A method and system based on intelligent door lock linkage parking space ground lock
The integration of smart door locks with ground locks using LORA communication allows for coordinated vehicle parking and sharing, addressing the challenge of temporary parking access among villa residents.
Patent Information
- Application Number
- CN202510338643.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2045-03-21
AI Technical Summary
Existing smart door locks in villa areas do not effectively facilitate temporary vehicle parking sharing and coordinated access among neighbors, lacking integration with vehicle plate recognition and ground lock systems.
A method and system for integrating smart door locks with ground locks using LORA communication to manage temporary vehicle parking by requesting and allocating parking spots through a management platform, allowing for coordinated access and shared use among multiple users.
Enables orderly and shared vehicle parking by integrating smart door locks with ground locks, enhancing parking services through coordinated management across multiple door locks.
Smart Images

Figure CN119851506B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of smart door locks, and in particular to a method and system for linking a parking space ground lock with a smart door lock. Background Art
[0002] In the prior art, generally, smart door locks have a face recognition function. For family members, the door lock will automatically unlock if it finds that the family member is a family member through face similarity comparison. However, for non-family members, the door lock will not automatically unlock.
[0003] At present, the smart door locks installed on the basement doors of every household in the villa area are generally equipped with cameras. Based on the current popularity of license plate recognition and image analysis functions, the door locks of the basement doors of every household in the villa area can perform license plate recognition and automatically open the door.
[0004] However, there is currently no way to achieve coordination and linkage on how to implement temporary parking space sharing among neighbors, as well as temporary license plates and parking space access sharing within the platform. Summary of the invention
[0005] The purpose of the embodiment of the present invention is to provide a technical solution for the interaction between door locks and ground locks to achieve orderly parking and sharing of vehicles.
[0006] A first aspect of the present invention provides a method for linking a parking space ground lock with an intelligent door lock, the method comprising:
[0007] The first user sends a parking space request to the door lock management platform, and the door lock management platform forwards it to the second user; the parking space request includes the number of required parking spaces, temporary license plate information, and parking time period; the first user and the second user are users of the first user door lock and the second user door lock registered on the door lock management platform respectively; wherein the second user includes one or more users;
[0008] In response to the reply message of the second user, the door lock management platform allocates a parking space for the temporary license plate according to the parking space request, and sends the allocation result to the second user door lock; the reply message includes the second user door lock ID, the number of parking spaces provided and the corresponding parking space numbers; the allocation result includes the temporary license plate information, the allocated parking space number, and the parking time period;
[0009] The second user door lock saves the allocation result, and within the parking time period, the second user door lock detects the temporary license plate information, and controls the parking space ground lock to descend based on lora communication.
[0010] Furthermore, the method further includes a door lock registration step; the door lock registration step includes:
[0011] The smart door lock uploads the family members’ information to the door lock management platform respectively;
[0012] The door lock management platform establishes the family member information, smart door lock ID, smart door lock IP address, room number information corresponding to the smart door lock, and fixed license plate information based on the family member information, establishes a mapping relationship and stores it; wherein the family member information includes member facial information; the door lock management platform establishes a communication connection with the smart door lock and the family member APP corresponding to the smart door lock.
[0013] Further, the second user door lock saves the allocation result, and within the parking time period, the second user door lock detects the temporary license plate information, and then controls the parking space ground lock to descend based on lora communication, including:
[0014] The allocation result is saved according to the second user's door lock, and timing is started;
[0015] If the parking time period is exceeded, a deletion confirmation message is sent to the second user; and based on the second user's confirmation, the second user's door lock is controlled to delete the allocation result.
[0016] Furthermore, the second user is a plurality of users; the second user door lock is a plurality of second door locks corresponding to the plurality of users; and the method further comprises:
[0017] The allocation result is sent to the second user door lock, and at the same time, a coordination message is sent to the plurality of second door locks; the coordination message includes the first user door lock ID and the plurality of second door lock IDs;
[0018] After receiving the coordination message, the multiple second door locks forward the allocation result to the other door locks among the multiple second door locks except themselves;
[0019] The other door locks control the parking space ground lock corresponding to the allocated parking space number to descend based on lora communication according to the allocation result.
