CN106982263B - Universal power transmission and network communication method and functional suite - Google Patents

Universal power transmission and network communication method and functional suite Download PDF

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Publication number
CN106982263B
CN106982263B CN201710328643.2A CN201710328643A CN106982263B CN 106982263 B CN106982263 B CN 106982263B CN 201710328643 A CN201710328643 A CN 201710328643A CN 106982263 B CN106982263 B CN 106982263B
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module
power
information
universal
universal interface
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CN106982263A (en
Inventor
储瑞忠
陆涛
张李铭
孙荣
张扬
陆继立
李英杰
王志杰
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Beijing Hanke Technology Group Co ltd
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Beijing Hanke Technology Group Co ltd
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/12Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks
    • H04L67/125Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks involving control of end-device applications over a network
    • H02J13/0013
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/08Network architectures or network communication protocols for network security for authentication of entities
    • H04L63/0876Network architectures or network communication protocols for network security for authentication of entities based on the identity of the terminal or configuration, e.g. MAC address, hardware or software configuration or device fingerprint
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/12Applying verification of the received information
    • H04L63/126Applying verification of the received information the source of the received data
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/12Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks

Abstract

The invention discloses a general power transmission and network communication method and a functional suite, wherein the general power transmission and network communication functional suite comprises the following components: the information management module is used for executing the operation corresponding to the information type according to the received information type; the power supply management module is in circuit connection with the public power supply line, the universal interface module and the information management module and is used for controlling and monitoring parameters of a circuit where the modules are positioned; the universal interface module is used for providing a standardized power interface and a standardized communication interface for external equipment on the universal interface module; and the fixedly connecting assembly is used for fixing and connecting the power line pole. By the technical scheme of the invention, a standardized universal interface is provided, the access condition of a wide area network is provided, the power supply requirements of power and safety are met, and meanwhile, the stability and maintainability of the system are improved.

Description

Universal power transmission and network communication method and functional suite
Technical Field
The present invention relates to the field of power transmission, and in particular, to a universal power transmission and network communication method and a universal power transmission and network communication functional suite.
Background
At present, the power transmission network and the basic information network serve as core contents of modern urban and rural public infrastructure conditions, and the intensive and intelligent construction and development of the power transmission network and the basic information network become the key of novel urban construction. In the existing urban and rural public infrastructure, based on an intelligent lighthouse or an intelligent lighthouse of urban road lightposts, a controller, a wireless signal receiving and transmitting unit, and functional systems such as environment sensing monitoring, video voice help seeking, network multimedia information release, video monitoring, mobile communication micro base stations, wireless WI-FI, charging service and the like are additionally arranged for the municipal light posts of the traditional concept, so that the existing urban road lamp resources can be utilized, and a certain positive effect can be really played for relieving the repeated construction difficulty of the current intelligent urban and rural development.
However, retrofitting existing municipal light poles has the following problems: firstly, the universal interface is not standardized, and the butt joint installation requirements of various public information service equipment on demand configuration and strain adjustment cannot be met; secondly, the existing foundation cannot be supported, and electric energy power with enough power and safe use can be provided; thirdly, the access condition of wide area interconnection/internet of things is not provided.
Specifically, if the wireless signal transceiver unit is used as the standard inherent configuration of the smart lighthouse and the smart lamp post, although conditions are created for the smart lighthouse and the smart lamp post to be connected to the wide area interconnection/internet of things, the wireless signal transceiver unit is limited by the coverage range of mobile (wireless) communication signals and the communication capacity of a base station in layout, and the huge data volume of the multi-point synchronous transmission real-time video brings great pressure to the bandwidth of the mobile (wireless) communication, so that the normal use of other mobile (wireless) communication users is likely to be interfered and influenced; if the wireless signal transceiver unit is not the standard intrinsic configuration of the smart lighthouse and the smart lamp post, it is necessary to install an independent mobile (wireless) communication unit for all the functional terminals, which does not solve the above-mentioned problems, but also brings about greater resource waste.
