CN110856130A - Intelligent lock control system with base station and method - Google Patents
Intelligent lock control system with base station and method Download PDFInfo
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- CN110856130A CN110856130A CN201910867500.8A CN201910867500A CN110856130A CN 110856130 A CN110856130 A CN 110856130A CN 201910867500 A CN201910867500 A CN 201910867500A CN 110856130 A CN110856130 A CN 110856130A
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- 238000000034 method Methods 0.000 title claims description 13
- 238000004891 communication Methods 0.000 claims abstract description 62
- QVFWZNCVPCJQOP-UHFFFAOYSA-N chloralodol Chemical compound CC(O)(C)CC(C)OC(O)C(Cl)(Cl)Cl QVFWZNCVPCJQOP-UHFFFAOYSA-N 0.000 claims abstract description 10
- 238000007726 management method Methods 0.000 claims description 32
- 230000009471 action Effects 0.000 claims description 3
- 230000006399 behavior Effects 0.000 claims description 3
- 230000002093 peripheral effect Effects 0.000 claims description 3
- 230000008569 process Effects 0.000 claims description 3
- 230000003993 interaction Effects 0.000 claims 1
- 238000012546 transfer Methods 0.000 abstract description 3
- 238000013461 design Methods 0.000 abstract description 2
- 238000005516 engineering process Methods 0.000 abstract description 2
- 238000012986 modification Methods 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
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Classifications
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/30—Services specially adapted for particular environments, situations or purposes
- H04W4/33—Services specially adapted for particular environments, situations or purposes for indoor environments, e.g. buildings
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- G—PHYSICS
- G07—CHECKING-DEVICES
- G07C—TIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
- G07C9/00—Individual registration on entry or exit
- G07C9/00174—Electronically operated locks; Circuits therefor; Nonmechanical keys therefor, e.g. passive or active electrical keys or other data carriers without mechanical keys
- G07C9/00571—Electronically operated locks; Circuits therefor; Nonmechanical keys therefor, e.g. passive or active electrical keys or other data carriers without mechanical keys operated by interacting with a central unit
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- G—PHYSICS
- G07—CHECKING-DEVICES
- G07F—COIN-FREED OR LIKE APPARATUS
- G07F17/00—Coin-freed apparatus for hiring articles; Coin-freed facilities or services
- G07F17/0042—Coin-freed apparatus for hiring articles; Coin-freed facilities or services for hiring of objects
- G07F17/0057—Coin-freed apparatus for hiring articles; Coin-freed facilities or services for hiring of objects for the hiring or rent of vehicles, e.g. cars, bicycles or wheelchairs
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/80—Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W8/00—Network data management
- H04W8/005—Discovery of network devices, e.g. terminals
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W88/00—Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
- H04W88/08—Access point devices
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W64/00—Locating users or terminals or network equipment for network management purposes, e.g. mobility management
Abstract
The invention provides an intelligent lock control system with base stations, which comprises a terminal, a server, base stations and an electronic lock, wherein the terminal is in communication connection with the server through HTTP (S), a plurality of base stations are distributed in a shopping cart taking area, a supermarket shopping area and a shopping cart returning area, the base stations are in communication connection with the server through sockets, the electronic lock is installed on a shopping cart, the electronic lock is connected with the base stations through WIFI, GPRS, 4G, 5G, LORA, NBiot, Bluetooth or NFC, and the server monitors the electronic lock through the base stations, and the intelligent lock control system has the advantages that: the supermarket shopping cart management system has the advantages that the technology is mature and stable, the system architecture is reasonable, the operation is stable and convenient, the cost is low, the supermarket shopping cart is managed through a server-base station-electronic lock mode, the base station is equivalent to a transfer station for communication between the shopping cart and a server, the internal structure design of the lock is simple, the working pressure of the server is reduced, the shopping cart can be positioned indoors through the base station, and the unlocking is quick, stable and convenient; the identification of the car returning operation is simple and real-time.
Description
[ technical field ] A method for producing a semiconductor device
The invention relates to an intelligent lock control system and method, in particular to an intelligent lock control system with a base station and a method.
