统100进一步地包括至少一电能监控单元153,其中电能监控单元153以实时地监控被配电对象30的状态的方式获得被配电对象30的实时状态。
本申请的一方面提供一共享终端200,其中共享终端200通信于一服务器10,以执行供电,包括:
一个或多个电能补充站20,其中电能补充站20的至少一个被置一地理区域空间S1中的一个社交空间单位;以及
一个或多个被配电对象30,其中每个被配电对象30被电能补充站20供电,被配电对象30被电能补充站20配置地释放电量。
在一些实施例中,电能补充站20是一移动配电装置21,移动配电装置21内置电池,被配电对象30可被移动配电装置21以远离外部电源的方式供电,移动配电装置21可移动地置于一地理区域空间S1中的一个社交空间单位,并且每个被配电对象30被移动配电装置21限制是否释放电量。
在一些实施例中,电能补充站20是一移动配电装置21,被配电对象30可被移动配电装置21供电,移动配电装置21以被电路连接于外部电源的方式置于一地理区域空间S1中的一个社交空间单位,并且每个被配电对象30被移动配电装置21限制释放电量。
在一些实施例中,被配电对象30固定地设置于移动配电装置21;或者
被配电对象30可拆卸地收容于移动配电装置21;或者
被配电对象30可拆卸地置于移动配电装置21。
根据权利要求2或3的共享终端200,其中移动配电装置21被配置为通信于被配电对象30,以限制被配电对象30是否释放电量。
在一些实施例中,被配电对象30可拆卸地收容于移动配电装置21,移动配电装置21具有至少一被配电腔2101以及导通被配电腔2101和外部空间的一释放开口2102,被配电对象30自释放开口2102插拔于被配电腔2101;或者
被配电对象30可拆卸地收容于移动配电装置21,移动配电装置21包括一移动配电部210和一配电执行机构213,配电执行机构213被设置于移动配电部210,被配电对象30被移动配电部210供电,被配电对象30被配电执行机构213限位,当移动配电部210执行释放指令时,被配电对象30被释放,其中配电执行机构213是卡位机构或者磁吸机构。
在一些实施例中,被配电对象30被对接于移动配电装置21的方式被移动配电装置21供电,其中被配电对象30包括正、负极端口和信号端口,以通信于移动配电装置21。
在一些实施例中,被配电对象30可拆卸地收容于移动配电装置21,移动配电装置21具有至少一被配电腔2101以及导通被配电腔2101和外部空间的一释放开口2102,被配电对象30自释放开口2102插拔于被配电腔2101;或者
被配电对象30可拆卸地收容于移动配电装置21,移动配电装置21包括一移动配电部210和一配电执行机构213,配电执行机构213被设置于移动配电部210,被配电对象30被移动配电部210供电,被配电对象30被配电执行机构213限 位,当移动配电部210执行释放指令时,被配电对象30被释放,其中配电执行机构213是卡位机构或者磁吸机构。
在一些实施例中,被配电对象30满足的被释放条件是至少二个被配电对象30中的电量相对较高的被配电对象30被释放;或者
满足被释放条件的被配电对象30是电量大于最低配电阈值并且可通信于电能补充站20的被配电对象30;或者
被释放条件的被配电对象30的最低配电阈值可以是30%;或者
被释放条件的被配电对象30的最低配电阈值可以是40%;或者
被释放条件的被配电对象30的最低配电阈值可以是50%;或者
被释放条件的被配电对象30的最低配电阈值可以是60%;或者
被释放条件的被配电对象30的最低配电阈值可以是70%。
在本申请的另一个方面,本申请提供一共享租电系统,包括:
一共享终端200,其中共享终端200包括:
一个或多个电能补充站20,其中电能补充站20的至少一个被置一地理区域空间S1中的一个社交空间单位;以及
一个或多个被配电对象30,其中每个被配电对象30被电能补充站20供电,被配电对象30被电能补充站20配置地释放电量;以及
至少一服务器10,服务器10处理配电相关信息,一个或多个被配电对象30和一个或多个电能补充站20中的至少一个通信于服务器10,以执行配电相关信息。
在一些实施例中,共享终端200包括二个以上电能补充站20,每个电能补充站20可通信于服务器10;或者
共享终端200包括二个以上电能补充站20,电能补充站20是一个或多个主电能补充站20和一个或多个从电能补充站20,主电能补充站20可通信于服务器10,从电能补充站20以通信于主电能补充站20的方式通信于服务器10。
在一些实施例中,共享终端200包括二个以上被配电对象30,每个被配电对象30可通信于服务器10;或者
共享终端200包括二个以上被配电对象30,被配电对象30是一个或多个主被配电对象30和一个或多个从被配电对象30,主被配电对象30可通信于服务器10,从被配电对象30以通信于主被配电对象30的方式通信于服务器10,电能补充站20通信于对应的主被配电对象30或者从配电对象,以执行执行服务器10的释放被配电对象30的电能的指令。
在一些实施例中,共享终端200包括二个以上移动配电装置21,每个移动配电装置21可通信于服务器10,移动配电装置21执行服务器10的释放被配电对象30的电能的指令;或者
共享终端200包括二个以上移动配电装置21,移动配电装置21是一个或多个主移动配电装置21A和一个或多个从移动配电装置21B,主移动配电装置21A可通信于服务器10,从移动配电装置21B以通信于主移动配电装置21A的方式通信于服务器10,的主移动配电装置21A和从移动配电装置21B分别执行服务器10的释放被配电对象30的电能的指令。
在一些实施例中,被配电对象30和电能补充站20被一体地设置;或者
被配电对象30可拆卸地收容于电能补充站20,一用电释放指令1021被触发后,被配电对象30被电能补充站20释放电能;或者
被配电对象30被电能补充站20限位地支撑,一用电释放指令1021被触发后,被配电对象30被电能补充站20释放电能。
根据本申请的一个方面,本申请提供一共享终端200,其中共享终端200通信于一服务器10,以执行供电,包括:
一个或多个移动配电装置21,移动配电装置21内置电池,被配电对象30可被移动配电装置21以远离外部电源的方式供电,移动配电装置21可移动地置于一地理区域空间S1中的一个社交空间单位S2,并且每个被配电对象30被移动配电装置21限制是否释放电量;和
一个或多个被配电对象30,其中每个被配电对象30被移动配电装置21供电,被配电对象30被移动配电装置21配置地释放电量。
在一些实施例中,共享终端200包括至少二个移动配电装置21,每个被配电对象30被对应的移动配电装置21供电。
在一些实施例中,被配电对象30一体地设置于移动配电装置21;或者
被配电对象30可拆卸地收容于移动配电装置21;或者
被配电对象30可拆卸地置于移动配电装置21。
在一些实施例中,移动配电装置21被配置为通信于被配电对象30,以限制被配电对象30是否释放电量。
在一些实施例中,被配电对象30可拆卸地收容于移动配电装置21,移动配电装置21具有至少一被配电腔2101以及导通被配电腔2101和外部空间的一释放开口2102,被配电对象30自释放开口2102插拔于被配电腔2101;或者
被配电对象30可拆卸地置于移动配电装置21,移动配电装置21包括一移动配电部210和一配电执行机构213,配电执行机构213被设置于移动配电部210,被配电对象30被移动配电部210供电,被配电对象30被配电执行机构213限位,当移动配电部210执行释放指令时,被配电对象30被释放,其中配电执行机构213是卡位机构或者磁吸机构。