Taking charging service as an example, if the charging service requirement is only normalized for low-power mobile electric equipment such as urban and rural resident mobile phones and even electric bicycles, the charging service requirement can be really met by relying on the existing municipal road lamplight power grid, but the required load is difficult to bear by the initial planning for high-power charging requirements such as electric vehicles which are concurrent in the same line and multiple places, and the existing municipal road lamplight power grid limited to public lighting is difficult to bear.
Disclosure of Invention
In view of at least one of the above problems, the present invention provides a universal power transmission and network communication function suite, which reads or receives information or instructions through an information management module, executes corresponding operations on devices externally connected to a universal interface module, and sends the corresponding information or instructions to corresponding users, and a power supply management module controls and monitors circuit parameters between the modules according to the received instructions of the information management module, so as to provide a standardized universal interface, provide access conditions of a wide area network through external network communication equipment, and meet power supply requirements of power and security through connection of the power supply management module and a public power supply line.
To achieve the above object, the present invention provides a universal power transmission and network communication function kit, including: the information management module is used for executing the operation corresponding to the information type according to the received information type; the power supply management module is connected with the public power supply line, and is also respectively connected with the universal interface module and the information management module in a circuit manner and used for controlling and monitoring parameters of a circuit where the modules are positioned; the universal interface module is used for providing a standardized power interface and a standardized communication interface for external equipment on the universal interface module; the fixedly connecting assembly is used for fixing and connecting with the power line pole.
In the technical scheme, the universal power transmission and network communication function kit is used for a power line pole, information or instructions of equipment externally connected with a universal interface module are read or received through an information management module, a power supply is started or stopped for the equipment externally connected with the universal interface module through a power supply management module, or the processed information is sent to a corresponding user through the equipment externally connected with the universal interface module, the power supply management module controls and monitors circuit parameters among the modules according to the received instructions of the information management module, the universal interface module provides a standardized universal interface, the access condition of a wide area network is provided through the externally connected network communication equipment, and the power supply requirements of power and safety are met through the connection of the power supply management module and a public power supply circuit. The power supply management module is connected with the universal interface module and the information management module and provides power for all the sub-modules or the external equipment. The information processing module can also directly send control signals to components such as a sensor and the like externally connected with the universal interface module according to the information such as the control instruction received by the communication control submodule, and control the operation of external equipment.
In the above technical solution, preferably, the information management module specifically includes an identity information sub-module, an information processing sub-module, a communication control sub-module, and a data storage sub-module; the communication control sub-module is connected with the universal interface module and is used for sending the data information sent by the information processing sub-module to the connected appointed user and receiving the data information sent by the connected external equipment; the identity information sub-module is respectively connected with the communication control sub-module and the information processing sub-module and is used for accessing the identity information and the installation position information of the universal power transmission and network communication function suite; the information processing sub-module is connected with the data storage sub-module, and is also connected with the power supply management module and the universal interface module and used for receiving and processing data information sent by external equipment connected with the universal interface module and the communication control sub-module; the data storage sub-module is used for storing the data information of the information processing sub-module and backing up the local data.
In the technical scheme, the information management module comprises an identity information sub-module, an information processing sub-module, a communication control sub-module and a data storage sub-module. The communication control sub-module is connected with external network communication equipment which is configured on the universal interface module according to the requirement, receives the control instruction information sent by the remote control end and received by the network communication equipment, and forwards the data information sent by the information processing sub-module to a designated user through the network communication equipment. The external network communication equipment is connected in a wired or wireless mode, and correspondingly, data communication through the network communication equipment is wired or wireless communication.
The identity information submodule is used for storing and reading unique identity information and accurate installation position information of the functional suite, after the communication control submodule receives a control signal sent by a remote control end through wide area interconnection/Internet of things broadcasting through external network communication equipment, the communication control submodule verifies the received control signal according to the unique identity information of the corresponding power line pole, and confirms whether the control signal is a signal for controlling the functional suite installed on the corresponding power line pole, if so, the control signal is sent to the information processing submodule, and if not, the control signal is not processed, so that distributed management and control of the power transmission and communication functional equipment are realized.