[0020] In the allocation result, different temporary license plates have different parking time periods;
[0021] Before the second user door lock saves the allocation result, the method further includes: determining whether the parking time period is within the preset temporary parking time period acceptable for the second door lock; if the parking time period is within the preset temporary parking time period acceptable for the second door lock, saving the allocation result; the preset temporary parking time period acceptable for the second door lock is preset by the second user;
[0022] The second user door lock saves the allocation result, and within the parking time period, the second user door lock detects the temporary license plate information, and then controls the parking space ground lock to descend based on lora communication, including:
[0023] If the parking time period is within the preset temporary parking period of the second door lock and any temporary license plate is detected, the parking space ground lock corresponding to the assigned parking space number is controlled to descend based on lora communication.
[0024] In addition, the second aspect of the present invention provides a system based on intelligent door lock linkage parking space ground lock, the system includes a request module, an allocation module, and a first control module; wherein:
[0025] The request module is used to send a parking space request to the door lock management platform according to the first user, and the door lock management platform forwards it to the second user; the parking space request includes the required number of parking spaces, temporary license plate information, and parking time period; the first user and the second user are users of the first user door lock and the second user door lock registered on the door lock management platform respectively; wherein the second user includes one or more users;
[0026] An allocation module, configured to respond to the reply message of the second user, the door lock management platform allocates a parking space for the temporary license plate according to the parking space request, and sends the allocation result to the second user door lock; the reply message includes the second user door lock ID, the number of parking spaces provided and the corresponding parking space numbers; the allocation result includes the temporary license plate information, the allocated parking space number, and the parking time period;
[0027] The first control module is used to enable the second user door lock to save the allocation result, and within the parking time period, when the second user door lock detects the temporary license plate information, the parking space ground lock is controlled to descend based on lora communication.
[0028] Furthermore, the system further includes a door lock registration module; the door lock registration module is used to implement:
[0029] The smart door lock uploads the family members’ information to the door lock management platform respectively;
[0030] The door lock management platform establishes the family member information, smart door lock ID, smart door lock IP address, room number information corresponding to the smart door lock, and fixed license plate information based on the family member information, establishes a mapping relationship and stores it; wherein the family member information includes member facial information; the door lock management platform establishes a communication connection with the smart door lock and the family member APP corresponding to the smart door lock.
[0031] Further, the second user door lock saves the allocation result, and within the parking time period, the second user door lock detects the temporary license plate information, and then controls the parking space ground lock to descend based on lora communication, including:
[0032] The allocation result is saved according to the second user's door lock, and timing is started;
[0033] If the parking time period is exceeded, a deletion confirmation message is sent to the second user; and based on the second user's confirmation, the second user's door lock is controlled to delete the allocation result.
[0034] Furthermore, the second user is a plurality of users; the second user door lock is a plurality of second door locks corresponding to the plurality of users; the system further comprises a second control module for:
[0035] The allocation result is sent to the second user door lock, and at the same time, a coordination message is sent to the plurality of second door locks; the coordination message includes the first user door lock ID and the plurality of second door lock IDs;
[0036] After receiving the coordination message, the multiple second door locks forward the allocation result to the other door locks among the multiple second door locks except themselves;
[0037] The other door locks control the parking space ground lock corresponding to the allocated parking space number to descend based on lora communication according to the allocation result.
[0038] In addition, the third aspect of the present invention provides a storage medium storing a computer program; the program is loaded and executed by a processor to implement the method steps based on the smart door lock linked to the parking space ground lock as described in the first aspect above.
[0039] In the scheme of the present invention, a parking space request is sent to the door lock management platform according to the first user, and the door lock management platform forwards it to the second user; the parking space request includes the required number of parking spaces, temporary license plate information, and parking time period; the first user and the second user are users of the first user door lock and the second user door lock respectively registered on the door lock management platform; wherein the second user includes one or more users; in response to the reply message of the second user, the door lock management platform allocates a parking space for the temporary license plate according to the parking space request, and sends the allocation result to the second user door lock; the reply message includes the second user door lock ID, the number of parking spaces provided and the corresponding parking space number; the allocation result includes the temporary license plate information, the allocated parking space number, and the parking time period; the second user door lock saves the allocation result, and within the parking time period, the second user door lock detects the temporary license plate information, and then controls the parking space ground lock to descend based on lora communication. Compared with the prior art, the embodiment of the present application has the following beneficial effects: on the one hand, the door lock interacts with the ground lock to realize the orderly parking and sharing of vehicles; on the other hand, through the collaboration between multiple door locks, a more convenient vehicle parking service is provided. BRIEF DESCRIPTION OF THE DRAWINGS
[0040] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required for use in the embodiments are briefly introduced below. It should be understood that the following drawings only show certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other related drawings can be obtained based on these drawings without creative work.
