WO2020057128A1 - 共享设备租赁装置、方法及系统 - Google Patents

共享设备租赁装置、方法及系统 Download PDF

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Publication number
WO2020057128A1
WO2020057128A1 PCT/CN2019/084551 CN2019084551W WO2020057128A1 WO 2020057128 A1 WO2020057128 A1 WO 2020057128A1 CN 2019084551 W CN2019084551 W CN 2019084551W WO 2020057128 A1 WO2020057128 A1 WO 2020057128A1
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WO
WIPO (PCT)
Prior art keywords
shared
data
main chip
shared device
card slot
Prior art date
Application number
PCT/CN2019/084551
Other languages
English (en)
French (fr)
Inventor
张岩
熊涛
Original Assignee
深圳市合言信息科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN201811094288.8A external-priority patent/CN109214896A/zh
Priority claimed from CN201811149588.1A external-priority patent/CN109166249A/zh
Application filed by 深圳市合言信息科技有限公司 filed Critical 深圳市合言信息科技有限公司
Priority to JP2019563571A priority Critical patent/JP2021501922A/ja
Priority to CN201980001665.5A priority patent/CN110896662A/zh
Priority to US16/470,556 priority patent/US20210335079A1/en
Publication of WO2020057128A1 publication Critical patent/WO2020057128A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q30/00Commerce
    • G06Q30/06Buying, selling or leasing transactions
    • G06Q30/0645Rental transactions; Leasing transactions
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q20/00Payment architectures, schemes or protocols
    • G06Q20/08Payment architectures
    • G06Q20/14Payment architectures specially adapted for billing systems
    • G06Q20/145Payments according to the detected use or quantity
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q20/00Payment architectures, schemes or protocols
    • G06Q20/08Payment architectures
    • G06Q20/18Payment architectures involving self-service terminals [SST], vending machines, kiosks or multimedia terminals
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F15/00Coin-freed apparatus with meter-controlled dispensing of liquid, gas or electricity
    • G07F15/003Coin-freed apparatus with meter-controlled dispensing of liquid, gas or electricity for electricity
    • G07F15/006Coin-freed apparatus with meter-controlled dispensing of liquid, gas or electricity for electricity dispensed for the electrical charging of other devices than vehicles
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F17/00Coin-freed apparatus for hiring articles; Coin-freed facilities or services
    • G07F17/0014Coin-freed apparatus for hiring articles; Coin-freed facilities or services for vending, access and use of specific services not covered anywhere else in G07F17/00
    • G07F17/0021Access to services on a time-basis
    • 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

Definitions

  • the present invention belongs to the field of electronic technology, and in particular relates to a sharing device leasing device, method and system.
  • the invention provides a sharing device leasing device, method and system, which are used to solve the problem of inconvenience of popping up a shared device and inserting it into a card slot through the cooperation of electromagnetic locks, buckles and springs.
  • An embodiment of the present invention provides a shared equipment rental device, including: a cabinet, a power management module, and a main chip, an electromagnetic lock, a device card slot, a buckle, and a spring provided in the cabinet;
  • the buckle and the spring are arranged in the equipment slot, and the electromagnetic lock is connected to the buckle;
  • the main chip is used to control the electromagnetic lock to open or lock the buckle
  • the spring is configured to eject the shared device inserted in the device card slot after the main chip controls the electromagnetic lock to open the buckle.
  • An embodiment of the present invention further provides a shared equipment leasing method, which is applied to leasing shared equipment through the aforementioned shared equipment leasing device.
  • the shared equipment leasing device includes a cabinet, a main chip disposed in the cabinet, and a power management module.
  • An electromagnetic lock and a device slot wherein the device slot is provided with a buckle and a spring, the main chip is electrically connected to the power management module and the electromagnetic lock, and the electromagnetic lock is connected to the buckle,
  • the method includes:
  • the electromagnetic lock is controlled by the main chip to lock the buckle, so that the buckle locks the shared device.
  • An embodiment of the present invention further provides a shared equipment leasing system, including: a shared device with a built-in radio frequency identification chip, a leasing device, and a cloud server;
  • the rental device includes: a cabinet, a power management module, a communication module, a reader, and a main chip, an electromagnetic lock, a device card slot, a buckle, and a spring provided in the cabinet;
  • the leasing device is configured to control the electromagnetic lock in the leasing device to open the latch in the target device card slot pointed to by the lease information through the main chip in response to the leasing operation, and pass the target device card slot through the target device.
  • the spring in the device ejects the shared device inserted in the device card slot;
  • the rental device is further configured to control the electromagnetic lock to lock the buckle to lock the inserted shared device through the main chip when the shared device is inserted into the device card slot, and control the shared device
  • the power management module charges the inserted shared device, reads the unique identification information of the inserted shared device stored in the radio frequency chip through the reader, and transmits the unique identity through the communication module. Sending identification information to the cloud server;
  • the rental device is further configured to perform fault detection on the inserted shared device through the main chip, and when the inserted shared device is detected to be faulty, unique identification information of the inserted shared device is detected. And fault information is sent to the cloud server.
  • the shared device rental device, method and system provided by the present invention control the electromagnetic lock to open the latch of the device card slot through the main chip of the shared device rental device, and the spring of the device card slot ejects the shared device.
  • the main chip controls the electronic card holder to lock the shared device.
  • FIG. 1 is a schematic structural diagram of an adjustment sharing equipment rental device according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram of an appearance layout structure of a shared equipment rental device according to an embodiment of the present invention
  • 3 to 5 are schematic diagrams of an internal structure of a shared equipment rental device according to an embodiment of the present invention.
  • FIG. 6 is a schematic structural diagram of a device card slot in a shared device rental device according to an embodiment of the present invention.
  • FIG. 7 is a schematic flowchart of a shared equipment leasing method according to an embodiment of the present invention.
  • FIG. 8 is a schematic structural diagram of a shared equipment rental system according to an embodiment of the present invention.
  • FIG. 9 is a schematic structural diagram of a shared device in a shared device rental system according to an embodiment of the present invention.
  • FIG. 1 is a schematic structural diagram of a shared equipment rental device according to an embodiment of the present invention
  • FIG. 2 is a schematic structural diagram of the shared equipment rental device.
  • the shared devices include intelligent electronic devices with independent operating systems, such as translators, which refers to Android or Linux. Leasing refers to the loan and return of the shared equipment.
  • the shared equipment leasing device may specifically be a cabinet capable of leasing shared equipment.
  • the device may include a cabinet 10 and a main chip 11, an electromagnetic lock 12, a device slot 13, a buckle 14, a spring 15, and a power management module 19 provided in the cabinet 10.
  • the main chip 11 may specifically be a micro control unit (MCU, Micro Control Unit), which is connected to the electromagnetic lock 12 and can control the electromagnetic lock 12 to open or lock the buckle 15.
  • the power management module 19 may be, for example, a control chip or a control circuit for power management.
  • the power management module 19 is used to connect a charging plug, a power adapter, or a charging cable.
  • FIG. 2 is a schematic diagram of the appearance layout structure of the shared equipment rental device according to the embodiment of the present invention
  • FIGS. 3 to 5 are schematic diagrams of the internal structure of the shared equipment rental device provided by the embodiment of the present invention.
  • 6 is a schematic structural diagram of a device card slot in a shared device leasing device according to an embodiment of the present invention.
  • a shared equipment rental device a plurality of equipment card slots 13 may be provided.
  • a plurality of equipment card slots 13 (not shown in FIG. 3) are fixed in the cabinet 10 through a device bracket 31.
  • Each device slot 13 is provided with a buckle 14 and a spring 15 (not shown in FIGS. 3 to 6).
  • At least one spring 15 may be provided for each device card slot 13, and the spring 15 may be provided inside the bottom of the device card slot 13.
  • At least one electromagnetic lock 12 is provided for each device slot 13, and each electromagnetic lock 12 can open or lock at least one buckle 14.
  • two electromagnetic locks 12 are respectively provided at the bottom ends of the device slot 13, and each electromagnetic lock 12 is connected to a buckle 14, and a main chip 11 (shown in FIGS. 3 to 5) provided on the main board 32.
  • the electromagnetic lock 12 is controlled to open the buckle 14, and the spring 15 ejects the shared device inserted in the device card slot 13, and the user can remove the shared device.
  • the main chip 11 controls the electromagnetic lock 12 to lock the buckle 14, and the shared device is locked in the device card slot 13, and the user cannot remove the shared device.
  • the shared equipment rental device further includes a control board 33 electrically connected to the main chip 11 and the electromagnetic lock 12.
  • the electromagnetic lock 12 includes a connecting rod 121 and a driver 122, and the equipment card slot 13 is connected to the equipment card.
  • a convex portion 131 is provided on a vertical side of the bottom of the groove 13.
  • One end of the buckle 14 is fixed on the connecting rod 121 and the other end is fixed on the convex portion 131.
  • the driver 122 may be, for example, a micro-motor or other driving devices having the same function.
  • the control board 33 is also electrically connected to the driver 122.
  • the control board 33 is used in response to the control instruction sent by the main chip 11, and the control driver 122 drives the connecting rod 121 to move in a direction parallel to the bottom of the device card slot 13, and feeds back the control result to the main chip 11.
  • the driver 122 is used to drive the connecting rod 121 in a direction close to the device slot 13 and lock the clip 14 at a preset position.