The information processing sub-module is used for collecting and processing data information sent by equipment externally connected with the universal interface module and data information sent by external equipment externally connected with the communication control sub-module, superposing identity information sent by the identity information sub-module, carrying out grading and coding compression on the received data information according to requirements and sending the data information to the communication control sub-module, and simultaneously processing and executing instruction information sent by a remote control end received by the communication control module. For example, the information processing sub-module sends the signal to the power control sub-module, and the power control sub-module turns off the switch of the circuit where the corresponding universal interface is located. Or a signal for controlling the operation of an external video monitor on a certain universal interface of the universal interface module, and after the information processing sub-module sends the instruction signal for switching on the power supply to the power supply control sub-module, an operation control signal is sent to the external video monitor so as to control the video monitor to monitor in a preset mode.
The data storage sub-module stores the related data information of the information processing sub-module according to the needs in a classified mode, and provides emergency backup of local data when power is accidentally cut off and network is disconnected, so that maintainability and stability of the system are improved.
In the above technical solution, preferably, the universal power transmission and network communication function suite further includes a backup power module, and the power management module further includes a power control sub-module and a circuit monitoring sub-module that are connected with each other; the power supply control sub-module and the circuit monitoring sub-module are connected with a public power supply line, the power supply control sub-module is directly connected with the high-power universal interface, the power supply control sub-module is connected with the backup power supply module, the backup power supply module is respectively connected with each sub-module of the low-power universal interface group and the information management module, the power supply control sub-module is also in communication connection with the information processing sub-module, and the power supply control sub-module is used for controlling the circuit on-off of each universal interface in the universal interface module according to the data information of the information management module; the circuit monitoring submodule is respectively connected with each submodule of the information management module and a circuit where each universal interface in the universal interface module is located, and is used for monitoring circuit parameters of each circuit in the universal interface module and sending the circuit parameters to the information processing submodule.
In the technical scheme, because the network communication equipment or the information terminal functional equipment is externally connected to the low-power universal interface group, the power supply control submodule is connected with each submodule of the low-power universal interface group and the information management module through the standby power supply module, in the normal use process, a part of electric energy is stored while the power is supplied to each submodule of the low-power universal interface group and the information management module, when the universal power transmission and network communication functional suite is accidentally powered off, the standby power supply module continues to supply power to the information management module and the low-power universal interface group, simultaneously, the information processing submodule and the data storage submodule send data acquisition, data transmission and data backup instructions, simultaneously, the necessary power supply conditions are provided for the equipment corresponding to the data acquisition, data processing analysis and data transmission processes, the stability and the safety of the backup data of each equipment are ensured when the power failure occurs, the fault reasons of the system are definitely confirmed according to the feedback error codes, and the maintenance efficiency and the convenience of remote control of the system are improved.
In the above technical solution, preferably, the above general interface module includes a low power general interface group and a high power general interface group, the low power general interface group includes at least two low power general interfaces, the high power general interface group includes at least two high power general interfaces, and the low power general interface group and the high power general interface group are all in communication connection with the information processing sub-module.
In the technical scheme, the universal interface module is divided into a low-power universal interface group and a high-power universal interface group, the number, the form and the installation position of the high-power universal interface group and the low-power universal interface group can be determined according to the needs, preferably, the low-power universal interface group is arranged on the upper part and the bottom of a power line pole, comprises a power line power supply switching low-power universal power interface and a universal communication interface and is used for being connected with public lighting, marking signal lamplight, a mobile communication micro base station, public WIFI equipment, wireless positioning equipment, video monitoring equipment, environment monitoring equipment and other equipment which are suitable for the universal interface standard, the high-power universal interface group is arranged on the lower part and the bottom of the power line pole, comprises a power line power supply switching providing universal power interface and a universal communication interface, and is used for being connected with a user end power transmission and charging adapter which is suitable for the universal interface standard and has larger power requirements or is connected with various buried power cables according to the needs, and the wide area distributed charging service requirements of various electric ground vehicles, electric aircrafts, electric tools, electric farm tools and other mobile electric equipment and mobile electric equipment are met.