[ background of the invention ]
The management of the existing supermarket shopping cart mainly comprises three management methods: firstly, due to the popularization of convenient payment modes such as mobile payment and the like, most people cannot carry coins at present, so that the shopping cart managed by the method is low in utilization rate; secondly, management is directly carried out through manpower, customers borrow and return at any time, the method is time-consuming and labor-consuming, and the shopping cart is easy to lose; and thirdly, the shopping cart is taken and returned through the mobile phone, but the existing mobile phone is unstable in unlocking, the lock of the shopping cart is directly connected with the server in a communication manner, so that the internal structure of the lock is complex, the power consumption is high, the cost is high, the shopping cart cannot be positioned indoors, and the shopping cart management is not convenient.
[ summary of the invention ]
The invention aims to solve the problems existing in the current supermarket shopping cart management, and provides an intelligent lock control system with a base station and a method.
The invention is realized by the following technical scheme: an intelligent lock control system with a base station comprises a terminal, a server, the base station and an electronic lock;
the terminal: the system comprises a hardware terminal and a terminal application, wherein the hardware terminal is a universal mobile device or an electronic device independently developed for an electronic lock, the terminal application is arranged in the hardware terminal, a user directly enters the terminal application after scanning a code through the mobile terminal, the application mainly provides functions of unlocking, locking and checking historical records for the client, and provides guidance information of vehicle allowance information, a vehicle taking and returning position and a vehicle returning mode and a basic management function, and the terminal application comprises but is not limited to a WeChat (Payment treasure) applet, a public (service) number, an H5 page or a specially manufactured independent electronic peripheral;
the server side: the management background provides a unified management background for multiple merchants in a SaaS mode, has perfect intelligent lock and base station management functions, and provides more additional functions; the API interface provides interface service for the third-party merchant system to interface and provides information records of all intelligent locks, base stations and customers under the name of the corresponding merchant; the back-end service establishes long connection with the base station through TCP/Socket, and is responsible for forwarding unlocking operation from the terminal application to the base station in real time, recording user operation behaviors, receiving reported information from the base station in real time, analyzing, sorting and synchronizing the reported information to a related cache database and a related relational database, and timing or planning tasks are responsible for daily data sorting and analyzing work;
the base station: the special equipment with the Bluetooth and the Internet of things communication module can collect and report the relevant state information of the electronic lock existing near the equipment to the server side in real time, and meanwhile, can receive an unlocking request from the server side and send the unlocking request to a specified electronic lock for unlocking operation;
the electronic lock is characterized in that: the electronic lock device is arranged on a shopping cart and provided with a Bluetooth communication module, a graphic code marked with a device exclusive code is arranged on the device, a user can perform unlocking and locking operations by scanning the code through a terminal application, and the device can automatically broadcast a self state signal through Bluetooth in the running process for a base station to collect;
the terminal is in communication connection with the server through HTTP (S), the base stations are distributed in a shopping cart taking area, a supermarket shopping area and a shopping cart returning area, the base stations are in communication connection with the server through sockets, the electronic lock is installed on the shopping cart, the electronic lock is connected with the base stations through WIFI, GPRS, 4G, 5G, LORA, NBiot, Bluetooth or NFC, and the server monitors the electronic lock through the base stations.
Further, the terminal includes a main function, an additional function, and a management function, and the terminal is a general mobile device (including but not limited to a mobile phone, a platform, and a palm computer) or an electronic device developed independently for an electronic lock, and a device that may unlock, lock, or view related information with or without a user interface.
Further, the server provides a network server and a service program including, but not limited to, a background homepage, a management center, merchant management, equipment management, user management, a work order system, data statistics and log management.
Further, the base station includes but is not limited to control circuit, communication module (WIFI, GPRS, 4G, 5G, LORA, NBiot, bluetooth, NFC), battery, shell subassembly, the base station is through communication module and one or more communication device that correspond communication protocol control.
Further, the electronic lock includes but not limited to control circuit, communication module (WIFI, GPRS, 4G, 5G, LORA, NBiot, bluetooth, NFC), mechanical structure, battery, shell subassembly, the tool to lock that the electronic lock carries out control through communication module and corresponding communication protocol.