  • the protrusion 141 on the clip 14 passes through the through hole on the side wall of the device slot 13 and Abut on the shared device in the device card slot 13, thereby achieving the effect of locking the shared device.
  • the buckle 14 When the driver 122 drives the connecting rod 121 to move closer to the cabinet 10, the buckle 14 is opened, and the protrusion 141 on the buckle 14 no longer abuts the shared device in the device card slot 13, and the bottom of the device card slot 13 The spring 15 takes the opportunity to eject the shared device.
  • the data may include: attribute data, One or more of device data, local data, and application data, where the attribute data includes: identification information such as the model and product serial number (SN, Serial Number) of the shared device; device data includes: memory, display of the shared device Screen, buttons, data cable, charging cable, headset cable and other hardware data; local data and application data are text and voice data generated when users use the shared device.
  • attribute data includes: identification information such as the model and product serial number (SN, Serial Number) of the shared device
  • device data includes: memory, display of the shared device Screen, buttons, data cable, charging cable, headset cable and other hardware data
  • local data and application data are text and voice data generated when users use the shared device.
  • the shared equipment leasing device is further provided with a communication module 16 for sending data to a cloud server.
  • the communication module 16 includes a cellular network communication module and a WiFi hotspot module.
  • the cellular network communication module can support 2G , 3G, 4G or subsequent versions of the cellular network protocol mobile communication network and the cloud server to transmit data
  • the WiFi hotspot module can transmit data to the cloud server via the wireless fidelity network.
  • the shared equipment and the shared equipment leasing device have a larger amount of data exchange, more types, and more complex logic, including not only shared device attribute data, but also shared device device data, and application data carried by the shared device operating system.
  • Sending the read data to the cloud server for processing includes: the cloud server judges whether the shared device currently in the device card slot 13 is a shared device that has been lent before according to the attribute information; and judges that it is currently in the device card slot 13 according to the device data Whether the shared device in the device is damaged or not needs to be explained. According to the device data, whether the shared device currently in the device card slot 13 is damaged can also be completed by the main chip 11.
  • the cloud server stores the local data and application data in the database according to the association relationship with the shared device. For example, the data storage directory of the shared device is established in the database. After reading the local data and application data of the shared device, Are stored under this storage directory.
  • the shared equipment rental device performs data interaction with the cloud server.
  • the shared equipment rental device can not only report the above data to the cloud server in real time, but also the cloud server can freely push various instructions and information to the shared device rental device. Two-way, two-pass, improve the speed and efficiency of communication.
  • the shared equipment rental device further includes an interpreter 34.
  • a radio frequency identification (RFID) chip is set on the shared device, and the data in the RFID chip can be read by the reader 34 in the shared device rental device.
  • RFID radio frequency identification
  • the RFID chip with the unique device code written on it is attached to the inside or the back of the shared device, and the identity of the shared device can be confirmed by reading the unique device code stored in the RFID chip.
  • the unique device code is, for example, a SN (Serial Number) code, that is, the unique identification information of the shared device.
  • a data power pin 18 is provided at the bottom end of each device card slot 13, the data power pin 18 is exposed at the bottom end of the device card slot 13, and a data power pin is also provided at the tail of the shared device.
  • the metal contacts expose the interface.
  • the data power pin of the shared device corresponds to the data power pin in the device card slot 13.
  • the data power pin 18 at the bottom of the device card slot 13 includes a positive power pin and a negative power pin that are electrically connected to the power management module 19.
  • the data power pin of the shared device includes a positive charging contact and a negative charging contact.
  • the main chip 11 is also used to charge the shared device when the positive and negative charging contacts of the shared device are in contact with the positive and negative power pins of the data power pin 18.
  • the power management module 19 is connected to a power source, and the main chip 11 controls the power source to charge the shared device by sending a charging control instruction to the power management module 19.
  • the data power pin 18 at the bottom of the device card slot 13 further includes a first data transmission pin electrically connected to the reader 34.
  • the data power pin of the shared device further includes: radio frequency identification (RFID, Radio Frequency Identification) contacts.
  • RFID Radio Frequency Identification
  • the main chip 11 is further configured to read the unique identification information stored in the RFID chip in the shared device through the reader 34 when the radio frequency identification contact of the shared device is in contact with the first data transmission pin of the rental device, and The communication module 16 sends the read unique identification information to the cloud server.
  • the data power pin 18 at the bottom of the device card slot 13 further includes a second data transmission pin electrically connected to the main chip 11.
  • the data power pin of the shared device further includes: a data transmission pin electrically connected to a processor and / or a memory of the shared device.
  • the main chip is further configured to send a first instruction for clearing the first target data in the shared device to the shared device when the data transmission pin of the shared device is in contact with the second data transmission pin of the rental device.
  • the first target data is, for example, local data and application data of the shared device.
  • the first instruction is used to instruct the sharing device to perform an initialization operation to clear local data and application data of the sharing device.
  • the main chip 11 is further configured to read the second target data in the shared device when the data transmission pin of the shared device is in contact with the second data transmission pin of the rental device, and send the second target data through the communication module 16 To the cloud server.
  • the second target data is, for example, at least one of device data, local data, and application data of the shared device.
  • the main chip 11 is further configured to: when the data transmission pin of the shared device is in contact with the second data transmission pin of the rental device, send a second instruction to the shared device to control the restart of the shared device, and when the shared device is turned on When the failure occurs, the failure information is sent to the cloud server through the communication module 16.
  • the main chip 11 is further configured to determine whether the shared device fails according to the read second target data.
  • FIG. 6 six data power pins 181-186 are provided at the bottom of the device card slot 13, where the data power pins 181 and 182 are the positive power pin GND and the negative power pin VBUS, and the data power pins 183 and 184 are the first The data transmission pins TX1 and RX1, and the data power pins 185 and 186 are the second data transmission pins TX2 and RX2.
  • the connection relationship between the data power pins, the main chip 11 and the power management module 19 is not shown in FIG. 1.
  • the data power pin 18 at the bottom of the device card slot 13 can be in contact with the data power pin exposed at the tail of the shared device.
  • a foolproof design is made in the device card slot 13. Specifically, as shown in FIG. 6, a plurality of raised ribs 132 are respectively provided on the upper and lower inner side walls of the device slot 13.
  • Multiple ribs 132 extend from the slot of the device card slot 13 to the bottom of the device card slot 13, and on the inner side of the device card slot 13 (towards the front of the shared device, usually the side of the shared device with the display screen) on the side wall
  • the edge of the edge is eccentric design, that is, there is a certain angle between the width and height of the edge and the side wall, and the angle range is, for example, 15 degrees to 80 degrees.
  • the depth of the device card slot 13 is smaller than the length of the shared device. For example, when the tail of a shared device is fully inserted into the bottom of the device card slot, three-quarters of the shared device is located in the device card slot 13 and the remaining four One is exposed outside the device card slot 13 for easy access by the user.
  • the shared equipment leasing device communicates with the RFID chip by means of contact communication, which not only retains the advantages of the small footprint of the RFID chip, but also avoids the defects that the radio frequency communication cannot control the distance and the transmission range. There is no need to add RFID readers and antennas inside the shared equipment rental device, thus reducing hardware costs.
  • the shared equipment rental device further includes a plurality of external devices, which are detachably disposed on the outer surface of the cabinet 10.
  • the external devices include: a sensor 20, a camera 21, a scanner 22, and a display 23.
  • the shared equipment rental device is provided with an external device management module 24, and the external device management module 24 controls the operation of these external devices according to the instruction of the main chip 11.
  • the sensor 20 is configured to detect whether a user is approaching, and may specifically be an infrared sensor or a vibration sensor.
  • the camera 21 is used to obtain user characteristics under the control of the main chip 11 by photographing a user or a certificate presented by the user, and the user characteristics include biological characteristics such as a user's facial characteristics, iris characteristics, fingerprint characteristics, and the user name , Identification number and other identity characteristics.
  • the barcode scanner 22 is used to scan a barcode, which may be a paid barcode or a barcode for authenticating a user.
  • the display screen 23 is used to display a text prompt information and / or a user feature collection interface.
  • the text prompt information may include: the number, location, or warning information of shared equipment available for lease. It can be installed on the front of the shared equipment rental device. The above-mentioned external equipment can be removed and replaced freely, which improves the convenience of use.
  • a leasing button 25 is provided at a position next to the slot 13 of each device card slot 13 on the front of the cabinet 10.
  • the leasing button 25 can be pressed to trigger the leasing operation.
  • the main chip 11 starts to work in response to the leasing operation.
  • the operation of leasing the shared device in the corresponding device card slot 13 can be started by pressing the rental button 25.
  • the shared equipment rental device is provided with a power indicator 26 and a fault indicator 27.
  • the power indicator 26 is used to prompt the power information of the sharing device.
  • a fault indicator 27 is used to indicate that the shared device is faulty.
  • an infrared sensor is disposed inside the slot of each device card slot 13, and the infrared sensor is electrically connected to the main chip 11, and is configured to send infrared sensing data collected based on the sensing data to the main chip 11.
  • the main chip 11 is also used to determine whether the device card slot pointed to by the pop-up control instruction is still occupied after the preset time period is exceeded after sending the pop-up control instruction to the electromagnetic lock based on the sensing data sent by the infrared sensor. If it is occupied, a lock control instruction is sent to the electromagnetic lock, so that the electromagnetic lock re-locks the buckle, thereby ensuring the safety of the shared equipment and ensuring the accuracy of the lease data.