In the above technical solution, preferably, the low-power universal interface is connected with an external network communication device and/or a terminal function device, and the high-power universal interface is connected with an external power adapter.
In the technical scheme, the terminal function equipment comprises public lighting, sign signal light, a mobile communication micro base station, wireless positioning equipment, video monitoring equipment and environment monitoring equipment, and the network communication equipment comprises WiFi equipment, zigBee communication equipment and mobile communication equipment. The power adapter converts a standard high power supply to a corresponding dc or ac power supply as required by the different device. The two interfaces are respectively connected with equipment with different power requirements, so that the power demand of common equipment is met, and meanwhile, special power configuration transmission and unified allocation are provided for the popular power consumption of high-power electric equipment, so that the universality and the functionality of the universal power transmission and network communication function suite are improved.
In the above technical solution, preferably, the universal power transmission and network communication function kit further includes an identity information identifier, which is used for displaying detailed information of the power line pole or an acquisition mode thereof.
In the technical scheme, the identity information mark is arranged at an external striking position of the power line pole, and comprises numerals, characters, bar codes, two-dimensional codes and the like, and the identity information mark can directly read or read the detailed information such as the functional characteristics, the identity mark and the like of the power line pole by means of other equipment. By setting the identity information mark, the identifiability of the universal power transmission and network communication function suite matched with the power line pole is improved.
According to the present invention, a universal power transmission and network communication method is provided, which is used for the universal power transmission and network communication function suite, and includes: transmitting the received data information of the external network communication equipment to an information processing sub-module; according to the type of the data information, the communication control sub-module sends the data information processed by the information processing sub-module to a designated user or a power supply management module; the power supply management module controls and monitors a power switch of the corresponding universal interface module according to the received data information; according to the received data information sent by the information processing module, forwarding the data information to external network communication equipment; and storing the data information in a classified mode.
In the technical scheme, the identity information sub-module sends the received data information of the external network communication equipment to the information processing sub-module, and the information processing sub-module processes the data information received by the external equipment connected through the universal interface module or the data information received by the identity information sub-module, sends a processing result to a designated user through the network communication equipment externally connected with the universal interface module, and sends a control instruction and a control parameter to the power supply management module. And the power supply management module supplies power or cuts off power to the circuits of the corresponding universal interface modules according to the received control instruction and the control parameter, and supplies power or cuts off power to each component in the information management module. Meanwhile, the power supply management module monitors the working condition of the circuit and the circuit power output parameters of all the universal interface modules and sends the working condition and the circuit power output parameters to the information management sub-module so as to cut off the power supply in time when the power output parameters are abnormal or the circuit fails, and the running stability and the safety of the universal power transmission and network communication function suite are ensured.
Compared with the prior art, the invention has the beneficial effects that: the power supply management module controls and monitors circuit parameters among the modules according to the received instructions of the information management module, provides a standardized universal interface, has access conditions of a wide area network through the external network communication equipment, and meets power supply requirements of power and safety through connection of the power supply management module and a public power supply line.
Drawings
Fig. 1 is a schematic diagram of a system architecture of a universal power transmission and network communication functional suite according to an embodiment of the present invention;
FIG. 2 is a schematic diagram illustrating the connection of a system of universal power transfer and network communication functional packages according to an embodiment of the present invention;
fig. 3 is a schematic block diagram of a downlink communication flow of a universal power transmission and network communication functional suite according to an embodiment of the present invention;
FIG. 4 is a schematic block diagram of an uplink communication flow of a universal power transmission and network communication functional suite according to one embodiment of the present invention;
fig. 5 is a schematic block diagram of a general power transmission and network communication method according to an embodiment of the present invention.