A control method of an intelligent lock with a base station comprises the following specific steps:
s1, the user identifies the pattern identification code containing the lock information on the electronic lock through the terminal equipment, or identifies the plaintext or encrypted wireless information broadcasted by the electronic lock through the communication module, and obtains the related information of the electronic lock after decoding through the application, and the communication relation is directly established with the corresponding electronic lock through the communication module; or after the information is forwarded to the base station, the communication relation is indirectly established with the corresponding electronic lock, and the next step is carried out;
s2, if the electronic lock is in an unavailable state such as damaged, the electronic lock reports an error to the server through the base station, the terminal application of the user cannot pop up the unlocking and borrowing operation interface, the operation of the step S1 needs to be repeated, other electronic locks are identified again to obtain new electronic lock related information and establish a communication relationship, and the next step is carried out until the identified electronic lock is in an available state;
s3, after the communication relation is established between the electronic lock with the available state through the step (1): if the electronic lock is in a state of being connected with a base station, a user selects an unlocking instruction, a terminal application transmits the unlocking request to a server, the server sends the unlocking instruction to the base station connected with the electronic lock after receiving the unlocking request, the base station receives the unlocking instruction, the base station sends the unlocking instruction to a corresponding electronic lock, a communication module of the electronic lock controls a mechanical structure through an electronic circuit after receiving a related unlocking instruction, and the unlocking is successful; if the electronic lock is in a state of being connected with the base station, the user selects an unlocking instruction, the electronic lock fails to be unlocked, and at the moment, the server side automatically sends the unlocking instruction to the corresponding electronic lock through the base station after the unlocking fails to execute the unlocking task again until the unlocking is successful; if the electronic lock is in a state of being connected with the base station, the user selects an unlocking instruction, the electronic lock fails to be unlocked, the server automatically executes the unlocking instruction at the moment, the unlocking instruction exceeds a retry limit, the electronic lock reports an error to the server through the base station, the terminal application of the user prompts the user that the shopping cart cannot be used, and the operations from the step S1 to the step S3 are repeated until the unlocking is successful; if the electronic lock is not in a state of being connected with the base station, the user selects an unlocking instruction, the unlocking instruction is directly sent to the electronic lock through terminal application, and the communication module of the electronic lock controls the mechanical structure to realize unlocking action through the electronic circuit after receiving the related unlocking instruction, so that unlocking is successful; if the electronic lock is not in a state of being connected with the base station, the user selects an unlocking instruction, the unlocking instruction is directly sent to the electronic lock through terminal application, the electronic lock fails to be unlocked, the mode is automatically switched to a base station unlocking mode at the moment, and the unlocking operation is sent through the base station until the unlocking is successful; if the electronic lock is not in a state of being connected with the base station, the user selects an unlocking instruction, the unlocking instruction is directly sent to the electronic lock through the terminal application, the electronic lock fails to be unlocked, the electronic lock is automatically switched to a base station unlocking mode at the moment, the unlocking operation is sent through the base station, the unlocking instruction execution exceeds a retry limit, the electronic lock reports an error to a service end through the base station, the terminal application of the user prompts the user that the shopping cart cannot be used, the operations from the step S1 to the step S3 are repeated until the unlocking is successful, and the next step is carried out;
s4, after the unlocking is successful through the step S3, the user can take the shopping cart for use, after the shopping cart is used, the user directly opens the operation interface through the terminal or re-identifies the electronic lock information through the terminal application to open the operation interface, and the user selects a car returning instruction: if the user does not select a car returning instruction in the designated car returning area, the service end receives the car returning instruction and transmits the car returning instruction to the designated base station, the base station does not detect a corresponding electronic lock signal in the signal coverage range, and the base station reports an error to the service end at the moment, and the service end automatically generates problem feedback; if the electronic lock is not locked, the base station reports an error to the server at the moment, and the server automatically generates problem feedback; if the electronic lock is successfully locked, the normal returning operation is realized, and the service end automatically defines the electronic lock as an idle available state.