根据本申请的另一个方面,本申请提供一共享租电系统1,包括:
一共享终端200,其中共享终端200包括:
一个或多个移动配电装置21,其中移动配电装置21的至少一个被置一地理区域空间S1中的一个社交空间单位S2;以及
一个或多个被配电对象30,其中每个被配电对象30被电能补充站20供电,被配电对象30被电能补充站20配置地释放电量;以及
一个或多个持电装置22,其中持电装置22被置于同一地理区域空间S1,且移动配电装置21可以被移动至任一持电装置22,以被持电装置22供电。
在一些实施例中,任一移动配电装置21通信于至少一持电装置22;或者
移动配电装置21是二个以上,移动配电装置21包括一个或多个主移动配电装置21A和一个或多个从移动配电装置21B,主移动配电装置21A通信于持电装置22,从移动配电装置21B通信于主移动配电装置21A,以通信于至少一持电装置22;或者
任一被配电对象30通信于至少一持电装置22;或者
被配电对象30是二个以上,被配电对象30包括一个或多个主被配电对象30A和一个或多个被配电对象30,主被配电对象30A通信于持电装置22,从被配电对象30B可通信于主移动配电装置21A,以通信于至少一持电装置22。
在一些实施例中,持电装置22是二个以上,持电装置22包括一个或多个主持电装置22A和一个或多个从持电装置22B,其中:
任一移动配电装置21通信于主持电装置22A;或者
移动配电装置21是二个以上,移动配电装置21包括一个或多个主移动配电装置21A和一个或多个从移动配电装置21B,主移动配电装置21A通信于主持电装置22A,从移动配电装置21B通信于主移动配电装置21A,以通信于主持电装置22A;或者
任一被配电对象30通信于主持电装置22A;或者
被配电对象30是二个以上,被配电对象30包括一个或多个主被配电对象30A和一个或多个被配电对象30,主被配电对象30A通信于主持电装置22A,从被配电对象30B可通信于主移动配电装置21A,以通信于主持电装置22A。
在一些实施例中,共享租电系统1进一步地包括一服务器10,服务器10处理租电相关信息,一个或多个持电装置22可通信于服务器10。
在一些实施例中,共享租电系统1进一步地包括一服务器10,服务器10处理租电相关信息,主持电装置22A可通信于服务器10,从持电装置22B以通信于主持电装置22A的方式通信于服务器10。
根据本申请的另一个方面,本申请提供一移动配电装置21,其中移动配电装置21适于释放一被配电对象30的电能,包括:
至少一移动配电部210,其中移动配电部210可被移动地置于一地理区域空间S1中的一个社交空间单位S2;
至少一蓄电部211,其中蓄电部211存储电能;
一控制模组212,其中控制模组212接收到一释放配电指令1021后处理释放配电指令1021;
一输出部215,以供输出部215用于输出电流。
在一些实施例中,移动配电装置21进一步地包括一输入部214,其中输入部214输入电流至蓄电部211,以存储电能;或者
移动配电装置21包括至少一可拆卸的蓄电部211,蓄电部211和移动配电部210被可拆卸地设置,蓄电部211被拆卸后可被充电。
在一些实施例中,移动配电装置21进一步地包括配电执行机构213,配电执行机构213执行控制模组212发送的执行释放配电指令1021,以释放被限位的被配电对象30,其中:
移动配电装置21具有一移动收容腔2100、至少一被配电腔2101以及导通被配电腔2101和外部空间的一释放开口2102,被配电腔2101和移动收容腔2100被间隔地保持,移动配电部210被容置于移动收容腔2100,以供被配电对象30以被收容于被配电腔2101的方式被配电执行机构213限位;或者
配电执行机构213具有一释放位置和一限位位置,其中配电执行机构213位于限位位置时,配电执行机构213和移动配电部210的表面界定一被配电腔2101,以供被置于移动配电部210的被配电对象30被卡位于移动配电装置21;或者
所配电执行机构213包括一可被通电的感应线圈,当感应线圈被通电时,以磁感应的方式吸引带有磁铁的被配电对象30,当感应线圈停止通电时,被配电对象30可被拿取;或者
移动配电装置21具有一移动收容腔2100,被配电对象30被内置于移动收容腔2100,被配电对象30通信于控制模组212,以供被配电对象30以被置于移动收容腔2100的方式输出电流至设备。
根据本申请的另一个方面,本申请提供一共享租电系统1,其中共享终端200通信于一服务器10,以执行供电,包括:
一个或多个电能补充站20,被配电对象30可被电能补充站20以远离外部电源的方式供电,每个被配电对象30被电能补充站20限制是否释放电量;和
一个或多个被配电对象30,其中每个被配电对象30被移动配电装置21供电,被配电对象30被移动配电装置21配置地释放电量,并且被配电对象30被移动地置于一地理区域空间S1中的一个社交空间单位S2。
在一些实施例中,电能补充站20进一步地包括一个或多个移动配电装置21和一个或多个持电装置22,移动配电装置21可以被移动至持电装置22被充电,持电装置22被置于地理区域空间S1且被电路连接于外部电源,移动配电装置21自带内置电池,移动配电装置21的至少一个被置于地理区域空间S1的一个社交空间单位S2;或者
电能补充站20进一步地包括一个或多个移动配电装置21和一个或多个持电装置22,持电装置22被置于地理区域空间S1且被电路连接于外部电源,移动配电装置21的至少一个被置于地理区域空间S1的一个社交空间单位S2并且被电路连接于外部电源。
在一些实施例中,电能补充站20包括至少二个移动配电装置21,每个被配电对象30被对应的移动配电装置21供电,2个以上移动配电装置21分别被置于独立的社交空间单位S2。
在一些实施例中,被配电对象30一体地设置于移动配电装置21;或者
被配电对象30可拆卸地收容于移动配电装置21;或者
被配电对象30可拆卸地置于移动配电装置21。
在一些实施例中,移动配电装置21被配置为通信于被配电对象30,以限制被配电对象30是否释放电量。
在一些实施例中,被配电对象30可拆卸地收容于移动配电装置21,移动配电装置21具有至少一被配电腔2101以及导通被配电腔2101和外部空间的一释放开口2102,被配电对象30自释放开口2102插拔于被配电腔2101;或者
被配电对象30可拆卸地收容于移动配电装置21,移动配电装置21包括一移动配电部210和一配电执行机构213,配电执行机构213被设置于移动配电部210,被配电对象30被移动配电部210供电,被配电对象30被配电执行机构213限位,当移动配电部210执行释放指令时,被配电对象30被释放,其中配电执行机构213是卡位机构或者磁吸机构。
在一些实施例中,移动配电装置21包括至少一控制模组212、至少一配电执行机构213、至少一输出部215、至少一蓄电部211以及至少一交互处理部216,其中控制模组212、配电执行机构213、输出部215、蓄电部211以及交互处理部216被一体地设置;或者
移动配电装置21包括一移动配电部210和一蓄电部211,移动配电部210和蓄电部211被可拆卸;或者
移动配电装置21包括一移动配电部210、一蓄电部211以及一交互处理部216,移动配电部210、蓄电部211以及交互处理部216被可拆卸地设置;或者