[0041] Figure 1 It is a flowchart of the method steps based on the linkage of intelligent door lock and parking space ground lock disclosed in an embodiment of the present invention;
[0042] Figure 2 It is a schematic diagram of the system structure based on the intelligent door lock linked parking space ground lock disclosed in an embodiment of the present invention;
[0043] Figure 3 It is a schematic diagram of the structure of an electronic device disclosed in an embodiment of the present invention. DETAILED DESCRIPTION
[0044] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by technicians in the technical field of this application; the terms used in the specification of the application herein are only for the purpose of describing specific embodiments and are not intended to limit this application; the terms "including" and "having" and any variations thereof in the specification and claims of this application and the above-mentioned drawings are intended to cover non-exclusive inclusions. The terms "first", "second", etc. in the specification and claims of this application or the above-mentioned drawings are used to distinguish different objects, not to describe a specific order.
[0045] Reference to "embodiments" herein means that a particular feature, structure, or characteristic described in conjunction with the embodiments may be included in at least one embodiment of the present application. The appearance of the phrase in various locations in the specification does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment that is mutually exclusive with other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein may be combined with other embodiments.
[0046] It should be noted that the “plurality” mentioned in this article refers to two or more.
[0047] The implementation details of the technical solution of the embodiment of the present application are described in detail below:
[0048] At present, many families in the community have installed smart door locks on their entrance doors (each door lock has an independent ID, door lock IP address, door lock geographic location, etc., as well as a built-in camera and a screen facing the interior of the room). The smart door locks of these families are connected to the Internet (door locks are usually connected to the Internet based on wifi), and are connected to the community "door lock management platform" and managed. Each smart door lock is registered with the platform and periodically updates the necessary information. The platform records the "door lock list" including the door lock ID, door lock IP address, door lock geographic location (including building number, floor, etc.), family information, etc.
[0049] Many families in the community have installed smart locks with cameras and screens on their entrance doors. The interconnection and operation of these smart locks can bring many value-added services.
[0050] The owner's mobile phone has APP installed. Each APP has a unique ID (such as the user name + mobile phone number used when registering), and supports reporting APP-ID, mobile phone NFC-ID, mobile phone wifi mac, mobile phone IP, etc. to the platform, and periodically updates the necessary information. The platform records the "user list", which includes: serial number, APP-ID, mobile phone NFC-ID, mobile phone wifi mac, mobile phone IP where the user's APP is located, and other user information.
[0051] When the owner's mobile phone APP registers with the door lock management platform, it needs to carry the door lock ID. After receiving it, the management platform binds the mobile phone APP-ID with the door lock-ID. Obviously, one door lock ID may correspond to the APP-ID of multiple family members, and one APP-ID may also correspond to multiple door lock IDs. This table is called the APP-door lock association table.
[0052] In addition, for the smart door locks installed on the basement doors of each household in the villa area, there are cameras facing the outdoors that can perform license plate recognition. That is, recognize your own license plate to open the basement door. That is, when the door lock is installed on the basement door of each household in the villa area, and there is a parking space outside the door, the camera of the door lock can see the range of nearby parking spaces. There is a ground lock on the parking space, and the door lock can communicate with the ground lock based on lora, send a message to the ground lock to lower or raise it, and when the ground lock is raised, parking is impossible, and when the ground lock is lowered, parking is possible.
[0053] Based on this, this example was further improved to implement a solution that links door locks and ground locks.
[0054] In the first aspect of this embodiment, a method based on intelligent door lock linkage parking space ground lock is implemented. Figure 1 , Figure 1 The present invention discloses a method for linking a parking space ground lock with an intelligent door lock.
[0055] The application scenario of this embodiment is that when the door lock is installed on the basement door of each household in the villa area, and there is a parking space outside the door, the camera of the door lock can see the range of nearby parking spaces.