The invention has the beneficial effects that: the system has the advantages that the technology is mature and stable, the system architecture is reasonable, the operation is stable and convenient, the cost is low, the supermarket shopping cart is managed through a mode of a server-base station-electronic lock, the base station is equivalent to a transfer station for communication between the shopping cart and a server, the transfer station of the base station does not need an intelligent lock to be directly connected with the server, the internal structure design of the lock is simple, the power consumption is low, the standby time is long, the cost is low, the information of all shopping cart locks in the base station is uniformly sent to the server through the base station, the working pressure of the server is reduced, the shopping cart can be positioned indoors through the base station, and the unlocking is quick, stable and convenient during; the identification of the car returning operation is simple and real-time.
[ description of the drawings ]
FIG. 1 is a schematic diagram of an intelligent lock control system with a base station according to the present invention;
FIG. 2 is a list of terminal application function modules of the intelligent lock control system with a base station according to the present invention;
FIG. 3 is a first list of server function modules of the intelligent lock control system with a base station according to the present invention;
FIG. 4 is a second list of server function modules of the intelligent lock control system with a base station according to the present invention;
FIG. 5 is a third list of server function modules of the intelligent lock control system with a base station according to the present invention;
[ detailed description ] embodiments
The invention is further described with reference to the accompanying drawings and the detailed description:
as shown in fig. 1, an intelligent lock control system with a base station includes a terminal, a server, a base station, and an electronic lock;
the terminal: the system comprises a hardware terminal and a terminal application, wherein the hardware terminal is a universal mobile device or an electronic device independently developed for an electronic lock, the terminal application is arranged in the hardware terminal, a user directly enters the terminal application after scanning a code through the mobile terminal, the application mainly provides functions of unlocking, locking and checking historical records for the client, and provides guidance information of vehicle allowance information, a vehicle taking and returning position and a vehicle returning mode and a basic management function, and the terminal application comprises but is not limited to a WeChat (Payment treasure) applet, a public (service) number, an H5 page or a specially manufactured independent electronic peripheral;
the server side: the management background provides a unified management background for multiple merchants in a SaaS mode, has perfect intelligent lock and base station management functions, and provides more additional functions; the API interface provides interface service for the third-party merchant system to interface and provides information records of all intelligent locks, base stations and customers under the name of the corresponding merchant; the back-end service establishes long connection with the base station through TCP/Socket, and is responsible for forwarding unlocking operation from the terminal application to the base station in real time, recording user operation behaviors, receiving reported information from the base station in real time, analyzing, sorting and synchronizing the reported information to a related cache database and a related relational database, and timing or planning tasks are responsible for daily data sorting and analyzing work;
the base station: the special equipment with the Bluetooth and the Internet of things communication module can collect and report the relevant state information of the electronic lock existing near the equipment to the server side in real time, and meanwhile, can receive an unlocking request from the server side and send the unlocking request to a specified electronic lock for unlocking operation;
the electronic lock is characterized in that: the electronic lock device is arranged on a shopping cart and provided with a Bluetooth communication module, a graphic code marked with a device exclusive code is arranged on the device, a user can perform unlocking and locking operations by scanning the code through a terminal application, and the device can automatically broadcast a self state signal through Bluetooth in the running process for a base station to collect;
the terminal is in communication connection with the server through HTTP (S), the base stations are distributed in a shopping cart taking area, a supermarket shopping area and a shopping cart returning area, the base stations are in communication connection with the server through sockets, the electronic lock is installed on the shopping cart, the electronic lock is connected with the base stations through WIFI, GPRS, 4G, 5G, LORA, NBiot, Bluetooth or NFC, and the server monitors the electronic lock through the base stations.
As shown in fig. 2, the terminal includes a main function, an additional function, and a management function, and the terminal is a general mobile device (including but not limited to a mobile phone, a platform, and a palmtop computer) or an electronic device developed independently for an electronic lock, and may be a device that can unlock, lock, or view related information with or without a user interface.
As shown in fig. 3, 4 and 5, the server provides a web server and a service program including, but not limited to, a background homepage, a management center, a merchant management, a device management, a user management, a work order system, a data statistics and a log management.
Preferably, the base station includes, but is not limited to, a control circuit, a communication module (WIFI, GPRS, 4G, 5G, LORA, NBiot, bluetooth, NFC), a battery, and a housing component, and the base station is one or more communication devices controlled by the communication module and a corresponding communication protocol.