移动配电装置21包括至少一控制模组212、至少一配电执行机构213、至少一输出部215、至少一蓄电部211,其中控制模组212、配电执行机构213、输出部215以及蓄电部211被一体地设置。
在一些实施例中,移动配电装置21包括一移动配电部210和一蓄电部211,移动配电部210和蓄电部211被可拆卸,移动配电部210和储电部的空间关系选自上下叠置、左右贴合地设置、蓄电部211被移动配电部210支撑、移动配电部210被蓄电部211支撑、蓄电部211被插拔地收容于移动配电部210、移动配电部210被可插拔地收容于移动配电部210的类型组。
在一些实施例中,移动配电装置21进一步地包括一输入部214,其中输入部214输入电流至蓄电部211,以存储电能;或者
当移动配电装置21内置电池时,移动配电装置21包括至少一可拆卸的蓄电部211,蓄电部211可拆卸,蓄电部211被拆卸后可被充电。
在一些实施例中,任一移动配电装置21通信于至少一持电装置22;或者
移动配电装置21是二个以上,移动配电装置21包括一个或多个主移动配电装置21A和一个或多个从移动配电装置21B,主移动配电装置21A通信于持电装置22,从移动配电装置21B通信于主移动配电装置21A,以通信于至少一持电装置22;或者
任一被配电对象30通信于至少一持电装置22;或者
被配电对象30是二个以上,被配电对象30包括一个或多个主被配电对象30A和一个或多个从被配电对象30B,主被配电对象30A通信于持电装置22,从被配电对象30B可通信于主移动配电装置21A,以通信于至少一持电装置22。
在一些实施例中,持电装置22是二个以上,持电装置22包括一个或多个主持电装置22A和一个或多个从持电装置22B,其中:
任一移动配电装置21通信于主持电装置22A;或者
移动配电装置21是二个以上,移动配电装置21包括一个或多个主移动配电装置21A和一个或多个从移动配电装置21B,主移动配电装置21A通信于主持电装置22A,从移动配电装置21B通信于主移动配电装置21A,以通信于主持电装置22A;或者
任一被配电对象30通信于主持电装置22A;或者
被配电对象30是二个以上,被配电对象30包括一个或多个主被配电对象30A和一个或多个被配电对象30,主被配电对象30A通信于主持电装置22A,从被配电对象30B可通信于主移动配电装置21A,以通信于主持电装置22A。
在一些实施例中,共享租电系统1进一步地包括一服务器10,服务器10处理租电相关信息,一个或多个持电装置22可通信于服务器10。
在一些实施例中,共享租电系统1进一步地包括一服务器10,服务器10处理租电相关信息,主持电装置22A可通信于服务器10,从持电装置22B以通信于主持电装置22A的方式通信于服务器10。
在一些实施例中,服务器10接收到至少一归还相关信息后,服务器10发送一归还许可指令于电能补充站20或者被置于电能补充站20的被配电对象30,以接收待归还的被配电对象30。
在一些实施例中,被配电对象30满足的被释放条件是至少二个被配电对象30中的电量相对较高的被配电对象30被释放;或者
满足被释放条件的被配电对象30是电量大于最低配电阈值并且可通信于电能补充站20的被配电对象30;或者
满足被释放条件的被配电对象30被实施为电量大于最低配电阈值,被释放条件的被配电对象30的最低配电阈值是60%。
根据本申请的另一个方面,本申请提供一移动配电装置21,其中移动配电装置21适于释放一被配电对象30的电能,包括:
至少一移动配电部210,其中移动配电部210可被移动地置于一地理区域空间S1中的一个社交空间单位S2;
一控制模组212,其中控制模组212接收到一释放配电指令1021后处理释放配电指令1021;以及
一输出部215,输出部215被置于移动配电部210,以供输出部215供电于被配电对象30。
在一些实施例中,控制模组212、输出部215以及移动配电部210被一体地设置;或者
移动配电装置21包括一移动配电部210和一蓄电部211,移动配电部210和蓄电部211被可拆卸;或者
移动配电装置21包括一移动配电部210、一蓄电部211以及一交互处理部216,移动配电部210、蓄电部211以及交互处理部216被可拆卸地设置;或者
移动配电装置21包括一移动配电部210和一交互处理部216,其中移动配电部210和交互处理部216被可拆卸地设置。
在一些实施例中,移动配电装置21进一步地包括一输入部214和一蓄电部211,输入部214被电路连接于蓄电部211,输入部214被长时间电路连接于外部电源,蓄电部211被电路连接于输出部215,输出部215可输出蓄电部211存储的电量;或者
移动配电装置21进一步地包括一输入部214,输入部214被电路连接于蓄电部211,当移动配电部210被置于一持电装置22或者输入部214被电路连接于市电时,输入部214被供电;或者
移动配电装置21包括至少一可拆卸的蓄电部211,蓄电部211可拆卸,蓄电部211被拆卸后可被充电。
在一些实施例中,移动配电装置21包括一移动配电通信单元2121,其中通信单元2121被设置于移动配电部210,通信单元2121用于通信。
在一些实施例中,移动配电装置21进一步地包括配电执行机构213,配电执行机构213执行控制模组212发送的执行释放配电指令1021,以释放被限位的被配电对象30,其中:
移动配电装置21具有一移动收容腔2100、至少一被配电腔2101以及导通被配电腔2101和外部空间的一释放开口2102,移动配电腔和移动收容腔2100被间隔地保持,移动配电部210被容置于移动配电腔,以供被配电对象30以被收容于被配电腔2101的方式被配电执行机构213限位;或者
配电执行机构213具有一释放位置和一限位位置,其中配电执行机构213位于限位位置时,配电执行机构213和移动配电部210的表面界定一被配电腔2101,以供被置于移动配电部210的被释放对象被卡位于移动配电装置21;或者
所配电执行机构213包括一可被通电的感应线圈,当感应线圈被通电时,以磁感应的方式吸引带有磁铁的被配电对象30,当感应线圈停止通电时,以供被配电对象30可被拿取;或者
移动配电装置21具有一移动收容腔2100,被配电对象30被内置于移动收容腔2100,被配电对象30通信于控制模组212,以供被配电对象30以被置于移动收容腔2100的方式输出电流至设备。
在一些实施例中,移动配电装置21的控制模组212被配置地用于一点菜系统、至少一联动游戏、至少一共享供电管理系统。
根据本申请的另一个方面,本申请提供一共享终端200,包括:
一移动配电装置21,其中移动配电装置21包括至少一移动配电部210,移动配电装置21被置于一地理区域空间S1的至少一社交空间单位S2;和
一被配电对象30,其中被配电对象30被置于移动配电装置21的移动配电部210,被配电对象30被移动配电装置21配置地释放电量。
在一些实施例中,移动配电装置21是二个以上,移动配电装置21包括至少二通信单元2121,通信单元2121被设置于一个移动配电部210,移动配电装置21被分别置于一地理区域空间S1的两个独立的社交空间单位S2,一个社交空间单位S2的移动配电装置21的通信单元2121可通信于至少一其他社交空间单位S2的移动配电装置21的通信单元2121、被置于对应移动配电装置21的被配电对象30、被置于其他社交空间单位S2的至少一移动配电装置21的其中至少一个。