In the figure, the correspondence between each component and the reference numeral is:
10. the system comprises a general power transmission and network communication function suite, 11, an information management module, 111, an identity information sub-module, 112, an information processing sub-module, 113, a communication control sub-module, 114, a data storage sub-module, 12, a general interface module, 121, a low power general interface group, 122, a high power general interface group, 13, a power supply management module, 131, a power supply control sub-module, 132, a circuit monitoring sub-module, 14, a fixedly connected component, 15, an identity information identifier and 16, a backup power supply module.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the embodiments of the present invention more apparent, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is apparent that the described embodiments are some embodiments of the present invention, but not all embodiments of the present invention. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
The invention is described in further detail below with reference to the attached drawing figures:
as shown in fig. 1 to 4, a universal power transmission and network communication function kit 10 according to the present invention includes: the information management module 11 is configured to execute an operation corresponding to the information type according to the received information type; the power supply management module 13, the power supply management module 13 is connected with a public power supply line, and the power supply management module 13 is also respectively connected with the universal interface module 12 and the information management module 11 in a circuit manner and is used for controlling and monitoring parameters of a circuit where the modules are positioned; the universal interface module 12 is used for providing a standardized power interface and a standardized communication interface for external devices on the universal interface module 12; and a fixed connection assembly 14 for fixing and connecting with the power line pole.
In this embodiment, the above-mentioned universal power transmission and network communication function kit 10 is used for a power line pole, reads or receives information or instructions of devices externally connected to the universal interface module 12 through the information management module 11, and turns on or off a power supply to the devices externally connected to the universal interface module 12 through the power supply management module 13, or sends the processed information to a corresponding user through the devices externally connected to the universal interface module 12, the power supply management module 13 controls and monitors circuit parameters between the modules according to the received instructions of the information management module 11, the universal interface module 12 provides a standardized power interface and a standardized communication interface, the access condition of a wide area network is provided through the externally connected network communication device, and the power supply requirement of power and security is satisfied through the connection of the power supply management module 13 and a public power supply line. The power supply management module 13 is connected with the universal interface module 12 and the information management module 11 and provides power for each sub-module or external equipment. The information processing module may also directly send a control signal to components such as a sensor externally connected to the universal interface module 12 according to the information such as the control instruction received by the communication control sub-module 113, so as to control the operation of the external device.
In the above embodiment, the above information management module 11 preferably specifically includes an identity information sub-module 111, an information processing sub-module 112, a communication control sub-module 113, and a data storage sub-module 114; the communication control sub-module 113 is connected to the universal interface module 12, and is configured to send the data information sent by the information processing sub-module 112 to the connected designated user, and receive the data information sent by the connected external device; the identity information sub-module 111 is connected to the communication control sub-module 113 and the information processing sub-module 112, respectively, and is used for accessing the identity information and the installation position information of the universal power transmission and network communication function suite 10; the information processing sub-module 112 is connected with the data storage sub-module 114, and the information processing sub-module 112 is also connected with the power supply management module 13 and the universal interface module 12, and is used for receiving and processing data information sent by external devices connected with the universal interface module 12 and the communication control sub-module 113; the data storage sub-module 114 is used for storing data information of the information processing sub-module 112 and for backing up local data.
In this embodiment, specifically, the information management module 11 includes an identity information sub-module 111, an information processing sub-module 112, a communication control sub-module 113, and a data storage sub-module 114. The communication control sub-module 113 is connected to an external network communication device configured on the universal interface module 12 as required, receives the control instruction information sent by the remote control end and received by the network communication device, and forwards the data information sent by the information processing sub-module 112 to the designated user through the network communication device. The external network communication equipment is connected in a wired or wireless mode, and correspondingly, data communication through the network communication equipment is wired or wireless communication.
The identity information sub-module 111 is configured to store and read unique identity information and accurate installation location information of the functional suite accessing to the wide area internet of things, and after the communication control sub-module 113 receives a control signal sent by the remote control end through the wide area internet of things through an external network communication device, verify, according to the unique identity information of the corresponding power line pole, the received control signal, to determine whether the control signal is a signal for controlling the functional suite installed on the corresponding power line pole, if yes, send the control signal to the information processing sub-module 112, if not, do not process the control signal, thereby implementing distributed management and control of the power transmission and communication functional device.