  • the main chip of the shared device leasing device controls the electromagnetic lock to open the latch of the device card slot, and the spring of the device card slot ejects the shared device.
  • the main chip controls the electronic card holder. Lock the shared device. Through the setting of electromagnetic locks, buckles and springs, the shared equipment can be ejected and recycled more conveniently, which improves the ease of use of the rental device.
  • charging the shared device through the power data pin and reading various data from the shared device, and sending the acquired data to the cloud server for processing can improve the data processing capability of the shared device and greatly improve The data processing success rate and data processing volume of the shared equipment during the leasing process make the leasing process successfully completed, meet the shared leasing business needs of the leasing equipment with more complex structure, and improve the user experience.
  • FIG. 7 is a schematic flowchart of a shared equipment leasing method provided by the present invention, which can also be used to implement shared equipment leasing through the shared equipment leasing device in the foregoing embodiment.
  • the shared equipment leasing in this embodiment For the structure of the device, refer to the foregoing embodiments shown in FIG. 1 to FIG. 6.
  • the method includes the following steps:
  • the leasing device responds to the leasing operation through the main chip, controls the electromagnetic lock to open the buckle in the card slot of the device, and ejects the shared device inserted in the card slot of the device through a spring;
  • the user can initiate a lease request to the cloud server through the mobile APP, and the cloud server sends a lease instruction to the main chip of the shared device lease device to trigger the lease operation.
  • the user presses the lease button on the shared device lease device to trigger the lease operation, and the lease button sends an operation electric signal to the main chip.
  • the main chip responds to the triggered lease operation, controls the camera to turn on, and records and identifies the user characteristics and lease-related information of the current renter through the camera and code scanner.
  • the main chip controls the electromagnetic lock to open the buckle in the device card slot.
  • the spring provided at the bottom of the device card slot ejects the shared device inserted in the device card slot.
  • the main chip leases the shared device. Relevant information is updated and reported to the cloud server.
  • the lease-related information includes the user information of the renter, the lease start time, the number of leases, the model, and the attribute data of the shared device.
  • the main chip controls the electromagnetic lock to lock the buckle to re-lock the shared device. Specifically, the main chip can determine whether the user takes away the shared device according to the sensing data sent by the infrared sensor provided inside the slot of each device card slot.
  • the main chip controls the electromagnetic lock to lock the buckle, so that the buckle locks the shared device.
  • the user When returning the shared device, the user directly inserts the shared device into any empty device card slot, or inserts the shared device into a designated empty device card slot according to the instructions of the rental app.
  • the shared device When the shared device is inserted into the device card slot, the main chip controls the electromagnetic lock to lock, and the buckle in the device card slot locks the shared device.
  • the rental device when the shared device is inserted into the device card slot, the rental device obtains the unique identification information of the shared device through a built-in interpreter, controls the power management module to charge the shared device through the main chip and detects whether the shared device occurs malfunction. If the shared device fails, the main chip sends the failure information and the unique identification information of the shared device to the cloud server, and controls the failure display lamp of the rental device to light and / or displays the failure information on the display of the rental device . If the shared device does not fail, a data clear instruction is sent to the shared device through the main chip, and the data clear instruction is used to clear the first target data in the shared device.
  • the shared device if the shared device does not fail, read the second target data in the shared device through the main chip, and send the unique identification information of the shared device and the read second target data to the cloud server.
  • Detecting whether the shared device is faulty may specifically include: instructing the shared device to restart through the main chip; if the shared device fails to start, confirm that the shared device has failed; if the shared device is successfully started, confirm the shared device No failure occurred.
  • detecting whether the shared device is faulty may further specifically include: if the shared device is powered on successfully, reading the device data of the shared device, and comparing the read device data with preset data, and if the device data is If the data is inconsistent, it is confirmed that the shared device is faulty. If the device data is consistent with the preset data, it is confirmed that the shared device is not faulted.
  • the main chip After the shared device is inserted into the device card slot, the main chip reads the attribute data of the shared device and charges the shared device. Further, the main chip also reads the device data of the shared device, and determines whether the shared device is damaged according to the device data, such as whether the screen is broken or whether the data line is missing. Alternatively, the main chip can also send the device data to the cloud server for judgment.
  • the main chip controls the shared device to be turned on. If the shared device cannot be turned on, the fault information of the shared device is sent to the cloud server, and the fault indicator of the shared device rental device is lit and / or leased on the shared device. Error messages appear on the display of the device.
  • each of the above judgments on whether the shared equipment returned is damaged, and whether the failure occurs can be performed simultaneously, and the results can be comprehensively confirmed based on the judgment results. Understandably, the above-mentioned fault detection may also be performed on the shared device in the device card slot periodically.
  • the attribute data and device data are sent to the main chip, and the main chip reports the attribute data and device data to the cloud server, or the shared device automatically runs a preset rental app after the shared device is turned on, Pass attribute data and device data directly to the cloud server.
  • the cloud server performs verification based on the received attribute data and device data to confirm that the shared device returned is the shared device that was previously lent, and the shared device is returned to the user from the rental app after the shared device is not damaged or faultless.
  • a data power pin is provided at the bottom of the equipment card slot of the rental device, and correspondingly, a data power pin is also provided at the tail of the shared device.
  • the main chip charges the shared device and reads the shared device through the data power pin.
  • the attribute data in the built-in RFID chip is uploaded to the cloud server for verification. Further, in order to improve the security, after the attribute data is written into the RFID chip, the storage area where the attribute data is written in the RFID chip is locked to ensure that the data stored in the storage area cannot be modified subsequently.
  • the shared equipment rental device further includes a sensor, a camera, a code scanner, a speaker, and a display screen.
  • the camera is controlled by the main chip to shoot, and when no new is detected
  • the rental order is generated, but when the shared device is removed from the card slot device, a sound warning is issued through the speaker, and the image information collected by the camera is sent to the cloud server, so that the cloud server generates an alarm message based on the image information and sends it to
  • the designated management personnel can be sent by email, message, phone, etc. Improve the security of the shared equipment rental device and reduce losses.
  • a built-in power source is provided in the sharing device and sharing device, and when the external power source is unavailable, the main chip, sensor, camera, code scanner, speaker and display are provided with an anti-theft system to ensure that the components of the anti-theft system are normal. Operation, when used when an external power source is available, control the external power source to charge the built-in power source.
  • the built-in power supply is used to supply power to the anti-theft system, so that when there is only an external power source, the external power source is destroyed first and the anti-theft system cannot work.
  • a request to clear the pre-designated user information is sent to the cloud server, so that the cloud server clears the pre-designated cleared user information from the database, and the user information may be Including the user ’s personal information and the information generated by the user in the shared device. Improve user information security and confidentiality.
  • the main chip of the shared device leasing device controls the electromagnetic lock to open the latch of the device card slot, and the spring of the device card slot ejects the shared device.
  • the main chip controls the electronic card holder Lock the shared device.
  • charging the shared device through the power data pin and reading various data from the shared device, and sending the acquired data to the cloud server for processing can improve the data processing capability of the shared device and greatly improve The data processing success rate and data processing volume of the shared equipment during the leasing process make the leasing process successfully completed, meet the shared leasing business needs of the leasing equipment with more complex structure, and improve the user experience.
  • FIG. 8 is a schematic structural diagram of a shared equipment leasing system according to an embodiment of the present invention. For ease of description, only parts related to the embodiment of the present invention are shown.
  • the shared equipment leasing system illustrated in FIG. 8 includes the leasing device provided by the foregoing embodiments shown in FIGS. 1 to 6.
  • the system mainly includes:
  • the sharing device 301 The sharing device 301, the rental device 302, and the cloud server 303.
  • the rental device 302 includes: a cabinet 10, a power management module 19, a communication module 16, a reader 34, and a main chip 11, an electromagnetic lock 12, an equipment card slot 13, and a buckle provided in the cabinet 10. 14 ⁇ Spring 15.
  • the sharing device 301 includes a processor 3011, an RFID chip 3012, and a memory 3013.
  • the computer stores a computer program executable by the processor 3011.
  • the memory is also used to store user data generated by the computer program.
  • the sharing device 301 may be, for example, an electronic device with a user data recording function, such as a translator, a media player, and a tablet computer.
  • the shared device 301 Before being leased, the shared device 301 is inserted into the device slot 13 of the rental device 302, and the electromagnetic lock 12 of the rental device 302 locks the buckle 14 to lock all shared devices 301 in the device slot 13.
  • the leasing device 302 is configured to control the electromagnetic lock 12 in the leasing device 302 through the main chip 11 in response to the leasing operation to open the buckle 14 in the target device slot 13 pointed to by the leasing information, and pass the target device card slot 13
  • the middle spring 15 ejects the sharing device 301 inserted in the device card slot 13.
  • an infrared sensor is provided in the equipment card slot 13 of the rental device 302.
  • the rental device 302 is further configured to determine whether the shared device 301 is detected by the main chip 11 according to the sensing data sent by the infrared sensor to the main chip 11. User removed. If removed by the user, the unique identification information and removal time of the removed shared device 301 are sent to the cloud server 303 through the communication module 16.
  • the cloud server 303 is further configured to update the lease data of the removed shared device 301 according to the unique identification information and the removal time sent by the rental device 302.