根据本申请的另一个方面,本申请提供一共享租电系统1,包括:
一移动配电装置21,其中移动配电装置21包括至少一移动配电部210、一控制模块2122和一通信单元2121,移动配电装置21被置于一地理区域空间S1的至少一社交空间单位S2;
一持电装置22,所持电装置22和移动配电装置21被置于同一地理区域空间S1;和
一服务器10,其中服务器10处理一释放配电指令10211021至持电装置22,持电装置22发送释放配电指令10211021至移动配电装置21的交互处理部216,交互处理部216发送至控制模组212,以处理释放配电指令10211021。
在一些实施例中,移动配电装置21是二个以上,其中一个移动配电装置21的通信单元2121可通信于另一个移动配电装置21的通信单元2121、服务器10以及持电装置22的其中至少一个。
在一些实施例中,共享租电系统1进一步地包括一被配电对象30,被配电对象30可被移动配电装置21和/或持电装置22供电,持电装置22具有一第一持电配电腔2202和一个或多个第二持电配电腔2202,移动配电装置21被置于第一持电配电腔2202,并且移动配电装置21被持电输出部215供电,被配电对象30被置于第二持电配电腔2202,并且被配电对象30被持电输出部215供电;或者
持电装置22具有一持电配电腔2202,移动配电装置21被置于持电配电腔2202,并且移动配电装置21被持电输出部215供电,移动配电装置21可被移动至社交空间单位S2。
在一些实施例中,移动配电装置21是二个以上,移动配电装置21包括一主移动配电装置21A和一从移动配电装置21B,其中:
任一移动配电装置21通信于主持电装置22A;或者
移动配电装置21是二个以上,移动配电装置21包括一个或多个主移动配电装置21A和一个或多个从移动配电装置21B,主移动配电装置21A通信于主持电装置22A,从移动配电装置21B通信于主移动配电装置21A,以通信于主持电装置22A;或者
其中共享租电系统1进一步地包括一被配电对象30,任一被配电对象30通信于主持电装置22A;或者
其中共享租电系统1进一步地包括一被配电对象30,被配电对象30是二个以上,被配电对象30包括一个或多个主被配电对象30A和一个或多个被配电对象30,主被配电对象30A通信于主持电装置22A,从被配电对象30B可通信于主移动配电装置21A,以通信于主持电装置22A。
根据本申请的另一个方面,本申请提供一持电装置22,包括:
一个或多个持电配电部;
一持电控制部;
一持电输入部214,其中持电输入部214用于输入电流;以及
一个或多个持电输出部215,其中持电输入部214和持电输出部215分别电路连接于持电控制部,并且持电输入部214和持电输出部215被设置于持电配电部;
其中持电装置22具有一个或多个持电配电腔2202和导通持电配电腔2202和外部空间的至少一收容开口2202,至少一个持电输出部215被设置于持电配电腔2202,以输出电流至被置于持电配电腔2202的设备。
在一些实施例中,持电配电部是二个以上,2个持电配电部被模块化地设置,两个持电配电部的收容开口2202朝向一致。
在一些实施例中,持电装置22包括至少一持电配电执行单元,至少一配电执行单元被设置于持电配电腔2202,配电执行单元在一卡位位置和一释放位置之间切换,当配电执行单元被保持于卡位位置时,配电执行单元用于卡位,当配电执行单元位于释放位置时,配电执行单元被收纳。
在一些实施例中,持电装置22进一步地包括一持电电池部,持电电池部被电路连接于持电输入部214和持电输出部215,持电电池部存储持电输入部214输入的电流,持电输出部215输出持电电池部存储的电量。
在一些实施例中,持电装置22进一步地包括一持电交互单元,持电交互单元被电路连接于持电控制部,以主动地检测用户特征信息和/或接收租电相关信息。
在一些实施例中,持电控制部包括一持电控制模块和至少一持电通信模块,持电通信模块被电路连接于持电控制模块,持电控制模块用于处理充电相关信息,持电通信模块可通信于一共享租电系统1的其他设备。
在一些实施例中,持电装置22具有一第一持电配电腔2202和一个或多个第二持电配电腔2202,持电输出部215的至少一个被置于第一持电配电腔2202,以供输出电流,充电输出部215的至少一个被置于第二持电配电腔2202,以供输出电流。
在一些实施例中,持电装置22包括至少一持电配电执行单元,至少一配电执行单元被设置于第二持电配电腔2202,配电执行单元在一卡位位置和一释放位置之间切换,当配电执行单元被保持于卡位位置时,配电执行单元用于卡位,当配电执行单元位于释放位置时,配电执行单元被收纳。
根据本申请的另一个方面,本申请提供一共享租电系统1,包括:
一持电装置22,其中持电装置22包括至少一持电输入部214、至少一持电输出部215并且具有一个或多个持电配电腔2202,其中持电输入部214被电路连接于外部电源,以持续带电;以及
一个或多个移动配电装置21,其中移动配电装置21和持电装置22被置于一地理区域空间S1,移动配电装置21以置于持电配电腔2202的方式被持电输出部215供电,移动配电装置21可被移动至地理区域空间S1的一社交空间单位S2。
在一些实施例中,持电装置22包括一被配电对象30,持电装置22具有一第一持电配电腔2202和一个或多个第二持电配电腔2202,移动配电装置21被置于第一持电配电腔2202,并且移动配电装置21被持电输出部215供电,被配电对象30被置于第二持电配电腔2202,并且被配电对象30被持电输出部215供电。
在一些实施例中,持电装置22包括至少二个持电配电部和被设置于每个持电配电部的一持电通信部,持电通信部分别通信于移动配电装置21和/或被配电对象30。
在一些实施例中,共享租电系统1进一步地包括一服务器10,持电装置22包括至少二个持电配电部和被设置于每个持电配电部的一持电通信部,持电通信部分别通信于另一个被设置于持电配电部的持电通信部、服务器10、移动配电装置21以及被配电对象30的其中一个或多个。
在一些实施例中,持电装置22包括一个或多个主持电装置22A和一个或多个从持电装置22B,主持电装置22A的持电通信部通信于另一个被设置于持电配电部的持电通信部、服务器10、移动配电装置21以及被配电对象30的其中一个或多个,从被持电装置22可通信于另一个被设置于持电配电部的持电通信部、移动配电装置21以及被配电对象30的其中一个或多个。
在一些实施例中,在持电控制部接收到一断电相关信息后处理一反供电指令时,持电输出部215可电路连接于被置于持电配电腔2202的移动配电装置21,持电输出部215接收到被置于持电配电腔2202的移动配电装置21的电流,持电电池部存储移动配电装置21发送的电量;或者
在持电控制部接收到一断电相关信息后处理一反供电指令时,持电输出部215可电路连接于被置于持电配电腔2202的被配电对象30,持电输出部215接收到被置于持电配电腔2202的被配电对象30的电流,持电电池部存储被配电对象30发送的电量。
根据本申请的另一个方面,本申请提供一移动配电装置21,其中移动配电装置21适于释放一被配电对象30的电 能,包括:
至少一移动配电部210,其中移动配电部210可被移动地置于一地理区域空间S1中的一个社交空间单位S2;