Preferably, the electronic lock includes but is not limited to control circuit, communication module (WIFI, GPRS, 4G, 5G, LORA, NBiot, bluetooth, NFC), mechanical structure, battery, shell subassembly, the electronic lock is the tool to lock that carries out control through communication module and corresponding communication protocol.
A control method of an intelligent lock with a base station comprises the following specific steps:
s1, the user identifies the pattern identification code containing the lock information on the electronic lock through the terminal equipment, or identifies the plaintext or encrypted wireless information broadcasted by the electronic lock through the communication module, and obtains the related information of the electronic lock after decoding through the application, and the communication relation is directly established with the corresponding electronic lock through the communication module; or after the information is forwarded to the base station, the communication relation is indirectly established with the corresponding electronic lock, and the next step is carried out;
s2, if the electronic lock is in an unavailable state such as damaged, the electronic lock reports an error to the server through the base station, the terminal application of the user cannot pop up the unlocking and borrowing operation interface, the operation of the step S1 needs to be repeated, other electronic locks are identified again to obtain new electronic lock related information and establish a communication relationship, and the next step is carried out until the identified electronic lock is in an available state;
s3, after the communication relation is established between the electronic lock with the available state through the step (1): if the electronic lock is in a state of being connected with a base station, a user selects an unlocking instruction, a terminal application transmits the unlocking request to a server, the server sends the unlocking instruction to the base station connected with the electronic lock after receiving the unlocking request, the base station receives the unlocking instruction, the base station sends the unlocking instruction to a corresponding electronic lock, a communication module of the electronic lock controls a mechanical structure through an electronic circuit after receiving a related unlocking instruction, and the unlocking is successful; if the electronic lock is in a state of being connected with the base station, the user selects an unlocking instruction, the electronic lock fails to be unlocked, and at the moment, the server side automatically sends the unlocking instruction to the corresponding electronic lock through the base station after the unlocking fails to execute the unlocking task again until the unlocking is successful; if the electronic lock is in a state of being connected with the base station, the user selects an unlocking instruction, the electronic lock fails to be unlocked, the server automatically executes the unlocking instruction at the moment, the unlocking instruction exceeds a retry limit, the electronic lock reports an error to the server through the base station, the terminal application of the user prompts the user that the shopping cart cannot be used, and the operations from the step S1 to the step S3 are repeated until the unlocking is successful; if the electronic lock is not in a state of being connected with the base station, the user selects an unlocking instruction, the unlocking instruction is directly sent to the electronic lock through terminal application, and the communication module of the electronic lock controls the mechanical structure to realize unlocking action through the electronic circuit after receiving the related unlocking instruction, so that unlocking is successful; if the electronic lock is not in a state of being connected with the base station, the user selects an unlocking instruction, the unlocking instruction is directly sent to the electronic lock through terminal application, the electronic lock fails to be unlocked, the mode is automatically switched to a base station unlocking mode at the moment, and the unlocking operation is sent through the base station until the unlocking is successful; if the electronic lock is not in a state of being connected with the base station, the user selects an unlocking instruction, the unlocking instruction is directly sent to the electronic lock through the terminal application, the electronic lock fails to be unlocked, the electronic lock is automatically switched to a base station unlocking mode at the moment, the unlocking operation is sent through the base station, the unlocking instruction execution exceeds a retry limit, the electronic lock reports an error to a service end through the base station, the terminal application of the user prompts the user that the shopping cart cannot be used, the operations from the step S1 to the step S3 are repeated until the unlocking is successful, and the next step is carried out;
s4, after the unlocking is successful through the step S3, the user can take the shopping cart for use, after the shopping cart is used, the user directly opens the operation interface through the terminal or re-identifies the electronic lock information through the terminal application to open the operation interface, and the user selects a car returning instruction: if the user does not select a car returning instruction in the designated car returning area, the service end receives the car returning instruction and transmits the car returning instruction to the designated base station, the base station does not detect a corresponding electronic lock signal in the signal coverage range, and the base station reports an error to the service end at the moment, and the service end automatically generates problem feedback; if the electronic lock is not locked, the base station reports an error to the server at the moment, and the server automatically generates problem feedback; if the electronic lock is successfully locked, the normal returning operation is realized, and the service end automatically defines the electronic lock as an idle available state.