[0056] The method comprises:
[0057] S101, a parking space request is sent by a first user to a door lock management platform, and the door lock management platform forwards the request to a second user; the parking space request includes the number of required parking spaces, temporary license plate information, and parking time period; the first user and the second user are users of a first user door lock and a second user door lock respectively registered on the door lock management platform; wherein the second user includes one or more users;
[0058] Before sending the parking space request to the door lock management platform according to the first user, the method further includes a door lock registration step; the door lock registration step includes:
[0059] The smart door lock uploads the family members’ information to the door lock management platform respectively;
[0060] The door lock management platform establishes the family member information, smart door lock ID, smart door lock IP address, room number information corresponding to the smart door lock, and fixed license plate information based on the family member information, establishes a mapping relationship and stores it; wherein the family member information includes member facial information; the door lock management platform establishes a communication connection with the smart door lock and the family member APP corresponding to the smart door lock.
[0061] Specifically, in this example, each family member can submit the license plates of multiple cars in their family to the door lock management platform through the APP. After receiving the license plate list, the platform binds it to each family and sends the license plate list to the door lock of the family. The door lock saves the license plate locally.
[0062] It should be noted that the door lock management platform also establishes a mapping relationship and stores family member information (facial information), smart door lock ID, smart door lock IP address, room number information corresponding to the smart door lock, and fixed license plate information (license plates of multiple cars in the home).
[0063] In general, the ground lock is raised by default. When a vehicle enters a parking space, the door lock camera can detect the license plate and compare the license plate with the locally saved license plate list. If they match, a command is sent to lower the ground lock (the vehicle can be parked), otherwise it remains raised (the vehicle cannot be parked).
[0064] In some embodiments, since each household has multiple cars and sometimes friends visit, in order to increase the utilization rate of parking spaces, parking spaces can be shared within the community. When a friend of family A visits by car, but there are not enough parking spaces at home, member 1 of family A applies to the platform through the APP, including the required number of parking spaces, license plate information (license plate A, license plate B, license plate C) and parking time period. After receiving the application, the platform sends a paid request to all family APPs in the community, including the required number of parking spaces and parking time period.
[0065] S102, in response to the reply message of the second user, the door lock management platform allocates a parking space for the temporary license plate according to the parking space request, and sends the allocation result to the second user door lock; the reply message includes the second user door lock ID, the number of parking spaces provided and the corresponding parking space numbers; the allocation result includes the temporary license plate information, the allocated parking space number, and the parking time period;
[0066] Furthermore, the second user door lock saves the allocation result, and within the parking time period, the second user door lock detects the temporary license plate information, and then controls the parking space ground lock to descend based on lora communication, including: saving the allocation result according to the second user door lock and starting the timing; if the parking time period is exceeded, sending a deletion confirmation message to the second user; and according to the second user's confirmation, controlling the second user door lock to delete the allocation result.
[0067] Specifically, in this example, assume that family A needs 3 parking spaces, and the parking time is from 10:00 to 12:00 on a certain day. Family B can provide 2 parking spaces, and family C can provide 1 parking space, so the member APP of family B submits a reply message to the door lock management platform, including the door lock ID of family B (door lock-B) and 2 parking space numbers, so the member APP of family C submits a reply message to the platform, including the door lock ID of family C (door lock-C) and 1 parking space number.
[0068] Furthermore, the door lock management platform can allocate parking spaces to the license plates of family A who have temporary access based on these reply messages. The door lock management platform sends the allocation results (including license plates A and B) to door lock-B, and sends the allocation results (including license plate C) to door lock-C. The message also includes the valid time period during which these license plates can park. The two door locks save the license plate information locally and start counting. When the valid time period expires, the above information is deleted.
[0069] At the same time, the platform sends a confirmation message to Family A’s APP, including the binding information of each license plate number and parking space.
[0070] S103, the second user door lock saves the allocation result, and within the parking time period, the second user door lock detects the temporary license plate information, and controls the parking space ground lock to descend based on lora communication.
[0071] Specifically, in this example, when the vehicle corresponding to license plate A arrives at the parking space in front of door lock-B, door lock-B finds that the license plate is consistent with the locally stored license plate information, and the current time point is within the valid time period for parking with the license plate, then it notifies the ground lock of the corresponding parking space to lower and allow the vehicle to park in.