一控制模组212,其中控制模组212进一步地包括一控制模块和一通信模块,其中控制模块接收到一释放配电指令1021后处理释放配电指令1021,通信模块被电路连接于控制模块,通信模块用于通信;
一输出部215,输出部215被置于移动配电部210,以供输出部215供电于被配电对象30;以及
一交互处理部216,交互处理部216被电路连接于控制模组212,通信模块被电路连接于交互处理部216,交互处理部216可接收指令和/或反馈。
在一些实施例中,控制模组212、输出部215以及移动配电部210被一体地设置;或者
移动配电装置21包括一蓄电部211,移动配电部210和蓄电部211被可拆卸,通信模块被置于移动配电部210;或者
移动配电装置21包括一蓄电部211,移动配电部210、蓄电部211以及交互处理部216被可拆卸地设置,通信模块被置于交互处理部216;或者
移动配电装置21包括一蓄电部211,移动配电部210、蓄电部211以及交互处理部216被可拆卸地设置,通信模块被置于移动配电部210;或者
移动配电部210和交互处理部216被可拆卸地设置,通信模块被置于交互处理部216;或者
移动配电部210和交互处理部216被可拆卸地设置,通信模块被置于移动配电部210。
在一些实施例中,移动配电装置21进一步地包括一输入部214和一蓄电部211,输入部214被电路连接于蓄电部211,输入部214被长时间电路连接于外部电源,蓄电部211被电路连接于输出部215,输出部215可输出蓄电部211存储的电量;或者
移动配电装置21进一步地包括一输入部214,输入部214被电路连接于蓄电部211,当移动配电部210被置于一持电装置22或者输入部214被电路连接于市电时,输入部214被供电;或者
移动配电装置21包括至少一可拆卸的蓄电部211,蓄电部211可拆卸,蓄电部211被拆卸后可被充电。
在一些实施例中,移动配电装置21进一步地包括配电执行机构213,配电执行机构213执行控制模组212发送的执行释放配电指令1021,以释放被限位的被配电对象30,其中:
移动配电装置21具有一移动收容腔2100、至少一被配电腔2101以及导通被配电腔2101和外部空间的一释放开口2102,被配电腔2101和移动收容腔2100被间隔地保持,移动配电部210被容置于被配电腔2101,以供被配电对象30以被收容于被配电腔2101的方式被配电执行机构213限位;或者
配电执行机构213具有一释放位置和一限位位置,其中配电执行机构213位于限位位置时,配电执行机构213和移动配电部210的表面界定一被配电腔2101,以供被置于移动配电部210的被释放对象被卡位于移动配电装置21;或者
配电执行机构213包括一可被通电的感应线圈,当感应线圈被通电时,以磁感应的方式吸引带有磁铁的被配电对象30,当感应线圈停止通电时,以供被配电对象30可被拿取;或者
移动配电装置21具有一移动收容腔2100,被配电对象30被内置于移动收容腔2100,被配电对象30通信于控制模组212,以供被配电对象30以被置于移动收容腔2100的方式输出电流至设备。
在一些实施例中,移动配电装置21包括一主移动配电装置21A和一从移动配电装置21B,其中从移动配电装置21B可短距离通信于主移动配电装置21A,主移动配电装置21A可长距离通信和/或短距离通信;或者
移动配电装置21之间可短距离通信和/或长距离通信。
根据本申请的另一个方面,本申请提供一一共享终端200,包括:
一移动配电装置21,移动配电装置21是至少二个,两个移动配电装置21分别被置于一地理区域空间S1的至少一社交空间单位S2,其中移动配电装置21包括至少一移动配电部210和至少一交互处理部216,一个交互空间单位的移动配电装置21的交互处理部216可通信于至少一个其他交互空间单位的移动配电装置21的交互处理部216;和
一被配电对象30,其中被配电对象30被置于移动配电装置21的移动配电部210,被配电对象30被移动配电装置21配置地释放电量。
在一些实施例中,移动配电装置21是二个以上,移动配电装置21包括至少一通信模块,通信模块被设置于一个移动配电部210,移动配电装置21被分别置于一地理区域空间S1的两个独立的社交空间单位S2,一个社交空间单位S2的移动配电装置21的通信模块可通信于至少一其他社交空间单位S2的移动配电装置21的通信模块、被置于对应移动配电装置21的被配电对象30、被置于其他社交空间单位S2的至少一移动配电装置21的其中至少一个。
在一些实施例中,一个社交空间单位S2的移动配电装置21的通信模块和另一个社交空间单位S2的移动配电装置21的通信模块,并且通信模块被电路连接于交互处理部216,以供至少两个社交空间单位S2的交互处理部216被连接。
在一些实施例中,移动配电装置21被配置地用于一点菜系统、至少一联动游戏、至少一共享供电管理系统。
根据本申请的另一个方面,本申请提供一共享租电系统1,包括:
一移动配电装置21,移动配电装置21是至少二个,两个移动配电装置21分别被置于一地理区域空间S1的至少一社交空间单位S2,其中移动配电装置21包括至少一移动配电部210、至少一交互处理部216和一通信模块,移动配电装置21被置于一地理区域空间S1的至少一社交空间单位S2,以供至少两个社交空间单位S2的交互处理部216被连接;
一个或多个持电装置22所持电装置22和移动配电装置21被置于同一地理区域空间S1,持电装置22被电路连接于外部电源,以供电于移动配电装置21;和
一服务器10,其中服务器10处理一释放配电指令10211021至持电装置22,持电装置22发送释放配电指令10211021至移动配电装置21的交互处理部216,交互处理部216发送至控制模组212,以处理释放配电指令10211021。
在一些实施例中,移动配电装置21是二个以上,其中一个移动配电装置21的通信模块可通信于另一个移动配电装置21的通信模块、服务器10以及持电装置22的其中至少一个。
在一些实施例中,移动配电装置21包括一主移动配电装置21A和一从移动配电装置21B,其中:
任一移动配电装置21通信于持电装置22;或者
持电装置22是二个以上,持电装置22包括一个或多个主持电装置22A和一个或多个从持电装置22B,主移动配电装置21A通信于主持电装置22A,从移动配电装置21B通信于主移动配电装置21A,以通信于主持电装置22A;或者
持电装置22是二个以上,持电装置22包括一个或多个主持电装置22A和一个或多个从持电装置22B,从移动配电装置21B通信于主移动配电装置21A,主移动配电装置21A通信于从持电装置22B,从持电装置22B被电路连接于主持电装置22A,以通信于主持电装置22A;或者
任一被配电对象30通信于持电装置22。
在一些实施例中,共享租电系统1进一步地包括一被配电对象30,被配电对象30可被移动配电装置21和/或持电装置22供电,持电装置22具有一第一持电配电腔2202和一个或多个第二持电配电腔2202,移动配电装置21被置于第一持电配电腔2202,并且移动配电装置21被持电输出部215供电,被配电对象30被置于第二持电配电腔2202,并且被配电对象30被持电输出部215供电;或者
持电装置22具有一持电配电腔2202,移动配电装置21被置于持电配电腔2202,并且移动配电装置21被持电输出部215供电,移动配电装置21可被移动至社交空间单位S2。