  • the rental device 302 controls the electromagnetic lock 12 to re-lock the buckle 14 through the main chip 11 and sends a notification message to the cloud server 303 to notify The cloud server 303 and the shared device 301 have not been removed.
  • a data power pin 18 is further provided at the bottom of the equipment card slot 13 of the rental device 302, and correspondingly, as shown in FIG. 9, a data power pin 3014 is provided at the tail of the sharing device 301.
  • the sharing device 301 also includes a rechargeable battery module 3015.
  • the processor 3011, the memory 3013, and the rechargeable battery module 3015 may be electrically connected through a bus.
  • the data power pin 18 includes a positive power pin and a negative power pin electrically connected to the power management module 19, a first data transmission pin electrically connected to the reader 34, and a second data transmission electrically connected to the main chip 11. foot.
  • the data power pin 3014 includes an RFID contact electrically connected to the RFID chip, a positive charging contact and a negative charging contact electrically connected to the rechargeable battery module 3015, and electrically connected to the processor 3011 and / or the memory 3013. Connected data transmission pin.
  • the leasing device 302 reads the relevant data in the shared device 301 and sends the relevant data to the cloud server 303 for processing.
  • the cloud server 303 is also used to process the data sent by the leasing device 302, such as judging whether the shared device inserted into the device card slot 13 fails according to the data, managing the rental data of the shared device, and so on.
  • the user triggers the lease operation by pressing the lease button on the body of the lease device.
  • the main chip of the lease device responds to the lease operation and controls the scanner to scan the QR code on the user ’s mobile phone Code to get the user's account information.
  • the main chip controls the electromagnetic lock corresponding to the device card slot pointed by the lease button to open the buckle on the device card slot, and the spring at the bottom of the device card slot takes the opportunity to eject the translator inserted in the device card slot.
  • the main chip sends the lease data including the identification information of the translator, the time taken away, and the account information of the user to the cloud server.
  • the cloud server stores the received rental data and deducts the deposit from the user's account based on the user's account information. If the translator has not been removed after the preset time, the master chip controls the electromagnetic lock to lock the buckle to re-lock the translator, and sends a notification message to the cloud server. The notification message is used for Notify the cloud server that the lease was unsuccessful. The cloud server ends the lease operation according to the notification information, and sends a notification of the lease failure to the user's mobile phone.
  • the user inserts the translator into any vacant equipment card slot on the rental device.
  • the second data power pin at the rear of the translator is in contact with the first data power pin at the bottom of the vacant device card slot, and the first data power pin
  • a high-level hot-swap device detection signal is sent to the main chip of the rental device to notify that a translator is inserted.
  • the main chip controls the electromagnetic lock corresponding to the vacant device card slot to lock the buckle on the controlled device card slot, so that the clip locks the inserted translation machine, and at the same time, controls the power management module to charge the translation machine.
  • the main chip also reads the unique identification information of the translator stored in the transponder's RFID chip through an interpreter, and instructs the translator to restart through the first data power pin.
  • the main chip confirms that the translator is fault-free and sends the unique identification information of the translator to the cloud server.
  • the main chip also instructs the translator to perform an initialization operation through the first data power pin to clear the user data stored in the translator, such as recorded audio data, translation data, etc., thereby protecting the user's personal data information Safety.