[0072] Furthermore, the second user is a plurality of users; the second user door lock is a plurality of second door locks corresponding to the plurality of users; and the method further comprises:
[0073] The allocation result is sent to the second user door lock, and at the same time, a coordination message is sent to the plurality of second door locks; the coordination message includes the first user door lock ID and the plurality of second door lock IDs;
[0074] After receiving the coordination message, the multiple second door locks forward the allocation result to the other door locks among the multiple second door locks except themselves;
[0075] The other door locks control the parking space ground lock corresponding to the allocated parking space number to descend based on lora communication according to the allocation result.
[0076] Specifically, in this embodiment, it is not convenient to require guests to park strictly according to regulations. This example is further designed as follows:
[0077] In addition to sending license plates A and B to door lock-B, and license plate C to door lock-C, the door lock management platform also sends a "collaborative message" to door lock-A, door lock-B, and door lock-C. The collaborative message contains: the ID and IP address of door lock-A, the ID and IP address of door lock-B, and the ID and IP address of door lock-C.
[0078] After the three door locks receive the coordination message, door lock-B sends license plate A and license plate B as well as the valid parking time period to door lock A and door lock-C; door lock-C sends license plate C as well as the valid parking time period to door lock A and door lock-B; door lock-A sends its own license plate to door lock B and door lock-C.
[0079] The three door locks record all the above license plate information. When any door lock recognizes any of the above license plates, it will notify the ground lock it manages to lower and let the vehicle park in. In this way, the ground lock is lowered in advance to facilitate visitors to park.
[0080] In the allocation result, different temporary license plates have different parking time periods;
[0081] Specifically, for example, suppose that family A needs 3 parking spaces, and the parking time is 10:00-12:00 on a certain day for license plate A, 10:00-13:00 on a certain day for license plate B, and 10:00-14:00 on a certain day for license plate C. Family B can provide 2 parking spaces for license plate A and license plate B, and family C can provide 1 parking space for license plate C. So the member APP of family B submits a reply message to the platform, including the door lock ID of family B (door lock-B) and 2 parking space numbers, so the member APP of family C submits a reply message to the platform, including the door lock ID of family C (door lock-C) and 1 parking space number.
[0082] Before the second user door lock saves the allocation result, the method further includes: determining whether the parking time period is within the preset temporary parking time period acceptable for the second door lock; if the parking time period is within the preset temporary parking time period acceptable for the second door lock, saving the allocation result; the preset temporary parking time period acceptable for the second door lock is preset by the second user;
[0083] The second user door lock saves the allocation result, and within the parking time period, the second user door lock detects the temporary license plate information, and then controls the parking space ground lock to descend based on lora communication, including:
[0084] If the parking time period is within the preset temporary parking period of the second door lock and any temporary license plate is detected, the parking space ground lock corresponding to the assigned parking space number is controlled to descend based on lora communication.
[0085] Specifically, in this embodiment, the door lock management platform not only sends license plate A and license plate B to door lock-B, and license plate C to door lock-C, but also includes sending the valid time period during which these license plates can be parked.
[0086] When sending a collaborative message, a "collaborative message" is sent to door lock-A, door lock-B, and door lock-C. The collaborative message contains: the ID and IP address of door lock-A, the ID and IP address of door lock-B, and the ID and IP address of door lock-C.
[0087] After receiving the information, the three door locks will determine the compatible parking time. Door lock-B sends license plate A and license plate B and the valid parking time period to door lock A and door lock-C. If door lock A and door lock C can accept it (the parking time period that each door lock can accept is pre-configured by its owner), they will reply with an OK message. If vehicles with license plate A and license plate B arrive at door lock A and door lock C, door lock A and door lock C will notify the ground locks they manage to lower them. Door lock-C sends license plate C and the valid parking time period to door lock A and door lock-B. If door lock A and door lock B cannot accept the parking time of license plate C, they will reply with a rejection message. If license plate C arrives in front of door lock A and door lock B, they will not lower the ground locks they manage, so vehicles with license plate C can only park in the parking space of door lock C. Door lock A sends its own license plate to door lock B and door lock C. If door lock B and door lock C can accept it, they will reply with an OK message. If a vehicle with door lock A's own license plate arrives at door lock B and door lock C, door lock B and door lock C will notify the ground lock they manage to lower it. The three door locks save all the above temporary license plate information. If any door lock recognizes any of the above acceptable temporary license plates, it will notify the ground lock it manages to lower it and let the vehicle in. This allows vehicles to park flexibly as much as possible.