The information processing sub-module 112 is configured to collect and process data information sent by a device externally connected to the universal interface module 12 and data information sent by an external device externally connected to the communication control sub-module 113, superimpose identity information sent by the identity information sub-module 111, perform grading and code compression on the received data information as required, and send the data information to the communication control sub-module 113, and process and execute instruction information sent by a remote control end received by the communication control module. For example, the information processing sub-module 112 sends a signal for controlling a certain universal interface of the universal interface module 12 to implement power-off to the power control sub-module 131, and the power control sub-module 131 turns off a switch of a circuit where the corresponding universal interface is located. Or a signal for controlling the video monitor connected to a certain universal interface of the universal interface module 12 to start operating, the information processing sub-module 112 sends an operation control signal to the external video monitor after sending an instruction signal for switching on the power to the power control sub-module 131, so as to control the video monitor to monitor in a preset manner.
The data storage sub-module 114 stores the relevant data information of the information processing sub-module 112 in a classified manner as needed and provides emergency backup of local data in case of unexpected power failure or network disconnection to improve maintainability and stability of the system.
In the above embodiment, the universal power transmission and network communication function kit 10 further includes a backup power module 16, and the power management module 13 further includes a power control sub-module 131 and a circuit monitoring sub-module 132 that are connected to each other; the power supply control sub-module 131 and the circuit monitoring sub-module 132 are connected with a public power supply line, the power supply control sub-module 131 is directly connected with a high-power universal interface, the power supply control sub-module 131 is connected with the backup power supply module 16, the backup power supply module 16 is respectively connected with the low-power universal interface group 121 and each sub-module of the information management module 11, the power supply control sub-module 131 is also in communication connection with the information processing sub-module 112 and is used for controlling the on-off of a circuit of each universal interface in the universal interface module 12 according to the data information of the information management module 11; the circuit monitoring sub-module 132 is respectively connected to each sub-module of the information management module 11 and a circuit where each universal interface in the universal interface module 12 is located, and is configured to monitor a circuit parameter of each circuit in the universal interface module 12, and send the circuit parameter to the information processing sub-module 112.
In this embodiment, since the low-power universal interface group 121 is externally connected with a network communication device or an information terminal function device, the power control sub-module 131 is connected with each sub-module of the low-power universal interface group 121 and the information management module 11 through a standby power module, and stores a part of electric energy while supplying power to each sub-module of the low-power universal interface group 121 and the information management module 11 in the normal use process, when the universal power transmission and network communication function suite 10 is accidentally powered off, the backup power module 16 continues to supply power to the information management module 11 and the low-power universal interface group 121, and simultaneously sends instructions of data acquisition, data transmission and data backup to the information processing sub-module 112 and the data storage sub-module 114, and simultaneously sends instructions of data backup and data transmission to the external devices, thereby providing necessary power conditions for the corresponding devices in the data acquisition, data processing analysis and data transmission processes, ensuring the stability and normal shutdown of each device backup data when the power outage occurs, and ensuring the stability and safety of the system operation, and improving the maintenance efficiency and the convenience of remote control of the system according to the feedback error codes.
Preferably, the power control sub-module 131 includes a circuit breaker, and the circuit monitoring sub-module 132 is a device for measuring voltage or current, and the backup power module 16 corresponds to a rechargeable battery.
In the above embodiment, the above general interface module 12 preferably includes a low-power general interface group 121 and a high-power general interface group 122, the low-power general interface group 121 includes at least two low-power general interfaces, the high-power general interface group 122 includes at least two high-power general interfaces, and the low-power general interface group 121 and the high-power general interface group 122 are all communicatively connected to the information processing sub-module 112.