  • the cloud server confirms the successful return of the translator according to the unique identification information of the translator sent by the main chip, returns the deducted deposit to the user's account, and deducts the rent from the user's account.
  • the main chip confirms that the translator fails, and sends the fault information and the unique identification information of the translator to the cloud server.
  • the cloud server sends fault notification information to the reserved mobile phone according to the fault information to notify the returned translator that the fault occurs, so as to realize the rapid recovery and maintenance of the fault translator.
  • the reserved mobile phones include the mobile phones of the leased users and the mobile phones of the maintenance personnel.
  • the cloud server also confirmed the successful return of the translator according to the fault information and the unique identification information of the translator, returned the deducted deposit to the user's account, and deducted the rental and maintenance fees from the user's account. .
  • the main chip of the rental device controls the camera to turn on when the person is approaching through the infrared sensor to shoot the scene in front of the lens.
  • the security of the translation machine to be leased prevents the theft of the translation machine and facilitates the recovery of the stolen equipment as soon as possible.
  • the main chip of the shared device leasing device controls the electromagnetic lock to open the latch of the device card slot, and the spring of the device card slot ejects the shared device.
  • the main chip controls the electronic card holder. Lock the shared device.
  • the leasing device communicates with the RFID chip by means of contact communication, which not only retains the advantages of the small footprint of the RFID chip, but also avoids the defects that the radio frequency communication cannot control the distance and the transmission range, and reduces the hardware cost.

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Abstract

一种共享设备租赁装置、方法及系统,应用于电子技术领域,其中装置包括:柜体、电源管理模块和设置在柜体中的主芯片、电磁锁、设备卡槽、卡扣和弹簧。主芯片与电源管理模块和电磁锁电性连接。卡扣和弹簧设置在设备卡槽中,电磁锁连接卡扣。主芯片,用于控制电磁锁打开或锁住卡扣。弹簧,用于在主芯片控制电磁锁打开卡扣后,将插在设备卡槽中的共享设备弹出。上述装置、方法和系统,可提高共享设备弹出、插入该设备卡槽的便捷性和易用性。

Description

共享设备租赁装置、方法及系统 技术领域
本发明属于电子技术领域,尤其涉及一种共享设备租赁装置、方法及系统。
背景技术
目前共享租赁机柜市面上常见的是共享充电宝的租赁机柜,其机柜全程可以做到无人看守,自助取还,支付与扣款等,非常便捷。但由于共享充电宝设备本身结构较为简单,只是一个充电装置,数据量小、无独立操作系统、功能单一,而翻译机等结构更复杂的智能设备带有独立的android、Linux等操作系统,内部存储有设备数据、应用数据等各类复杂数据,且翻译机设备本身零件较多、结构复杂、种类多样,在租赁和返还等过程中产生了设备取出以及返回时插入存储槽不安全、不便捷等诸多难题。综上,传统租赁机柜因结构与翻译机等设备无法匹配,不能满足翻译机等设备的共享租赁业务需求。
发明内容
本发明提供一种共享设备租赁装置、方法以及系统,用以通过电磁锁、卡扣、弹簧的互相配合,解决共享设备弹出、插入设备卡槽不便的问题。
本发明实施例提供了一种共享设备租赁装置,包括:柜体、电源管理模块和设置在所述柜体中的主芯片、电磁锁、设备卡槽、卡扣和弹簧;
所述主芯片与所述电源管理模块和所述电磁锁电性连接;
所述卡扣和弹簧设置在所述设备卡槽中,所述电磁锁连接所述卡扣;
所述主芯片,用于控制所述电磁锁打开或锁住所述卡扣;
所述弹簧,用于在所述主芯片控制所述电磁锁打开所述卡扣后,将插在所述设备卡槽中的共享设备弹出。
本发明实施例还提供了一种共享设备租赁方法,应用于通过前述共享设备租赁装置租赁共享设备,所述共享设备租赁装置包括柜体以及设置在所述柜体中的主芯片、电源管理模块、电磁锁和设备卡槽,所述设备卡槽中设置有卡扣和弹簧,所述主芯片与所述电源管理模块和所述电磁锁电性连接,所述电磁锁连接所述卡扣,所述方法包括:
通过所述主芯片响应于租赁操作,控制所述电磁锁打开所述卡扣,并通过所述弹簧将插在所述设备卡槽中的共享设备弹出;
当所述共享设备被插入所述设备卡槽时,通过所述主芯片控制所述电磁锁锁住所述卡扣,以使得所述卡扣锁死所述共享设备。
本发明实施例还提供了一种共享设备租赁系统,包括:内置射频识别芯片的共享设备、租赁装置和云端服务器;
所述租赁装置包括:柜体、电源管理模块、通讯模块、解读器和设置在所述柜体中的主芯片、电磁锁、设备卡槽、卡扣和弹簧;
所述租赁装置通过所述通讯模块与所述云端服务器建立数据连接;
所述租赁装置,用于响应于租赁操作,通过所述主芯片控制所述租赁装置内的电磁锁打开所述租赁信息指向的目标设备卡槽内的卡扣,并通过所述目标设备卡槽中的弹簧将插在所述设备卡槽中的共享设备弹出;
所述租赁装置,还用于当所述共享设备插入所述设备卡槽中时,通过所述主芯片控制所述电磁锁锁住所述卡扣以锁死插入的共享设备,并控制所述电源管理模块为所述插入的共享设备进行充电,通过所述解读器读取所述射频芯片中存储的所述插入的共享设备的唯一身份标识信息,并通过所述通讯模块将所述唯一身份标识信息发送给所述云端服务器;
所述租赁装置,还用于通过所述主芯片对所述插入的共享设备进行故障检 测,并当检测到所述插入的共享设备发生故障时,将所述插入的共享设备的唯一身份标识信息和故障信息发送给所述云端服务器。
从上述本发明实施例可知,本发明提供的共享设备租赁装置、方法及系统,通过共享设备租赁装置的主芯片控制电磁锁打开设备卡槽的卡扣,设备卡槽的弹簧弹出共享设备,当共享设备插入该设备卡槽时,主芯片控制电子卡座锁住该共享设备。通过电磁锁、卡扣以及弹簧的设置可以更为便捷地弹出和回收共享设备,提高租赁装置的易用性。
附图说明
图1是本发明实施例提供的调整共享设备租赁装置的结构示意图;
图2是本发明实施例提供的共享设备租赁装置的外观布局结构示意图;
图3至图5是本发明实施例提供的共享设备租赁装置的内部结构示意图;
图6是本发明实施例提供的共享设备租赁装置中设备卡槽的结构示意图;
图7是本发明实施例提供的共享设备租赁方法的流程示意图;
图8是本发明实施例提供的共享设备租赁系统的结构示意;
图9是本发明实施例提供的共享设备租赁系统中共享设备的结构示意。
具体实施方式
请参见图1和图2,图1为本发明实施例提供的共享设备租赁装置的结构示意图,图2为该共享设备租赁装置的外观结构示意图。该共享设备包括翻译机等带有独立操作系统的智能电子设备,该操作系统是指Android或Linux等。租赁是指该共享设备的出借和归还。该共享设备租赁装置具体可以为一个可租赁共享设备的机柜。该装置可包括:柜体10和设置在柜体10中的主芯片11、电磁锁12、设备卡槽13、卡扣14、弹簧15和电源管理模块19。
其中,主芯片11具体可以为微控制单元(MCU,Micro Control Unit),与 电磁锁12连接,可控制电磁锁12打开或锁住卡扣15。电源管理模块19例如可以是用于电源管理的控制芯片或控制电路,电源管理模块19用于连接充电插头、电源适配器或充电线。
结合图2至图6,图2是本发明实施例提供的共享设备租赁装置的外观布局结构示意图,图3至图5是本发明实施例提供的共享设备租赁装置的内部结构示意图。图6是本发明实施例提供的共享设备租赁装置中设备卡槽的结构示意图。在一个共享设备租赁装置中,可以设置多个设备卡槽13,如图3所示,多个设备卡槽13(图3中未示出)通过设备支架31固定在柜体10中。每个设备卡槽13中均设有卡扣14和弹簧15(图3至图6中均未标示)。