[0088] In summary, this embodiment sends a parking space request to the door lock management platform according to the first user, and the door lock management platform forwards it to the second user; the parking space request includes the required number of parking spaces, temporary license plate information, and parking time period; the first user and the second user are users of the first user door lock and the second user door lock respectively registered on the door lock management platform; wherein the second user includes one or more users; in response to the reply message of the second user, the door lock management platform allocates a parking space for the temporary license plate according to the parking space request, and sends the allocation result to the second user door lock; the reply message includes the second user door lock ID, the number of parking spaces provided and the corresponding parking space number; the allocation result includes the temporary license plate information, the allocated parking space number, and the parking time period; the second user door lock saves the allocation result, and within the parking time period, the second user door lock detects the temporary license plate information, and controls the parking space ground lock to descend based on lora communication. Compared with the prior art, the embodiments of the present application have the following beneficial effects: on the one hand, the door locks interact with the ground locks to realize orderly parking and sharing of vehicles; on the other hand, through the collaboration between multiple door locks, the door locks, APP, and platform collaborate to realize parking space sharing and provide more convenient vehicle parking services.
[0089] In addition, the second aspect of this embodiment provides a system based on intelligent door lock linkage parking space ground lock, such as Figure 2 As shown, the system includes a request module 201, an allocation module 202, and a first control module 203; wherein:
[0090] The request module 201 is used to send a parking space request to the door lock management platform according to the first user, and the door lock management platform forwards it to the second user; the parking space request includes the required number of parking spaces, temporary license plate information, and parking time period; the first user and the second user are users of the first user door lock and the second user door lock registered on the door lock management platform respectively; wherein the second user includes one or more users;
[0091] The allocation module 202 is used to respond to the reply message of the second user, and the door lock management platform allocates a parking space for the temporary license plate according to the parking space request, and sends the allocation result to the second user door lock; the reply message includes the second user door lock ID, the number of parking spaces provided and the corresponding parking space numbers; the allocation result includes the temporary license plate information, the allocated parking space number, and the parking time period;
[0092] The first control module 203 is used to enable the second user door lock to save the allocation result, and within the parking time period, when the second user door lock detects the temporary license plate information, the parking space ground lock is controlled to descend based on lora communication.
[0093] Furthermore, the system further includes a door lock registration module 200; the door lock registration module 200 is used to implement:
[0094] The smart door lock uploads the family members’ information to the door lock management platform respectively;
[0095] The door lock management platform establishes the family member information, smart door lock ID, smart door lock IP address, room number information corresponding to the smart door lock, and fixed license plate information based on the family member information, establishes a mapping relationship and stores it; wherein the family member information includes member facial information; the door lock management platform establishes a communication connection with the smart door lock and the family member APP corresponding to the smart door lock.
[0096] Further, the second user door lock saves the allocation result, and within the parking time period, the second user door lock detects the temporary license plate information, and then controls the parking space ground lock to descend based on lora communication, including:
[0097] The allocation result is saved according to the second user's door lock, and timing is started;
[0098] If the parking time period is exceeded, a deletion confirmation message is sent to the second user; and based on the second user's confirmation, the second user's door lock is controlled to delete the allocation result.
[0099] Furthermore, the second user is a plurality of users; the second user door lock is a plurality of second door locks corresponding to the plurality of users; the system further comprises a second control module 204 for:
[0100] The allocation result is sent to the second user door lock, and at the same time, a coordination message is sent to the plurality of second door locks; the coordination message includes the first user door lock ID and the plurality of second door lock IDs;
[0101] After receiving the coordination message, the multiple second door locks forward the allocation result to the other door locks among the multiple second door locks except themselves;
[0102] The other door locks control the parking space ground lock corresponding to the allocated parking space number to descend based on lora communication according to the allocation result.
[0103] In addition, the third aspect of the present invention provides a storage medium storing a computer program; the program is loaded and executed by a processor to implement the steps of the personnel monitoring method based on the smart door lock as described in the first aspect above.