在一些实施例中,移动配电装置21包括一主移动配电装置21A和一从移动配电装置21B,其中从移动配电装置21B可短距离通信于主移动配电装置21A,主移动配电装置21A可长距离通信和/或短距离通信;或者
移动配电装置21之间可短距离通信和/或长距离通信;或者
持电装置22被电路连接于外部电源;或者
持电装置22包括一主持电装置22A和一从持电装置22B,主持电装置22A可通信于服务器10,从持电装置22B可通信于主持电装置22A,移动配电装置21可长距离通信于每个主持电装置22A。
在一些实施例中,移动配电装置21被配置地用于一点菜系统、可联动的至少一游戏、至少一共享供电管理系统。
在一些实施例中,移动配电装置21被分别保持于至少一地理区域空间S1的2个社交空间单元,其中移动配电装置21被保持于社交空间单位S2地释放被配电对象30的电能。
在一些实施例中,持电装置22的数量是2个,持电装置22可通信地连接的,以形成一共享供电网。
在一些实施例中,共享租电系统1进一步地包括一服务器10,其中服务器10处理一释放配电指令10211021至持电装置22,持电装置22发送释放配电指令10211021至移动配电装置21的交互处理部216,交互处理部216发送至控制模组212,以处理释放配电指令10211021。
在一些实施例中,移动配电装置21是二个以上,其中一个移动配电装置21的通信单元2121可通信于另一个移动配电装置21的通信单元2121、服务器10以及持电装置22的其中至少一个。
在一些实施例中,共享租电系统1进一步地包括至少一服务终端和一服务器10,服务终端接收到服务器10的至少一配电服务提醒,配电服务提醒被显示或者语音的方式提醒服务人员对移动配电装置21提供蓄电维护服务。
在一些实施例中,满足被释放条件的被配电对象30被实施为电量大于最低配电阈值,被释放条件的被配电对象30的最低配电阈值是30%。
在一些实施例中,共享租电系统1进一步地包括一服务器10,服务器10接收到携带有持电装置22、移动配电装置21或者被配电对象30的至少一设备标识符和用户的用户标识符的一配电相关请求,服务器10生成一释放配电指令1021。
在一些实施例中,共享租电系统1进一步地包括一服务器10,服务器10接收到用户的身份识别码后,发送一接收归还指令于移动配电装置21,移动配电装置21接收被借的被配电对象30,移动配电装置21反馈一归还反馈至服务器10,以结束电能释放。
在一些实施例中,移动配电装置21进一步地包括配电执行机构213,配电执行机构213执行控制模组212发送的执行释放配电指令1021,以释放被限位的被配电对象30,其中:
移动配电装置21具有一移动收容腔2100、至少一被配电腔2101以及导通被配电腔2101和外部空间的一释放开口2102,移动配电腔和移动收容腔2100被间隔地保持,移动配电部210被容置于移动配电腔,以供被配电对象30以被收容于被配电腔2101的方式被配电执行机构213限位;或者
配电执行机构213具有一释放位置和一限位位置,其中配电执行机构213位于限位位置时,配电执行机构213和移动配电部210的表面界定一被配电腔2101,以供被置于移动配电部210的被释放对象被卡位于移动配电装置21;或者
所配电执行机构213包括一可被通电的感应线圈,当感应线圈被通电时,以磁感应的方式吸引带有磁铁的被配电对象30,当感应线圈停止通电时,以供被配电对象30可被拿取;或者
移动配电装置21具有一移动收容腔2100,被配电对象30被内置于移动收容腔2100,被配电对象30通信于控制模组212,以供被配电对象30以被置于移动收容腔2100的方式输出电流至设备。
在一些实施例中,持电装置22接收到服务器10发送的释放配电指令1021后执行释放配电指令1021,持电装置22接收到服务器10发送的释放配电指令1021后发送至被配电对象30;和/或
持电装置22接收到服务器10发送的释放配电指令1021后发送至被配电对象30,被配电对象30和/或移动配电装置21执行释放配电指令1021。
在一些实施例中,被配电对象30内置电池,其中:
被配电对象30被电线连接于用电设备的方式释放电量;和/或
被配电对象30以对接于用电设备的方式释放电量。
在一些实施例中,被配电对象30和移动配电装置21被一体地设置;或者
被配电对象30可拆卸地收容于移动配电装置21,一释放配电指令10211021被触发后,被配电对象30被移动配电装置21释放电能;或者
被配电对象30被移动配电装置21限位地支撑,一释放配电指令10211021被触发后,被配电对象30被移动配电装置21释放电能。
根据本申请的另一个方面,本申请提供至少二个移动配电装置21,两个移动配电装置21分别被置于一地理区域空间S1的至少一社交空间单位S2,其中移动配电装置21包括至少一移动配电部210、一通信部和至少一交互处理部216,一个交互空间单位的移动配电装置21的通信部可通信于同一社交空间单位S2的至少一交互空间单位的移动配电装置21的通信部,以联动两个交互空间单位的移动配电装置21的交互处理部216。
在一些实施例中,移动配电装置21进一步地包括一蓄电部211和一输出部215,输出部215被置于移动配电部210,输出部215被电路连接于蓄电部211,以供输出部215供电于被配电对象30。
在一些实施例中,控制模组212、通信模块、输出部215以及移动配电部210被一体地设置。
在一些实施例中,移动配电装置21进一步地包括一蓄电部211,移动配电部210和蓄电部211被可拆卸,通信模块被置于移动配电部210;或者
移动配电装置21进一步地包括一蓄电部211,移动配电部210、蓄电部211以及交互处理部216被可拆卸地设置,通信模块被置于交互处理部216;或者
移动配电装置21进一步地包括一蓄电部211,移动配电部210、蓄电部211以及交互处理部216被可拆卸地设置,通信模块被置于移动配电部210;或者
移动配电部210和交互处理部216被可拆卸地设置,通信模块被置于交互处理部216;或者
移动配电部210和交互处理部216被可拆卸地设置,通信模块被置于移动配电部210,交互处理部216。
在一些实施例中,移动配电装置21可模块化地被设置,其中移动配电装置21进一步地包括至少一连接机构,至少二个移动配电部210被连接机构可拆卸地连接,其中连接机构是磁吸机构或者卡位机构。
在一些实施例中,共享终端200进一步地包括一被配电对象30,被配电对象30和移动配电装置21被置于同一社交空间单位S2,被配电对象30被限位地置于移动配电装置21的移动配电部210,被配电对象30被移动配电装置21配置地 释放电量。
在一些实施例中,共享终端200进一步地包括一被配电对象30,移动配电装置21是二个以上,移动配电装置21包括至少一通信单元2121,通信单元2121被设置于一个移动配电部210,移动配电装置21被分别置于一地理区域空间S1的两个独立的社交空间单位S2,一个社交空间单位S2的移动配电装置21的通信单元2121可通信于至少一其他社交空间单位S2的移动配电装置21的通信单元2121、被置于对应移动配电装置21的被配电对象30、被置于其他社交空间单位S2的至少一移动配电装置21的其中至少一个。
在一些实施例中,移动配电装置21被配置地用于一点菜系统、至少一联动游戏、至少一共享供电管理系统。
根据本申请的另一个方面,本申请提供一共享租电系统1,包括:
一共享终端200,移动配电装置21是至少二个,两个移动配电装置21分别被置于一地理区域空间S1的至少一社交空间单位S2,其中移动配电装置21包括至少一移动配电部210、至少一交互处理部216和一通信单元2121,移动配电装置21被置于一地理区域空间S1的至少一社交空间单位S2,以供至少两个社交空间单位S2的交互处理部216被连接;
一个或多个持电装置22,所持电装置22和移动配电装置21被置于同一地理区域空间S1;和
一服务器10,其中服务器10处理一释放配电指令10211021至持电装置22,持电装置22发送释放配电指令10211021至移动配电装置21的交互处理部216,交互处理部216发送至控制模组212,以处理释放配电指令10211021。
在一些实施例中,移动配电装置21包括一主移动配电装置21A和一从移动配电装置21B,其中从移动配电装置21B可短距离通信于主移动配电装置21A,主移动配电装置21A可长距离通信和/或短距离通信;或者
移动配电装置21之间可短距离通信和/或长距离通信;或者
移动配电装置21可长距离通信于每个持电装置22;或者
持电装置22包括一主持电装置22A和一从持电装置22B,主持电装置22A可通信于服务器10,从持电装置22B可通信于主持电装置22A,移动配电装置21可长距离通信于每个主持电装置22A。
在一些实施例中,持电装置22包括一个或多个主持电装置22A和可通信于主持电装置22A的一个或多个从持电装置22B,其中:
任一移动配电装置21通信于主持电装置22A;或者
移动配电装置21包括一主移动配电装置21A和一从移动配电装置21B,主移动配电装置21A通信于主持电装置22A个/或从持电装置22B,从移动配电装置21B通信于主移动配电装置21A,以通信于主持电装置22A;或者
共享终端200进一步地包括一被配电对象30,任一被配电对象30通信于主持电装置22A;或者
共享终端200进一步地包括至少二个被配电对象30,被配电对象30包括一个或多个主被配电对象30A和一个或多个被配电对象30,主被配电对象30A通信于主持电装置22A,从被配电对象30B可通信于主移动配电装置21A,以通信于主持电装置22A。
在一些实施例中,共享终端200进一步地包括一被配电对象30,被配电对象30内置电池,其中:
被配电对象30被电线连接于用电设备的方式释放电量;和/或
被配电对象30以对接于用电设备的方式释放电量。
在一些实施例中,共享租电系统1进一步地包括至少一服务终端和一服务器10,服务终端接收到服务器10的至少一配电服务提醒,配电服务提醒被显示或者语音的方式提醒服务人员对移动配电装置21提供蓄电维护服务。
在一些实施例中,满足被释放条件的被配电对象30被实施为电量大于最低配电阈值,被释放条件的被配电对象30的最低配电阈值是30%。
在一些实施例中,共享租电系统1进一步地包括一服务器10,服务器10接收到携带有持电装置22、移动配电装置21或者被配电对象30的至少一设备标识符和用户的用户标识符的一配电相关请求,服务器10生成一释放配电指令1021。
在一些实施例中,共享租电系统1进一步地包括一服务器10,服务器10接收到用户的身份识别码后,发送一接收归还指令于移动配电装置21,移动配电装置21接收被借的被配电对象30,移动配电装置21反馈一归还反馈至服务器10,以结束电能释放。
在一些实施例中,移动配电装置21进一步地包括配电执行机构213,配电执行机构213执行控制模组212发送的执行释放配电指令1021,以释放被限位的被配电对象30,其中:
移动配电装置21具有一移动收容腔2100、至少一被配电腔2101以及导通被配电腔2101和外部空间的一释放开口2102,移动配电腔和移动收容腔2100被间隔地保持,移动配电部210被容置于移动配电腔,以供被配电对象30以被收容于被配电腔2101的方式被配电执行机构213限位;或者
配电执行机构213具有一释放位置和一限位位置,其中配电执行机构213位于限位位置时,配电执行机构213和移动配电部210的表面界定一被配电腔2101,以供被置于移动配电部210的被释放对象被卡位于移动配电装置21;或者
所配电执行机构213包括一可被通电的感应线圈,当感应线圈被通电时,以磁感应的方式吸引带有磁铁的被配电对象30,当感应线圈停止通电时,以供被配电对象30可被拿取;或者
根据本申请的另一个方面,本申请提供一共享供电管理系统,其中共享供电管理系统适于释放至少一被配电对象30的电能,包括:
一配电中心110,其中配电中心110包括至少一配电单元111,配电单元111根据配电请求分配至少一释放配电指令10211021;以及
一策略生成中心130,其中配电中心110包括至少一配电单元111,策略生成中心130包括至少一管理策略生成单元132。
在一些实施例中,共享供电管理系统进一步地包括一电能监控中心150,电能监控中心150可通信于配电中心110的配电单元111,以供实时地监控以得到一电能相关信息,其中至少一被配电对象30和至少一电能补充站20被监控。
在一些实施例中,策略生成中心130包括至少一配电策略生成单元131,配电策略生成单元131根据至少一被配电对象30的状态生成一配电策略,以供当被收容于一起的至少二个被配电对象30中满足配电条件的其中一个被释放。
在一些实施例中,策略生成中心130包括至少一管理策略生成单元132,管理策略生成单元132根据被配电对象30和/或一移动配电装置21的实时状态生成一管理策略,当管理策略生成单元132接收到配电策略生成单元131的电能相关信息以生成一设备管理策略,其中设备管理策略包括单一地理区域空间S1的投递数量,投递时间、充电服务时间的至少其中一个。
在一些实施例中,共享供电管理系统进一步地包括一管理中心120,其中管理中心120包括至少一电能补充站管理模块1211,其中电能补充站管理模块1211被可通信地连接于管理策略生成单元132,其中电能补充站管理模块1211根据管理策略生成单元132生成的管理策略。
在一些实施例中,共享供电管理系统进一步地包括一电能监控中心150,电能监控中心150包括至少一共享终端监控单元151、至少一配电过程监控单元152以及一电能监控单元153,共享终端监控单元151监控共享终端200的实时状态、电量和/或通信信号,配电过程监控单元152监控至少一配电过程中的一被配电对象30的电量状态、位置状态和/或在线通信状态,电能监控单元153得到至少一不同的地理区域环境下的电量租用分布状态,以得到一电量租用地图。
依本申请的另一个方面,本发明提供一持电装置22,包括一个或多个持电配电部220、一持电控制部222以及一个或多个持电输出部215,其中所述持电输出部215分别电路连接于所述持电控制部222,并且所述持电输出部215被设置于所述持电配电部,其中所述持电装置22具有一个或多个持电配电腔2201和导通所述持电配电腔2201和外部空间的至少一收容开口2202,其中所述收容开口2202的方向一致,至少一个所述持电输出部215被设置于所述持电配电腔2201,以输出电流。
依本申请的另一个方面,本发明提供一持电装置22,包括一个或多个持电配电部220、一持电控制部222以及一个或多个持电输出部215,其中所述持电输出部215分别电路连接于所述持电控制部222,并且所述持电输出部215被设置于所述持电配电部,其中所述持电装置22具有一个或多个持电配电腔2201和导通所述持电配电腔2201和外部空间的至少一收容开口2202,其中所述收容开口2202的方向一致,至少一个所述持电输出部215被设置于所述持电配电腔2201,以输出电流。