具体的,可为每个设备卡槽13设置至少一个弹簧15,弹簧15可以设置在设备卡槽13底部的内侧。为每个设备卡槽13设置至少一个电磁锁12,每个电磁锁12可打开或锁住至少一个卡扣14。如图4所示,设备卡槽13的底端分别设置有两个电磁锁12,每个电磁锁12连接一个卡扣14,设置在主板32上的主芯片11(图3至图5中均未标示)控制电磁锁12打开卡扣14,弹簧15弹出插在设备卡槽13中的共享设备,用户可以拿走该共享设备。主芯片11控制电磁锁12锁住卡扣14,共享设备被锁死在设备卡槽13中,用户不可拿走该共享设备。
进一步的,如图4所示,共享设备租赁装置还包括电性连接于主芯片11和电磁锁12的控制板33,电磁锁12包括连接杆121和驱动器122,设备卡槽13的与设备卡槽13的底部垂直的一侧设置有凸起部131,卡扣14的一端固定在连接杆121上,另一端固定在凸起部131。驱动器122具体例如可以是微型电机或者具有相同功能的其他驱动装置。控制板33还与驱动器122电性连接。控制板33用于响应于主芯片11发送的控制指令,控制驱动器122驱使连接杆121沿着与设备卡槽13底部平行的方向位移,并向主芯片11反馈控制结果。通过驱动器122驱使连接杆121向靠近设备卡槽13的方向移动并将卡扣14锁 定在预设位置,卡扣14上的凸起部141穿过设备卡槽13侧壁上的通孔,并抵住设备卡槽13中的共享设备,从而达到锁死共享设备的效果。当驱动器122驱使连接杆121向靠近柜体10的方向移动时,打开卡扣14,卡扣14上的凸起部141不再抵住设备卡槽13中的共享设备,设备卡槽13底部的弹簧15借机将该共享设备弹出。
进一步地,当用户归还该共享设备时,该共享设备插入设备卡槽中13,此时,主芯片11控制电磁锁12锁住卡扣14,以锁死该共享设备。同时,主芯片11可为插入设备卡槽13中的共享设备进行充电,以及,从共享设备中读取数据,并将读取的数据发送给云端服务器进行处理,该数据可包括:属性数据、器件数据、本地数据和应用数据中的一种或几种,其中属性数据包括:共享设备的型号和产品序列码(SN,Serial Number)等身份标识信息;器件数据包括:共享设备的存储器、显示屏、按键、数据线、充电线、耳机线等硬件数据;本地数据和应用数据为用户在使用该共享设备时产生的文字和语音数据。具体地,该共享设备租赁装置中还设置有通讯模块16,用于将数据发送给云端服务器,通讯模块16包括:蜂窝网络通讯模块和WiFi热点模块,其中,蜂窝网络通讯模块,可以通过支持2G、3G、4G或后续版本的蜂窝网络协议的移动通信网络与云端服务器传输数据,WiFi热点模块可以通过无线保真网络与云端服务器传输数据。该共享设备与该共享设备租赁装置之间数据交换量更大,种类更多,逻辑更复杂,不仅包共享设备属性数据,还有共享设备器件数据,该共享设备操作系统所承载的应用数据。
将读取的数据发送给云端服务器进行处理包括:云端服务器根据该属性信息判断当前在设备卡槽13中的共享设备的是否为之前出借的共享设备;根据该器件数据判断当前在设备卡槽13中的共享设备是否损坏,需要说明的,根据该器件数据判断当前在设备卡槽13中的共享设备是否损坏也可以由主芯片11完成。云端服务器将本地数据和应用数据按照与该共享设备的关联关系存储在数 据库中,例如在数据库中建立该共享设备的数据存储目录,每次读取到该共享设备的本地数据和应用数据后,都存储在该存储目录下。该共享设备租赁装置与云端服务器进行数据交互,该共享设备租赁装置不仅可以实时上报上述数据给该云端服务器,而且该云端服务器可以自由地推送各类指令、信息到该共享设备租赁装置,做到双向双通,提高通信的速度和效率。
具体地,该共享设备租赁装置还包括解读器34。该共享设备上设置有射频识别(RFID,Radio Frequency Identification)芯片,通过共享设备租赁装置中的解读器34,可以读取该RFID芯片中的数据。其中,在共享设备出厂时将已经写入唯一设备码的RFID芯片贴于共享设备内部或背部,则通过读取RFID芯片内存储的该唯一设备码即可确认该共享设备的身份。该唯一设备码如SN(Serial Number)码,也即该共享设备的唯一身份标识信息。
在每个设备卡槽13内部的底端均设置有数据电源脚18,数据电源脚18露出于设备卡槽13的底端,在共享设备的尾部也设置有数据电源脚,通过共享设备尾部的金属触点向外暴露接口。共享设备的数据电源脚与设备卡槽13中的数据电源脚对应。
设备卡槽13底部的数据电源脚18包括:与电源管理模块19电性连接的正极电源脚和负极电源脚。对应的,该共享设备的数据电源脚包括:正极充电触点、负极充电触点。主芯片11还用于当共享设备的正极充电触点和负极充电触点与数据电源脚18中的正极电源脚和负极电源脚相接触时,为共享设备充电。电源管理模块19连接电源,主芯片11通过向电源管理模块19发送充电控制指令,控制该电源为共享设备充电。
进一步的,设备卡槽13底部的数据电源脚18还包括:与解读器34电性连接的第一数据传输脚。对应的,该共享设备的数据电源脚还包括:射频识别(RFID,Radio Frequency Identification)触点。主芯片11,还用于当共享设备的射频识别触点与租赁装置的第一数据传输脚相接触时,通过解读器34读取共 享设备中的RFID芯片中存储的唯一身份标识信息,并通过通讯模块16将读取的唯一身份标识信息发送给云端服务器。
进一步的,设备卡槽13底部的数据电源脚18还包括:与主芯片11电性相连的第二数据传输脚。对应的,该共享设备的数据电源脚还包括:与该共享设备的处理器和/或存储器电性相连的数据传输脚。
主芯片,还用于当该共享设备的数据传输脚与租赁装置的第二数据传输脚相接触时,向共享设备发送用于清除该共享设备中的第一目标数据的第一指令。其中第一目标数据例如:共享设备的本地数据和应用数据。具体的,第一指令用于指令共享设备执行初始化操作,以清除共享设备的本地数据和应用数据。
主芯片11,还用于当该共享设备的数据传输脚与租赁装置的第二数据传输脚相接触时,读取共享设备中的第二目标数据,并将第二目标数据通过通讯模块16发送给云端服务器。其中第二目标数据例如:共享设备的器件数据、本地数据和应用数据中的至少一种数据。
主芯片11,还用于当该共享设备的数据传输脚与租赁装置的第二数据传输脚相接触时,向共享设备发送用于控制该共享设备重新开机的第二指令,并当共享设备开机失败时,将故障信息通过通讯模块16发送给云端服务器。主芯片11,还用于根据读取的第二目标数据判断共享设备是否发生故障。
以图6为例,在设备卡槽13的底部设置6个数据电源脚181-186,其中数据电源脚181和182是正极电源脚GND和负极电源脚VBUS,数据电源脚183和184是第一数据传输脚TX1和RX1,数据电源脚185和186是第二数据传输脚TX2和RX2。上述各数据电源脚与主芯片11和电源管理模块19的连接关系在图1中未示出。
当共享设备的尾部完全插入设备卡槽13的底部时,设备卡槽13底部的数据电源脚18可与该共享设备尾部露出的数据电源脚相接触。
进一步的,为使得共享设备能够更为顺滑地插入设备卡槽13,并确保共享 设备在插入设备卡槽13中时不会插反,在该设备卡槽13中做防呆设计。具体的,如图6所示,在设备卡槽13的上下两个内侧的侧壁上分别设置有多个凸起的棱132。多个棱132自设备卡槽13的槽口向设备卡槽13的底部延伸,且设备卡槽13上内侧(朝向共享设备的正面,通常为共享设备的具有显示屏的一面)的侧壁上的棱为偏心设计,即棱的宽高面与侧壁之间具有一定的角度,其角度范围例如15度至80度。
进一步的,设备卡槽13的深度小于共享设备的长度,例如:当个共享设备的尾部完全插入设备卡槽13的底部时,共享设备的四分之三位于设备卡槽13内,其余四分之一露于设备卡槽13之外,便于用户拿取。
该共享设备租赁装置通过接触式通信的方式与RFID芯片进行通信,既保留了RFID芯片占用体积小的优点,同时避免了射频通信无法控制距离和发射范围的缺陷。该共享设备租赁装置内部无需增加RFID读写器和天线,因此可降低硬件成本。
进一步地,该共享设备租赁装置还包括多个外挂设备,这些外挂设备可拆卸地设置在柜体10的外表面,外挂设备包括:传感器20、摄像头21、扫码器22和显示屏23。该共享设备租赁装置中设置有外挂设备管理模块24,外挂设备管理模块24根据主芯片11的指令,控制这些外挂设备的运行。
传感器20,用于检测是否有用户接近,具体可以为红外传感器或震动传感器等。
摄像头21,用于在主芯片11的控制下,通过拍摄用户或者用户出示的证件等方式,获取用户特征,用户特征包括用户的脸部特征、虹膜特征、指纹特征等生物特征,以及,用户姓名、证件号等身份特征。
扫码器22用于扫描条码,该条码可以是付费条码,也可以是认证用户身份的条码。
显示屏23,用于显示文字提示信息和/或用户特征采集界面,文字提示信息 可包括:可供租赁的共享设备数量、位置或警告信息等。可设置在该共享设备租赁装置的正面。上述外挂设备可自由拆卸、更换,提高了使用的便捷性。
进一步地,在机柜10正面每个设备卡槽13槽口的旁边位置都对应设置一个租赁按钮25,租赁按钮25被按压下后可触发租赁操作,主芯片11响应于该租赁操作开始工作,用户可通过按压租赁按钮25,开启租赁其对应的设备卡槽13内的共享设备的操作。
进一步地,该共享设备租赁装置上设置有电源指示灯26、故障指示灯27。
电源指示灯26,用于提示共享设备的电量信息。
故障指示灯27,用于提示共享设备发生故障。
进一步的,在每个设备卡槽13的槽口内侧设置红外线感应器,该红外线感应器电性连接于主芯片11,用于根据该感应数据采集的红外线感应数据并发送给主芯片11。主芯片11还用于在向电磁锁发送弹出控制指令之后,根据该红外线感应器发送的感应数据,判断超过预置时长后,该弹出控制指令指向的设备卡槽是否仍被占用,若仍被占用,则向电磁锁发送锁死控制指令,以使得电磁锁重新锁死卡扣,从而保证共享设备的安全,确保租赁数据的准确性。
本发明实施例中,通过共享设备租赁装置的主芯片控制电磁锁打开设备卡槽的卡扣,设备卡槽的弹簧弹出共享设备,当共享设备插入该设备卡槽时,主芯片控制电子卡座锁住该共享设备。通过电磁锁、卡扣以及弹簧的设置可以更为便捷地弹出和回收共享设备,提高租赁装置的易用性。进一步的,通过电源数据脚为该共享设备充电和从该共享设备中读取各种数据,将获取的数据发送给云端服务器进行处理,可提高对该共享设备中的数据处理能力,极大地提高该共享设备在租赁过程中的数据处理成功率和数据处理量,使得租赁过程顺利完成,满足具有更复杂结构的租赁设备的共享租赁业务需求,提高用户体验。
请参阅图7,图7为本发明提供的共享设备租赁方法的实现流程示意图,可也能用于通过前述实施例中的共享设备租赁装置,实现共享设备租赁,本实 施例中的共享设备租赁装置的结构参见前述图1至图6所示实施例,该方法包括以下步骤:
S201、租赁装置通过主芯片响应于租赁操作,控制电磁锁打开设备卡槽中的卡扣,并通过弹簧将插在该设备卡槽中的共享设备弹出;