[0104] In addition, the present application also discloses an electronic device, such as Figure 3 As shown, the electronic device includes: one or more processors, a memory, and the memory is used to store one or more computer programs; it is characterized in that the computer program is configured to be executed by the one or more processors, and the program includes steps for executing the method based on the smart door lock linked parking space ground lock as described in the first aspect above.
[0105] Those of ordinary skill in the art will appreciate that the units and algorithm steps of each example described in conjunction with the embodiments disclosed herein can be implemented in electronic hardware, computer software, or a combination of the two. In order to clearly illustrate the interchangeability of hardware and software, the composition and steps of each example have been generally described in terms of function in the above description. Whether these functions are performed in hardware or software depends on the specific application and design constraints of the technical solution. Professional and technical personnel can use different methods to implement the described functions for each specific application, but such implementation should not be considered to be beyond the scope of the present invention.
[0106] In the several embodiments provided in the present application, it should be understood that the disclosed devices and methods can be implemented in other ways. For example, the device embodiments described above are only schematic. For example, the division of the units is only a logical function division. There may be other division methods in actual implementation, such as multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. In addition, the mutual coupling or direct coupling or communication connection shown or discussed can be an indirect coupling or communication connection through some interfaces, devices or units, or it can be an electrical, mechanical or other form of connection.
[0107] The units described as separate components may or may not be physically separated. As a unit, it can be appreciated by those skilled in the art that the units and algorithm steps of each example described in conjunction with the embodiments disclosed herein can be implemented in electronic hardware, computer software, or a combination of the two. In order to clearly illustrate the interchangeability of hardware and software, the composition and steps of each example have been generally described in terms of function in the above description. Whether these functions are performed in hardware or software depends on the specific application and design constraints of the technical solution. Professional and technical personnel can use different methods to implement the described functions for each specific application, but such implementation should not be considered to be beyond the scope of the present invention.
[0108] In addition, each functional unit in each embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit. The above-mentioned integrated unit may be implemented in the form of hardware or in the form of software functional units.
[0109] If the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present invention is essentially or the part that contributes to the prior art, or all or part of the technical solution can be embodied in the form of a software product, and the computer software product is stored in a storage medium, including a number of instructions for a computer device (which can be a personal computer, a server, or a grid device, etc.) to perform all or part of the steps of the method described in each embodiment of the present invention. The aforementioned storage medium includes: U disk, mobile hard disk, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), disk or optical disk and other media that can store program codes.
[0110] The specific implementation methods described above further illustrate the objectives, technical solutions and beneficial effects of the present invention in detail. It should be understood that the above description is only a specific implementation method of the present invention and is not intended to limit the scope of protection of the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A method based on intelligent door lock linkage parking space ground lock, characterized in that: The method comprises: The first user sends a parking space request to the door lock management platform, and the door lock management platform forwards it to the second user; the parking space request includes the number of required parking spaces, temporary license plate information, and parking time period; the first user and the second user are users of the first user door lock and the second user door lock registered on the door lock management platform respectively; In response to the reply message of the second user, the door lock management platform allocates a parking space for the temporary license plate according to the parking space request, and sends the allocation result to the second user door lock; the reply message includes the second user door lock ID, the number of parking spaces provided and the corresponding parking space numbers; the allocation result includes the temporary license plate information, the allocated parking space number, and the parking time period; The second user door lock saves the allocation result, and within the parking time period, the second user door lock detects the temporary license plate information, and then controls the parking space ground lock to descend based on lora communication; Among them, the second user is multiple users; the second user door lock is multiple second door locks corresponding to multiple users; the method also includes: sending the allocation result to the second user door lock, and at the same time, sending a coordination message to the multiple second door locks; the coordination message includes the first user door lock ID, and the IDs of multiple second door locks; after the multiple second door locks receive the coordination message, they forward the allocation result to other door locks among the multiple second door locks except themselves; the other door locks control the parking space ground lock corresponding to the allocated parking space number to descend based on lora communication according to the allocation result.