In this embodiment, the universal interface module 12 is divided into a low-power universal interface group 121 and a high-power universal interface group 122, the number, form and installation position of the high-power universal interface group 122 and the low-power universal interface group 121 can be determined according to the requirement, preferably, the low-power universal interface group 121 is arranged at the upper part and the bottom of the power line pole, and comprises a power line power supply switching low-power universal power interface and a universal communication interface for being assembled and connected with devices such as public lighting, sign signal light, a mobile communication micro base station, public WIFI equipment, wireless positioning equipment, video monitoring equipment and environment monitoring equipment which are adapted to the universal interface standard, the high-power universal interface group 122 is arranged at the lower part and the bottom of the power line pole, and comprises a power line power supply switching providing standardized power interface and a communication interface for being assembled and connected with a user terminal power transmission, a charging adapter which is adapted to the universal interface standard and has a large power requirement or being connected with various ground-buried power cables according to the requirement, so as to meet the wide-area distributed charging service requirements of various electric ground vehicles, electric aircrafts, electric tools, electric farm tools and other mobile electric farm tools.
In the above embodiment, preferably, the low-power universal interface is connected to an external network communication device and/or a terminal function device, and the high-power universal interface is connected to an external power adapter.
In this embodiment, the terminal function device includes public lighting, sign signal light, mobile communication micro base station, wireless positioning device, video monitoring device, environment monitoring device, and the network communication device includes WiFi device, zigBee communication device, mobile communication device. The power adapter converts a standard high power supply to a corresponding dc or ac power supply as required by the different device. The two interfaces are respectively connected with equipment with different power requirements, so that the power demand of common equipment is met, and meanwhile, special power configuration transmission and unified allocation are provided for the popular power consumption of high-power electric equipment, so that the universality and the functionality of the universal power transmission and network communication function suite 10 are improved.
In the above embodiment, the universal power transmission and network communication function set 10 preferably further includes an identity information identifier 15 for displaying the detailed information of the power pole or the acquisition mode thereof.
In this embodiment, the identity information identifier 15 is disposed at an external striking position of the power pole, and the identity information identifier 15 includes details such as numerals, characters, bar codes, two-dimensional codes, etc. that can be directly interpreted or read by other devices. By providing the identity information tag 15, the recognizability of the universal power transmission and network communication function kit 10 matched with the power pole is improved.
Specifically, the connection modes of the power supply lines and the data communication lines between the components in the universal power transmission and network communication function set 10 are shown in fig. 2, and the data communication modes in the downstream direction and the upstream direction between the components in the universal power transmission and network communication function set 10 are shown in fig. 3 and 4, respectively.
It should be noted that, the universal power transmission and network communication function set 10 may be connected to different external function devices through the universal interface module 12, where the external function devices are not inherent components of the function set, and may flexibly connect different devices to the universal interface according to the needs, and the function set only provides a standardized assembly interface, i.e. the network communication device, the terminal function device, and the power adapter are not components of the universal power transmission and network communication function set 10, but are devices that may be selectively connected to the universal interface of the universal power transmission and network communication function set 10 according to the specific practical process of the present invention.
As shown in fig. 5, a general power transmission and network communication method according to an embodiment of the present invention is used for the general power transmission and network communication function suite 10, and includes: step S21, the received data information of the external network communication device 16 is sent to the information processing sub-module 112; step S22, according to the type of the data information, the communication control sub-module 113 sends the data information processed by the information processing sub-module 112 to the designated user or the power supply management module 13; step S23, the power supply management module 13 controls and monitors the power switch of the corresponding universal interface module 12 according to the received data information; step S24, forwarding the data information to the external network communication equipment 16 according to the received data information sent by the information processing module; step S25, the data information is stored in a classified mode.
In this embodiment, the identity information sub-module 111 sends the received data information of the external network communication device 16 to the information processing sub-module 112, and after the information processing sub-module 112 processes the data information received by the external device connected through the universal interface module 12 or the data information received by the identity information sub-module 111, the processing result is sent to a designated user through the network communication device externally connected to the universal interface module 12, and a control instruction and a control parameter for the power supply management module 13 are sent to the power supply management module 13. The power supply management module 13 supplies power or powers off the circuits of the corresponding universal interface module 12 and supplies power or powers off the components in the information management module 11 according to the received control command and control parameter. Meanwhile, the power supply management module 13 monitors the working condition of the circuit and the circuit power output parameters of the universal interface modules 12 and sends the working condition and the circuit power output parameters to the information management sub-module so as to cut off the power supply in time when the power output parameters are abnormal or the circuit fails, thereby ensuring the running stability and the safety of the universal power transmission and network communication function suite 10.