Appropriate changes and modifications to the embodiments described above will become apparent to those skilled in the art from the disclosure and teachings of the foregoing description. Therefore, the present invention is not limited to the specific embodiments disclosed and described above, and some modifications and variations of the present invention should fall within the scope of the claims of the present invention. Furthermore, although specific terms are employed herein, they are used in a generic and descriptive sense only and not for purposes of limitation.
Claims (6)
1. The utility model provides a take intelligent lock control system of basic station which characterized in that: the system comprises a terminal, a server, a base station and an electronic lock;
the terminal: the system comprises a hardware terminal and a terminal application, wherein the hardware terminal is a universal mobile device or an electronic device independently developed for an electronic lock, the terminal application is arranged in the hardware terminal, a user directly enters the terminal application after scanning a code through the mobile terminal, the application mainly provides functions of unlocking, locking and checking historical records for the client, and provides guidance information of vehicle allowance information, a vehicle taking and returning position and a vehicle returning mode and a basic management function, and the terminal application comprises but is not limited to a WeChat (Payment treasure) applet, a public (service) number, an H5 page or a specially manufactured independent electronic peripheral;
the server side: the management background provides a unified management background for multiple merchants in a SaaS mode, has perfect intelligent lock and base station management functions, and provides more additional functions; the API interface provides interface service for the third-party merchant system to interface and provides information records of all intelligent locks, base stations and customers under the name of the corresponding merchant; the back-end service establishes long connection with the base station through TCP/Socket, and is responsible for forwarding unlocking operation from the terminal application to the base station in real time, recording user operation behaviors, receiving reported information from the base station in real time, analyzing, sorting and synchronizing the reported information to a related cache database and a related relational database, and timing or planning tasks are responsible for daily data sorting and analyzing work;
the base station: the special equipment with the Bluetooth and the Internet of things communication module can collect and report the relevant state information of the electronic lock existing near the equipment to the server side in real time, and meanwhile, can receive an unlocking request from the server side and send the unlocking request to a specified electronic lock for unlocking operation;
the electronic lock is characterized in that: the electronic lock device is arranged on a shopping cart and provided with a Bluetooth communication module, a graphic code marked with a device exclusive code is arranged on the device, a user can perform unlocking and locking operations by scanning the code through a terminal application, and the device can automatically broadcast a self state signal through Bluetooth in the running process for a base station to collect;
the terminal is in communication connection with the server through HTTP (S), the base stations are distributed in a shopping cart taking area, a supermarket shopping area and a shopping cart returning area, the base stations are in communication connection with the server through sockets, the electronic lock is installed on the shopping cart, the electronic lock is connected with the base stations through WIFI, GPRS, 4G, 5G, LORA, NBiot, Bluetooth or NFC, and the server monitors the electronic lock through the base stations.
2. The intelligent lock control system with a base station according to claim 1, wherein: the terminal comprises main functions, additional functions and management functions, and is universal mobile equipment (including but not limited to a mobile phone, a platform and a palm computer) or electronic equipment independently developed for an electronic lock, and equipment which has or does not have a user interaction interface and can unlock, lock or view related information.
3. The intelligent lock control system with a base station according to claim 1, wherein: the server provides a network server and a service program including but not limited to a background homepage, a management center, merchant management, equipment management, user management, a work order system, data statistics and log management.
4. The intelligent lock control system with a base station according to claim 1, wherein: the base station comprises but is not limited to a control circuit, a communication module (WIFI, GPRS, 4G, 5G, LORA, NBiot, Bluetooth and NFC), a battery and a shell assembly, and the base station is one or more communication devices controlled by the communication module and corresponding communication protocols.
5. The intelligent lock control system with a base station according to claim 1, wherein: the electronic lock comprises but is not limited to a control circuit, a communication module (WIFI, GPRS, 4G, 5G, LORA, NBiot, Bluetooth and NFC), a mechanical structure, a battery and a shell assembly, and the electronic lock is a lock controlled by the communication module and a corresponding communication protocol.