主芯片与电磁锁电性连接,卡扣和弹簧设置在设备卡槽中,电磁锁连接卡扣,共享设备租赁装置的具体结构参见前述图1至图6所示实施例。
用户可以通过手机APP向云端服务器发起租赁请求,云端服务器发送租赁指令给共享设备租赁装置的主芯片,触发租赁操作。或者,用户按压共享设备租赁装置上的租赁按钮,触发租赁操作,租赁按钮将操作电信号发送给主芯片。
主芯片响应于触发的租赁操作,控制摄像头开启,通过摄像头和扫码器等记录、识别当前租借人的用户特征和租借相关信息。主芯片控制电磁锁打开设备卡槽中的卡扣,设置在设备卡槽底部的弹簧将插在设备卡槽中的共享设备弹出,用户取走该共享设备后,主芯片将该共享设备的租借相关信息更新并上报给云端服务器,该租借相关信息包括租借人的用户信息、租借起始时间、该共享设备的租借次数、型号、属性数据等信息。
若经过预设时长,检测到设备卡槽仍被占用,说明用户未取走该共享设备,则主芯片控制电磁锁锁住卡扣,以重新锁死该共享设备。具体的,主芯片可根据设置在每个设备卡槽的槽口内侧的红外线感应器发送的感应数据,判断用户是否取走共享设备。
S202、当共享设备被插入设备卡槽时,通过主芯片控制电磁锁锁住卡扣,以使得卡扣锁死共享设备。
用户在归还该共享设备时,直接将该共享设备插入任意空着的一个设备卡槽中,或者按照租赁APP的指示,将该共享设备插入到指定的一个空着的设备卡槽中。当共享设备被插入该设备卡槽时,该主芯片控制该电磁锁锁住,该设备卡槽中的卡扣锁死该共享设备。
进一步的,当共享设备被插入设备卡槽时,租赁装置通过内置的解读器获取该共享设备的唯一身份标识信息,通过主芯片控制电源管理模块为该共享设备进行充电并检测该共享设备是否发生故障。若该共享设备发生故障,则通过主芯片向云端服务器发送故障信息和该共享设备的唯一身份标识信息,并控制租赁装置的故障显示灯点亮和/或在租赁装置的显示屏上显示故障信息。若该共享设备未发生故障,则通过主芯片向该共享设备发送数据清除指令,数据清除指令用于清除共享设备中的第一目标数据。
或者,若该共享设备未发生故障,则通过主芯片读取该共享设备中的第二目标数据,并将该共享设备的唯一身份标识信息和读取的第二目标数据发送给云端服务器。
其中,检测该共享设备是否发生故障可具体包括:通过主芯片指令该共享设备重新开机,若该共享设备开机失败,则确认该共享设备发生故障,若该共享设备开机成功,则确认该共享设备未发生故障。
或者,检测该共享设备是否发生故障还可具体包括:若该共享设备开机成功,则读取该共享设备的器件数据,并将读取的器件数据与预设数据进行比较,若器件数据与预设数据不一致,则确认该共享设备发生故障,若器件数据与预设数据一致,则确认该共享设备未发生故障。
在该共享设备插入设备卡槽后,主芯片读取该共享设备的属性数据,并给该共享设备充电。进一步的,主芯片还读取该共享设备的器件数据,根据器件数据判断该共享设备是否损坏,例如屏幕是否碎裂、数据线是否缺失等。或者,主芯片也可将该器件数据发送给云端服务器进行判断。
或者,主芯片控制该共享设备开机,若该共享设备无法开机,则向云端服务器发送该共享设备的故障信息,并控制该共享设备租赁装置的故障显示灯点亮和/或在该共享设备租赁装置的显示屏上显示故障信息。
上述各判断归还的该共享设备是否损坏,是否出现故障的方式可以同时进 行,根据判断结果综合确认结果。可以理解的,也可以定时对在设备卡槽中的共享设备进行上述的故障检测。
进一步地,共享设备开机后将属性数据和器件数据发送给主芯片,主芯片将该属性数据和器件数据上报到云端服务器,或者,共享设备在开机后自动运行预置的租赁APP,通过租赁APP将属性数据和器件数据直接传给云端服务器。云端服务器根据接收的属性数据和器件数据进行校验,确认归还的共享设备即为之前出借的共享设备,并且共享设备无损坏、无故障后将押金从租赁APP中退还给用户。
具体地,租赁设备的设备卡槽底部设置有数据电源脚,对应的,该共享设备的尾部也设置有数据电源脚。当该共享设备的尾部插入该设备卡槽的底部,该共享设备的数据电源脚与租赁装置的数据电源脚相接触时,主芯片通过上述数据电源脚为该共享设备充电并读取该共享设备中内置的RFID芯片中的属性数据并上传给该云端服务器进行校验。进一步的,为提高安全性,将属性数据写入RFID芯片后,对RFID芯片中写入属性数据的存储区域进行加锁处理,以保证该存储区域中存储的数据后续无法被修改。
进一步地,共享设备租赁装置还包括传感器、摄像头、扫码器、扬声器和显示屏,当通过该传感器检测到有人接近该共享设备租赁装置时,通过主芯片控制摄像头进行拍摄,当检测到无新的租借订单产生,但该共享设备被从卡槽设备中被取出时,通过扬声器发出声音警告,并将摄像头采集的图像信息发送给云端服务器,以使云端服务器根据该图像信息生成报警信息发送给指定的管理人员,具体可以通过邮件、信息、电话等方式发送。提高该共享设备租赁装置的安全性,以及降低损失。
进一步地,在共享设备共享装置中设置有内置电源,在外部电源无法使用时为主芯片、传感器、摄像头、扫码器、扬声器和显示屏构成的防盗系统提供电源,保证该防盗系统各器件正常运行,在外部电源可用时使用时,控制该外 部电源为该内置电源充电。通过该内置电源为该防盗系统供电,避免只有外部电源时,该外部电源先被破坏导致防盗系统无法工作。
进一步地,当接收到云端服务器发送的用户归还完成的信息时,向云端服务器发送清除预先指定的用户信息的请求,以使云端服务器从数据库中清除该预先指定清除的用户信息,该用户信息可包括用户的个人信息和该共享设备中因该用户使用生成的信息。提高用户的信息安全性和保密性。
本实施例未尽之细节,可参考其他实施例的相关描述。
本发明实施例中,通过共享设备租赁装置的主芯片控制电磁锁打开设备卡槽的卡扣,设备卡槽的弹簧弹出共享设备,当共享设备插入该设备卡槽时,主芯片控制电子卡座锁住该共享设备。通过电磁锁、卡扣以及弹簧的设置可以更为便捷地弹出和回收共享设备,提高租赁装置的易用性。进一步的,通过电源数据脚为该共享设备充电和从该共享设备中读取各种数据,将获取的数据发送给云端服务器进行处理,可提高对该共享设备中的数据处理能力,极大地提高该共享设备在租赁过程中的数据处理成功率和数据处理量,使得租赁过程顺利完成,满足具有更复杂结构的租赁设备的共享租赁业务需求,提高用户体验。
请参阅图8,图8是本发明实施例提供的共享设备租赁系统的结构示意图,为了便于说明,仅示出了与本发明实施例相关的部分。图8示例的共享设备租赁系统包括前述图1至图6所示实施例提供的租赁装置。该系统主要包括:
共享设备301、租赁装置302和云端服务器303。
如图1所示,租赁装置302包括:柜体10、电源管理模块19、通讯模块16、解读器34和设置在柜体10中的主芯片11、电磁锁12、设备卡槽13、卡扣14和弹簧15。
如图9所示,共享设备301包括:处理器3011、RFID芯片3012和存储器3013。存储器上存储有可被处理器3011执行的计算机程序。该存储器还用于存储该计算机程序生成的用户数据。在实际应用中,共享设备301例如可以是翻 译机、媒体播放器以及平板电脑等具有用户数据记录功能的电子设备。
在未租赁之前,共享设备301插在租赁装置302的设备卡槽13中,租赁装置302的电磁锁12锁住卡扣14,以将所有的共享设备301锁死在设备卡槽13中。
租赁装置302通过通讯模块16与云端服务器303建立数据连接。
租赁装置302,用于响应于租赁操作,通过该主芯片11控制租赁装置302内的电磁锁12打开该租赁信息指向的目标设备卡槽13内的卡扣14,并通过该目标设备卡槽13中的弹簧15将插在该设备卡槽13中的共享设备301弹出。
租赁装置302,还用于当共享设备301插入该设备卡槽13中时,通过该主芯片11控制该电磁锁12锁住该卡扣14以锁死插入的共享设备301,并控制该电源管理模块19为该插入的共享设备301进行充电,通过该解读器34读取该RFID芯片中存储的该插入的共享设备301的唯一身份标识信息,并通过通讯模块16将该唯一身份标识信息发送给云端服务器303。
租赁装置302,还用于通过该主芯片11对该插入的共享设备301进行故障检测,并当检测到该插入的共享设备301发生故障时,将该插入的共享设备301的唯一身份标识信息和故障信息发送给云端服务器303。
进一步的,租赁装置302的设备卡槽13中还设置有红外线传感器。在通过弹簧15将插在该设备卡槽13中的共享设备301弹出后,租赁装置302还用于通过该主芯片11,根据红外线传感器发送给主芯片11的感应数据,判断共享设备301是否被用户取走。若被用户取走,则通过通讯模块16,将被取走的共享设备301的唯一身份标识信息和取走时间发送给云端服务器303。云端服务器303,还用于根据租赁装置302发送的唯一身份标识信息和取走时间,更新被取走的共享设备301的租赁数据。若超过预设时长,弹出的共享设备301未被用户取走,则租赁装置302通过该主芯片11控制该电磁锁12重新锁住该卡扣14,并向云端服务器303发送通知信息,以通知云端服务器303,共享设备 301未被取走。
进一步的,如图1所示,租赁装置302的设备卡槽13的底部还设置有数据电源脚18,对应的,如图9所示,共享设备301的尾部设置有数据电源脚3014。共享设备301还包括充电电池模组3015。处理器3011、存储器3013、充电电池模组3015可通过总线电性相连。
数据电源脚18包括:与电源管理模块19电性连接的正极电源脚和负极电源脚,与解读器34电性相连的的第一数据传输脚以及与主芯片11电性相连的第二数据传输脚。数据电源脚3014包括:与RFID芯片电性相连的RFID触点,与充电电池模组3015电性相连的正极充电触点和负极充电触点,以及,与处理器3011和/或存储器3013电性相连的数据传输脚。通过数据电源脚18和数据电源脚3014,租赁装置302读取共享设备301中的相关数据,并将相关数据发送给云端服务器303进行处理。云端服务器303还用于对租赁装置302发送的数据进行处理,如根据该数据判断插入设备卡槽13的共享设备是否发生故障,管理该共享设备的租赁数据等等。
以翻译机为例,在租借的场景下,用户通过按压租赁装置机体上的租赁按钮触发租赁操作,租赁装置的主芯片响应于该租赁操作,控制打开扫码器扫码用户手机上的二维码,以得到该用户的账户信息。然后,该主芯片控制该租赁按钮指向的设备卡槽对应的电磁锁打开该设备卡槽上的卡扣,该设备卡槽底部的弹簧借机将插在该设备卡槽中的翻译机弹出。之后,当检测到该翻译机被取走后,该主芯片将包含该翻译机的身份标识信息、被取走时间以及该用户的账户信息的租借数据发送给云端服务器。云端服务器存储接收的租借数据,并根据该用户的账户信息,将押金从该用户的账户上的扣除。若超过预设时长,该翻译机仍未被取走,则该主芯片控制该电磁锁锁住该卡扣,以重新锁死该翻译机,并发送通知信息给云端服务器,该通知信息用于通知云端服务器租赁不成功。云端服务器根据该通知信息,结束本次租赁操作,并向该用户的手机发送 租赁失败的通知信息。