The invention provides a universal power transmission and network communication function kit, which is used for reading or receiving information or instructions through an information management module, executing corresponding operations on equipment externally connected to the universal interface module and sending the corresponding information or instructions to corresponding users, wherein the power supply management module is used for controlling and monitoring circuit parameters among the modules according to the received instructions of the information management module, providing a standardized universal interface, providing access conditions of a wide area network through external network communication equipment, and meeting power supply requirements of power and safety through connection of the power supply management module and a public power supply line.
The above is only a preferred embodiment of the present invention, and is not intended to limit the present invention, but various modifications and variations can be made to the present invention by those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (5)

1. A universal power transmission and network communication function kit for a power pole, comprising:
the information management module is used for executing the operation corresponding to the information type according to the received information type;
the power supply management module is connected with the public power supply line, and is also respectively connected with the universal interface module and the information management module in a circuit manner and used for controlling and monitoring parameters of a circuit where the modules are positioned;
the universal interface module is used for providing a standardized power interface and a standardized communication interface for external equipment on the universal interface module;
the fixedly connected assembly is used for fixing and connecting with the power line pole;
the information management module specifically comprises an identity information sub-module, an information processing sub-module, a communication control sub-module and a data storage sub-module;
the communication control sub-module is connected with the universal interface module and is used for sending the data information sent by the information processing sub-module to the connected appointed user and receiving the data information sent by the connected external equipment;
the identity information submodule is respectively connected with the communication control submodule and the information processing submodule and is used for accessing the identity information and the installation position information of the universal power transmission and network communication function suite;
the information processing sub-module is connected with the data storage sub-module, and is also connected with the power supply management module and the universal interface module and used for receiving and processing data information sent by external equipment connected with the universal interface module and the communication control sub-module;
the data storage submodule is used for storing data information of the information processing submodule and backing up local data;
the universal power transmission and network communication function suite also comprises a backup power supply module, the power supply management module comprises a power supply control sub-module and a circuit monitoring sub-module,
the power supply control sub-module and the circuit monitoring sub-module are connected with a public power supply line, the power supply control sub-module is directly connected with the high-power universal interface, the power supply control sub-module is connected with the backup power supply module, the backup power supply module is respectively connected with the low-power universal interface group and each sub-module of the information management module, the power supply control sub-module is also in communication connection with the information processing sub-module, and is used for controlling the on-off of a circuit of each universal interface in the universal interface module according to the data information of the information management module;
the circuit monitoring submodule is respectively connected with each submodule of the information management module and a circuit where each universal interface in the universal interface module is located, and is used for monitoring circuit parameters of each circuit in the universal interface module and sending the circuit parameters to the information processing submodule.
2. The universal power transfer and network communication function kit of claim 1, wherein the universal interface module comprises a low power universal interface group and a high power universal interface group, the low power universal interface group comprising at least two low power universal interfaces, the high power universal interface group comprising at least two high power universal interfaces, the low power universal interface group and the high power universal interface group both being in communication connection with the information processing sub-module.
3. The universal power transfer and network communication function kit of claim 2, wherein the low power universal interface is connected to an external network communication device and/or a terminal function device, and the high power universal interface is connected to an external power adapter.
4. The universal power transmission and network communication kit of claim 1, further comprising an identity information identifier for displaying the detailed information of the power pole or the manner in which the detailed information is obtained.
5. A universal power transmission and network communication method for a power pole, characterized by being applied to the universal power transmission and network communication functional kit as claimed in any one of claims 1 to 4, comprising:
transmitting the received data information of the external network communication equipment to an information processing sub-module;
according to the type of the data information, the communication control sub-module sends the data information processed by the information processing sub-module to a designated user or a power supply management module;
the power supply management module controls and monitors a power switch of the corresponding universal interface module according to the received data information;
forwarding the data information to the external network communication equipment according to the received data information sent by the information processing module;
and storing the data information in a classified mode.
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