6. A control method of an intelligent lock with a base station is characterized by comprising the following specific steps:
s1, the user identifies the pattern identification code containing the lock information on the electronic lock through the terminal equipment, or identifies the plaintext or encrypted wireless information broadcasted by the electronic lock through the communication module, and obtains the related information of the electronic lock after decoding through the application, and the communication relation is directly established with the corresponding electronic lock through the communication module; or after the information is forwarded to the base station, the communication relation is indirectly established with the corresponding electronic lock, and the next step is carried out;
s2, if the electronic lock is in an unavailable state such as damaged, the electronic lock reports an error to the server through the base station, the terminal application of the user cannot pop up the unlocking and borrowing operation interface, the operation of the step S1 needs to be repeated, other electronic locks are identified again to obtain new electronic lock related information and establish a communication relationship, and the next step is carried out until the identified electronic lock is in an available state;
s3, after the communication relation is established between the electronic lock with the available state through the step (1): if the electronic lock is in a state of being connected with a base station, a user selects an unlocking instruction, a terminal application transmits the unlocking request to a server, the server sends the unlocking instruction to the base station connected with the electronic lock after receiving the unlocking request, the base station receives the unlocking instruction, the base station sends the unlocking instruction to a corresponding electronic lock, a communication module of the electronic lock controls a mechanical structure through an electronic circuit after receiving a related unlocking instruction, and the unlocking is successful; if the electronic lock is in a state of being connected with the base station, the user selects an unlocking instruction, the electronic lock fails to be unlocked, and at the moment, the server side automatically sends the unlocking instruction to the corresponding electronic lock through the base station after the unlocking fails to execute the unlocking task again until the unlocking is successful; if the electronic lock is in a state of being connected with the base station, the user selects an unlocking instruction, the electronic lock fails to be unlocked, the server automatically executes the unlocking instruction at the moment, the unlocking instruction exceeds a retry limit, the electronic lock reports an error to the server through the base station, the terminal application of the user prompts the user that the shopping cart cannot be used, and the operations from the step S1 to the step S3 are repeated until the unlocking is successful; if the electronic lock is not in a state of being connected with the base station, the user selects an unlocking instruction, the unlocking instruction is directly sent to the electronic lock through terminal application, and the communication module of the electronic lock controls the mechanical structure to realize unlocking action through the electronic circuit after receiving the related unlocking instruction, so that unlocking is successful; if the electronic lock is not in a state of being connected with the base station, the user selects an unlocking instruction, the unlocking instruction is directly sent to the electronic lock through terminal application, the electronic lock fails to be unlocked, the mode is automatically switched to a base station unlocking mode at the moment, and the unlocking operation is sent through the base station until the unlocking is successful; if the electronic lock is not in a state of being connected with the base station, the user selects an unlocking instruction, the unlocking instruction is directly sent to the electronic lock through the terminal application, the electronic lock fails to be unlocked, the electronic lock is automatically switched to a base station unlocking mode at the moment, the unlocking operation is sent through the base station, the unlocking instruction execution exceeds a retry limit, the electronic lock reports an error to a service end through the base station, the terminal application of the user prompts the user that the shopping cart cannot be used, the operations from the step S1 to the step S3 are repeated until the unlocking is successful, and the next step is carried out;
s4, after the unlocking is successful through the step S3, the user can take the shopping cart for use, after the shopping cart is used, the user directly opens the operation interface through the terminal or re-identifies the electronic lock information through the terminal application to open the operation interface, and the user selects a car returning instruction: if the user does not select a car returning instruction in the designated car returning area, the service end receives the car returning instruction and transmits the car returning instruction to the designated base station, the base station does not detect a corresponding electronic lock signal in the signal coverage range, and the base station reports an error to the service end at the moment, and the service end automatically generates problem feedback; if the electronic lock is not locked, the base station reports an error to the server at the moment, and the server automatically generates problem feedback; if the electronic lock is successfully locked, the normal returning operation is realized, and the service end automatically defines the electronic lock as an idle available state.
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CN111932739A (en) * | 2020-08-14 | 2020-11-13 | 四川巧盒物联科技有限公司 | Circulating packing box intelligent lock unlocking method based on base station communication |
CN111932737A (en) * | 2020-08-14 | 2020-11-13 | 四川巧盒物联科技有限公司 | Biological identification unlocking method for intelligent lock of packing box based on base station communication |
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