2. The method based on intelligent door lock linkage parking ground lock according to claim 1 is characterized in that: The method further includes a door lock registration step; the door lock registration step includes: The smart door lock uploads the family members’ information to the door lock management platform respectively; The door lock management platform establishes the family member information, smart door lock ID, smart door lock IP address, room number information corresponding to the smart door lock, and fixed license plate information based on the family member information, establishes a mapping relationship and stores it; wherein the family member information includes member facial information; the door lock management platform establishes a communication connection with the smart door lock and the family member APP corresponding to the smart door lock.
3. The method based on intelligent door lock linkage parking ground lock according to claim 2 is characterized in that: The second user door lock saves the allocation result, and within the parking time period, the second user door lock detects the temporary license plate information, and then controls the parking space ground lock to descend based on lora communication, including: The allocation result is saved according to the second user's door lock, and timing is started; If the parking time period is exceeded, a deletion confirmation message is sent to the second user; and based on the second user's confirmation, the second user's door lock is controlled to delete the allocation result.
4. The method based on intelligent door lock linkage parking ground lock according to claim 3 is characterized in that: In the allocation result, different temporary license plates have different parking time periods; before the second user door lock saves the allocation result, it also includes: determining that the parking time period is within the preset acceptable temporary parking time period of the second door lock; if the parking time period is within the preset acceptable temporary parking time period of the second door lock, then saving the allocation result; the preset acceptable temporary parking time period of the second door lock is preset by the second user; The second user door lock saves the allocation result, and within the parking time period, the second user door lock detects the temporary license plate information, and then controls the parking space ground lock to descend based on lora communication, including: If the parking time period is within the preset temporary parking period of the second door lock and any temporary license plate is detected, the parking space ground lock corresponding to the assigned parking space number is controlled to descend based on lora communication.
5. A system based on intelligent door locks linked to parking space ground locks, characterized in that: The system includes a request module, an allocation module, and a first control module; wherein: The request module is used to send a parking space request to the door lock management platform according to the first user, and the door lock management platform forwards it to the second user; the parking space request includes the required number of parking spaces, temporary license plate information, and parking time period; the first user and the second user are users of the first user door lock and the second user door lock registered on the door lock management platform respectively; wherein the second user includes one or more users; An allocation module, configured to respond to the reply message of the second user, the door lock management platform allocates a parking space for the temporary license plate according to the parking space request, and sends the allocation result to the second user door lock; the reply message includes the second user door lock ID, the number of parking spaces provided and the corresponding parking space numbers; the allocation result includes the temporary license plate information, the allocated parking space number, and the parking time period; The first control module is used to enable the second user door lock to save the allocation result, and within the parking time period, the second user door lock detects the temporary license plate information, and then controls the parking space ground lock to descend based on lora communication; Among them, the second user is multiple users; the second user door lock is multiple second door locks corresponding to multiple users; the system also includes a second control module, which is used to: send the allocation result to the second user door lock, and at the same time, send a coordination message to the multiple second door locks; the coordination message includes the first user door lock ID, and the IDs of multiple second door locks; after receiving the coordination message, the multiple second door locks forward the allocation result to other door locks among the multiple second door locks except themselves; the other door locks control the parking space ground lock corresponding to the allocated parking space number to descend based on lora communication according to the allocation result.
6. The system based on intelligent door lock linked parking space ground lock according to claim 5 is characterized in that: The system further includes a door lock registration module; the door lock registration module is used to implement: The smart door lock uploads the family members’ information to the door lock management platform respectively; The door lock management platform establishes the family member information, smart door lock ID, smart door lock IP address, room number information corresponding to the smart door lock, and fixed license plate information based on the family member information, establishes a mapping relationship and stores it; wherein the family member information includes member facial information; the door lock management platform establishes a communication connection with the smart door lock and the family member APP corresponding to the smart door lock.
7. The system based on intelligent door lock linked parking space ground lock according to claim 6 is characterized in that: The second user door lock saves the allocation result, and within the parking time period, the second user door lock detects the temporary license plate information, and then controls the parking space ground lock to descend based on lora communication, including: The allocation result is saved according to the second user's door lock, and timing is started; If the parking time period is exceeded, a deletion confirmation message is sent to the second user; and based on the second user's confirmation, the second user's door lock is controlled to delete the allocation result.
8. A storage medium storing a computer program; the program is loaded and executed by a processor to implement the method steps based on the linkage of a parking space ground lock with an intelligent door lock as described in any one of claims 1 to 4.
Citation Information
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