在归还的场景下,该用户将该翻译机插入该租赁装置上的任意一个空置的设备卡槽。当该翻译机被完全插入该空置的设备卡槽的底部时,该翻译机尾部的第二数据电源脚与该空置的设备卡槽底部的第一数据电源脚相接触,该第一数据电源脚向该租赁装置的主芯片发送高电平的热插拔设备检测信号,以通知有翻译机被插入。该主芯片控制该空置的设备卡槽对应的电磁锁锁住该控制的设备卡槽上的卡扣,以使得该卡扣锁死插入的翻译机,同时,控制电源管理模块为该翻译机充电。该主芯片还通过解读器读取该翻译机的RFID芯片中存储的该翻译机的唯一身份标识信息,并通过第一数据电源脚指令该翻译机重新启动。
一方面,若接收到该翻译机发送的重启成功的反馈信息,则该主芯片确认该翻译机无故障,将该翻译机的唯一身份标识信息发送给云端服务器。同时,该主芯片还通过第一数据电源脚指令该翻译机执行初始化操作,以清除该翻译机中存储的用户数据,如:录制的音频数据、翻译数据等等,从而保障用户个人数据的信息安全。云端服务器根据该主芯片发送的该翻译机的唯一身份标识信息,确认该翻译机返还成功,将扣除的押金返回到该用户的账户,并将租金从该用户的账户上扣除。
另一方面,若超过预设时长未接收到该翻译机发送的重启成功的反馈信息,则该主芯片确认该翻译机发生故障,向云端服务器发送故障信息及该翻译机的唯一身份标识信息。云端服务器根据该故障信息,向预留的手机发送故障通知信息,以通知返还的翻译机发生故障,从而实现故障翻译机的快速回收及维护。该预留的手机包括租借用户的手机,还包括维修人员的手机。同时,云端服务器还根据该故障信息及该翻译机的唯一身份标识信息,确认该翻译机返还成功,将扣除的押金返回到该用户的账户,并将租金和维修费从该用户的账户上扣除。
在防盗的场景下,租赁装置的主芯片在通过红外线传感器感应到有人靠近 时,控制摄像头开启,拍摄镜头前的景象。当检测到有翻译机被从设备卡槽中取出时,查询当前是否有触发租赁操作的记录或者是否有新的租借订单产生,若当前无触发租赁操作的记录或无新的租借订单产生,则通过扬声器发出声音警告并生成报警信息,将拍摄的图像或影像信息及该报警信息发送给云端服务器,以使该云端服务器根据该图像信息生成报警信息发送给指定的管理人员,从而保障租赁装置中待租赁的翻译机的安全,避免翻译机被盗,并有利于尽快追回被盗设备。
本实施例未尽之细节,请参阅前述图1~图7所示实施例的描述。
本发明实施例中,通过共享设备租赁装置的主芯片控制电磁锁打开设备卡槽的卡扣,设备卡槽的弹簧弹出共享设备,当共享设备插入该设备卡槽时,主芯片控制电子卡座锁住该共享设备。通过电磁锁、卡扣以及弹簧的设置可以更为便捷地弹出和回收共享设备,提高租赁装置的易用性。此外,租赁装置通过接触式通信的方式与RFID芯片进行通信,既保留了RFID芯片占用体积小的优点,同时避免了射频通信无法控制距离和发射范围的缺陷,并降低了硬件成本。
以上为对本发明所提供的共享设备租赁装置、方法及系统的描述,对于本领域的技术人员,依据本发明实施例的思想,在具体实施方式及应用范围上均会有改变之处,综上,本说明书内容不应理解为对本发明的限制。

Claims (10)

  1. 一种共享设备租赁装置,其特征在于,包括:
    柜体、电源管理模块和设置在所述柜体中的主芯片、电磁锁、设备卡槽、卡扣和弹簧;
    所述主芯片与所述电源管理模块和所述电磁锁电性连接;
    所述卡扣和弹簧设置在所述设备卡槽中,所述电磁锁连接所述卡扣;
    所述主芯片,用于控制所述电磁锁打开或锁住所述卡扣;
    所述弹簧,用于在所述主芯片控制所述电磁锁打开所述卡扣后,将插在所述设备卡槽中的共享设备弹出。
  2. 根据权利要求1所述的装置,其特征在于,所述装置还包括电性连接于所述主芯片和所述电磁锁的控制板,所述电磁锁包括连接杆和驱动器,所述设备卡槽的与所述设备卡槽的底部垂直的一侧设置有凸起部,所述卡扣的一端固定在所述连接杆上,另一端固定在所述凸起部;
    所述控制板还与所述驱动器电性连接,用于响应于所述主芯片发送的控制指令,控制所述驱动器驱使所述连接杆沿着与设备卡槽底部平行的方向位移,并向所述主芯片反馈控制结果。
  3. 根据权利要求1所述的装置,其特征在于,所述设备卡槽内部的底端设置有数据电源脚,所述数据电源脚包括与所述电源管理模块电性连接的正极电源脚和负极电源脚,所述共享设备的尾端设置有正极充电触点和负极充电触点;
    所述主芯片,还用于当所述共享设备的正极充电触点和负极充电触点与所述正极电源脚和所述负极电源脚相接触时,为所述共享设备充电。
  4. 根据权利要求1所述的装置,其特征在于,
    所述装置还包括电性连接于所述主芯片的解读器和通讯模块,所述数据电源脚还包括与所述解读器电性连接的第一数据传输脚,所述共享设备上设置有射频识别芯片,所述共享设备的尾部还设置有与所述射频识别芯片电性连接的 射频识别触点;
    所述主芯片,还用于当所述射频识别触点与所述第一数据传输脚相接触时,通过所述解读器读取所述射频识别芯片中存储的唯一身份标识信息;
    所述主芯片,还用于通过所述通讯模块将读取的唯一身份标识信息发送给云端服务器;
    所述数据电源脚还包括第二数据传输脚,所述共享设备的尾部还设置有与所述共享设备的处理器和/或存储器电性连接的数据传输脚;
    所述主芯片,还用于当所述数据传输脚与所述第二数据传输脚相接触时,向所述共享设备发送用于清除所述共享设备中的第一目标数据的第一指令;
    所述主芯片,还用于当所述数据传输脚与所述第二数据传输脚相接触时,读取所述共享设备中的第二目标数据,并将所述第二目标数据通过所述通讯模块发送给所述云端服务器;
    所述主芯片,还用于当所述数据传输脚与所述第二数据传输脚相接触时,向所述共享设备发送用于控制所述共享设备重新开机的第二指令;
    所述主芯片,还用于当所述共享设备开机失败时,将故障信息通过所述通讯模块发送给云端服务器。
  5. 根据权利要求3所述的装置,其特征在于,所述装置还包括:外挂设备,所述外挂设备可拆卸地设置在所述柜体外表面;
    所述外挂设备包括:传感器、摄像头、扫码器和显示屏;
    所述传感器,用于检测是否有用户接近;
    所述摄像头,用于获取用户特征;
    所述扫码器,用于扫描条码;
    所述显示屏,用于显示文字提示信息和/或所述用户特征采集界面。
  6. 一种共享设备租赁方法,应用于通过共享设备租赁装置租赁共享设备,其特征在于,所述共享设备租赁装置包括柜体以及设置在所述柜体中的主芯片、 电源管理模块、电磁锁和设备卡槽,所述设备卡槽中设置有卡扣和弹簧,所述主芯片与所述电源管理模块和所述电磁锁电性连接,所述电磁锁连接所述卡扣,所述方法包括:
    通过所述主芯片响应于租赁操作,控制所述电磁锁打开所述卡扣,并通过所述弹簧将插在所述设备卡槽中的共享设备弹出;
    当所述共享设备被插入所述设备卡槽时,通过所述主芯片控制所述电磁锁锁住所述卡扣,以使得所述卡扣锁死所述共享设备。
  7. 根据权利要求6所述的方法,其特征在于,所述共享设备租赁装置还包括解读器,所述方法还包括:
    当所述共享设备被插入所述设备卡槽时,通过所述解读器获取所述共享设备的唯一身份标识信息,通过所述主芯片控制所述电源管理模块为所述共享设备进行充电并检测所述共享设备是否发生故障;
    若所述共享设备发生故障,则通过所述主芯片向云端服务器发送故障信息和所述唯一身份标识信息,并控制所述共享设备租赁装置的故障显示灯点亮和/或在所述共享设备租赁装置的显示屏上显示故障信息;
    若所述共享设备未发生故障,则通过所述主芯片向所述共享设备发送数据清除指令,所述数据清除指令用于清除所述共享设备中的第一目标数据;
    或者,若所述共享设备未发生故障,则通过所述主芯片读取所述共享设备中的第二目标数据,并将所述唯一身份标识信息和读取的第二目标数据发送给所述云端服务器。
    其中,所述检测所述共享设备是否发生故障具体包括:
    指令所述共享设备重新开机,若所述共享设备开机失败,则确认所述共享设备发生故障,若所述共享设备开机成功,则确认所述共享设备未发生故障;
    或者,
    若所述共享设备开机成功,则读取所述共享设备的器件数据,并将读取的 器件数据与预设数据进行比较,若所述器件数据与所述预设数据不一致,则确认所述共享设备发生故障,若所述器件数据与所述预设数据一致,则确认所述共享设备未发生故障。
  8. 根据权利要求7所述的方法,其特征在于,所述共享设备租赁装置还包括传感器、摄像头、扫码器、扬声器和显示屏,所述方法还包括:
    通过传感器检测到有人接近时,通过所述主芯片控制所述摄像头进行拍摄;
    当检测到在无新的租借订单产生,但所述共享设备被从所述卡槽设备中取出时,通过所述扬声器发出声音警告,并将所述摄像头采集的图像信息发送给所述云端服务器,以使所述云端服务器根据所述图像信息生成报警信息发送给指定的管理人员。
  9. 根据权利要求8所述的方法,其特征在于,所述方法还包括:
    当接收到所述云端服务器发送的用户归还完成的信息时,向所述云端服务器发送清除预先指定的所述用户信息的请求,以使所述云端服务器清除所述用户信息。
  10. 一种共享设备租赁系统,其特征在于,所述系统包括:
    内置射频识别芯片的共享设备、租赁装置和云端服务器;
    所述租赁装置包括:柜体、电源管理模块、通讯模块、解读器和设置在所述柜体中的主芯片、电磁锁、设备卡槽、卡扣和弹簧;
    所述租赁装置通过所述通讯模块与所述云端服务器建立数据连接;
    所述租赁装置,用于响应于租赁操作,通过所述主芯片控制所述租赁装置内的电磁锁打开所述租赁信息指向的目标设备卡槽内的卡扣,并通过所述目标设备卡槽中的弹簧将插在所述设备卡槽中的共享设备弹出;
    所述租赁装置,还用于当所述共享设备插入所述设备卡槽中时,通过所述主芯片控制所述电磁锁锁住所述卡扣以锁死插入的共享设备,并控制所述电源管理模块为所述插入的共享设备进行充电,通过所述解读器读取所述射频芯片 中存储的所述插入的共享设备的唯一身份标识信息,并通过所述通讯模块将所述唯一身份标识信息发送给所述云端服务器;
    所述租赁装置,还用于通过所述主芯片对所述插入的共享设备进行故障检测,并当检测到所述插入的共享设备发生故障时,将所述插入的共享设备的唯一身份标识信息和故障信息发送给所述云端服务器。
PCT/CN2019/084551 2018-09-19 2019-04-26 共享设备租赁装置、方法及系统 WO2020057128A1 (zh)

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