以上描述了本申请的基本原理、主要特征和本申请的优点。本行业的技术人员应该了解,本申请不受上述实施例的限制,上述实施例和说明书中描述的只是本申请的原理,在不脱离本申请精神和范围的前提下本申请还会有各种变化和改进,这些变化和改进都落入要求保护的本申请的范围内。本申请要求的保护范围由所附的权利要求书及其等同物界定。

Claims (13)

  1. 一移动配电装置,其中所述移动配电装置适于释放一被配电对象的电能,其特征在于,包括:
    至少一移动配电部,其中所述移动配电部可被移动地置于一地理区域空间中的一个社交空间单位;
    一控制模组,其中所述控制模组进一步地包括一控制模块和一通信模块,其中所述控制模块接收到一释放配电指令后处理所述释放配电指令,所述通信模块被电路连接于所述控制模块,所述通信模块用于通信;
    一输出部,所述输出部被置于所述移动配电部,以供所述输出部供电于所述被配电对象;以及
    一交互处理部,所述交互处理部被电路连接于所述控制模组,所述通信模块被电路连接于所述交互处理部,所述交互处理部可接收指令和/或反馈。
  2. 一移动配电装置,其中所述移动配电装置适于释放一被配电对象的电能,其特征在于,包括:
    至少一移动配电部,其中所述移动配电部可被移动地置于一地理区域空间中的一个社交空间单位;
    一控制模组,所述控制模组接收到一释放配电指令后处理所述释放配电指令;以及
    一输出部,所述输出部被置于所述移动配电部,以供所述输出部供电于所述被配电对象。
  3. 根据权利要求1所述的共享租电系统,其中所述控制模组、所述输出部以及所述移动配电部被一体地设置;或者
    所述移动配电装置包括一蓄电部,所述移动配电部和所述蓄电部被可拆卸,所述通信模块被置于所述移动配电部;或者
    所述移动配电装置包括一蓄电部和一交互处理部,所述移动配电部、所述蓄电部以及所述交互处理部被可拆卸地设置,所述通信模块被置于所述交互处理部;或者
    所述移动配电装置包括一蓄电部和一交互处理部,所述移动配电部、所述蓄电部以及所述交互处理部被可拆卸地设置,所述通信模块被置于所述移动配电部;或者
    所述移动配电部和所述交互处理部被可拆卸地设置,所述通信模块被置于所述交互处理部;或者
    所述移动配电部和所述交互处理部被可拆卸地设置,所述通信模块被置于所述移动配电部。
  4. 一持电装置,其特征在于,包括:
    一个或多个持电配电部;
    一持电控制部;
    一持电输入部,其中持电输入部用于输入电流;以及
    一个或多个持电输出部,其中所述持电输入部和所述持电输出部分别电路连接于所述持电控制部,并且所述持电输入部和所述持电输出部被设置于所述持电配电部;
    其中所述持电装置具有一个或多个持电配电腔和导通所述持电配电腔和外部空间的至少一持电收容开口,至少一个所述持电输出部被设置于所述持电配电腔,以输出电流至被置于所述持电配电腔的设备。
  5. 一共享终端,其特征在于,包括:
    至少二个移动配电装置,两个所述移动配电装置分别被置于一地理区域空间的至少一社交空间单位,其中所述移动配电装置包括至少一移动配电部和至少一交互处理部,一个交互空间单位的所述移动配电装置的所述交互处理部可通信于至少一个其他交互空间单位的所述移动配电装置的所述交互处理部;和
    一被配电对象,其中所述被配电对象被置于所述移动配电装置的所述移动配电部,所述被配电对象被所述移动配电装置配置地释放电量。
  6. 根据权利要求6所述的共享终端,其中所述移动配电装置是二个以上,所述移动配电装置包括至少一通信模块,所述通信模块被设置于一个所述移动配电部,所述移动配电装置被分别置于一地理区域空间的两个独立的社交空间单位,一个所述社交空间单位的所述移动配电装置的所述通信模块可通信于至少一其他所述社交空间单位的所述移动配电装置的所述通信模块、被置于对应所述移动配电装置的被配电对象、被置于其他所述社交空间单位的至少一所述移动配电装置的其中至少一个。
  7. 根据权利要求6所述的共享终端,其中一个所述社交空间单位的所述移动配电装置的所述通信模块和另一个社交空间单位的所述移动配电装置的所述通信模块,并且所述通信模块被电路连接于所述交互处理部,以供至少两个所述社交空间单位的所述交互处理部被连接。
  8. 根据权利要求6所述的共享终端,其中所述移动配电装置被配置地用于一点菜系统、至少一联动游戏、至少一共享供电管理系统。
  9. 一共享租电系统,其特征在于,包括:
    一移动配电装置,所述移动配电装置是至少二个,两个所述移动配电装置分别被置于一地理区域空间的至少一社交空间单位,其中所述移动配电装置包括至少一移动配电部、至少一交互处理部和一通信模块,所述移动配电装置被置于一地理区域空间的至少一社交空间单位,以供至少两个所述社交空间单位的所述交互处理部被连接;
    一个或多个持电装置,所持电装置和所述移动配电装置被置于同一地理区域空间,所述持电装置被电路连接于外部电源,以供电于所述移动配电装置;和
    一服务器,其中所述服务器处理一用电释放指令至所述持电装置,所述持电装置发送所述用电释放指令至所述移动配电装置的所述交互处理部,所述交互处理部发送至所述控制模组,以处理所述用电释放指令。
  10. 一移动配电装置,其中所述移动配电装置适于释放一被配电对象的电能,其特征在于,包括:
    至少一移动配电部,其中所述移动配电部可被移动地置于一地理区域空间中的一个社交空间单位;
    至少一蓄电部,其中所述蓄电部存储电能;
    一控制模组,其中所述控制模组接收到一释放配电指令后处理所述释放配电指令;
    一输出部,以供所述输出部用于输出电流。
  11. 一共享供电管理系统,其中所述共享供电管理系统适于释放至少一被配电对象的电能,其特征在于,包括:
    一配电中心,其中所述配电中心包括至少一配电单元,所述配电单元根据配电请求分配至少一用电释放指令;以及
    一策略生成中心,其中所述配电中心包括至少一配电单元,所述策略生成中心包括至少一管理策略生成单元。
  12. 一共享方法,其特征在于,包括以下步骤:
    (s001)至少一用户请求被触发后,生成一指令;和
    (s002)藉由被保持于一社交空间单位的至少一共享终端,在接收到所述指令后执行所述指令。
  13. 一共享租电系统,其特征在于,包括:
    至少二移动配电装置,至少一所述移动配电装置被置于一地理区域空间的至少一社交空间单位,以供至少两个所述社交空间单位的所述交互处理部被连接;
    一个或多个持电装置所持电装置和所述移动配电装置被置于同一地理区域空间,所述持电装置被电路连接于外部电源,以供电于所述移动配电装置;和
    一服务器,其中所述服务器处理一用电释放指令至所述持电装置,所述持电装置发送所述用电释放指令至所述移动配电装置的所述交互处理部,所述交互处理部发送至所述控制模组,以处理所述用电释放指令;
    其中所述移动配电装置被配置地用于一点菜系统、可联动的至少一游戏、至少一共享供电管理系统。
PCT/CN2022/138122 2021-12-09 2022-12-09 共享租电系统 WO2023104204A1 (zh)

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