Intelligent parking lot management system and method

Through the intelligent parking lot management system, the modular design and network connection are used to solve the problems of parking space query difficulties and location forgetting in traditional parking lot management, real-time data processing and equipment control are realized, and query efficiency and accuracy are improved.

CN120299288APending Publication Date: 2025-07-11TOEC (GRP) CO LTD +1
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Patent Information

Application Number
CN202510432843.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-08
Publication Date
2025-07-11

AI Technical Summary

Technical Problem

Traditional parking lot management methods cannot provide parking space information in real time, making it difficult for vehicles to find and easily forget the parking location, and querying historical data is time-consuming and inaccurate.

Method used

Design an intelligent parking lot management system, including parking lot information entry, parking space information entry, vehicle identification, core processing, data persistence and control management modules, and realize real-time data processing and equipment control through the Internet or local area network connection.

Benefits of technology

It improves the efficiency of parking space query, reduces staff investment, ensures the accuracy and convenience of vehicle position query, and optimizes the query rate of parking lot traffic historical data.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention discloses an intelligent parking lot management system and method, and the system comprises a parking lot information input module, a parking space information input module, a vehicle recognition module, peripheral control equipment, a core processing module, a control management module, a data persistence module, and a database. The parking space information input module, the vehicle identification module, the control management module and the data persistence module are in two-way connection, the control management module is in two-way connection with the peripheral control equipment, and the data persistence module is in two-way connection with the database. Through the matching operation of the data persistence module and the control management module, the processing, query and input of the whole data and the equipment control are more effective, the problems that the parking position is forgotten and the vehicle is difficult to find due to the overlarge area of the parking lot are solved, and the speed of looking up the historical data of the traffic flow of the parking lot is effectively improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of intelligent management, and particularly relates to an intelligent parking lot management system and method. Background Art

[0002] Traditional parking lot management methods usually involve driving into the parking lot to look for a parking space on site. Before entering the parking lot, it is impossible to know whether there are parking spaces in the parking lot. When leaving, due to the large area of the parking lot, it is difficult to confirm the location of the parking space, and it is easy to forget the parking location, which will cause problems in the process of finding the vehicle and the parking space. In the case of forgetting the parking space number in a large parking lot, if historical data needs to be queried, a large amount of information needs to be searched through, which will waste time. In addition, the accuracy of the information is also prone to errors. Obviously, the traditional parking lot management method can no longer meet the needs of users. Therefore, there is an urgent need to develop an intelligent parking lot management system and method to solve the above technical problems.

[0003] In view of this, the present invention is specifically proposed. Summary of the Invention

[0004] The purpose of the present invention is to provide an intelligent parking lot management system and method, which not only reduces the input of staff in the parking lot, but also makes the operation of the core processing module, data persistence module and control management module more effective in the processing, query, entry and device control of the entire data. It also solves the problem of difficult vehicle finding due to forgetting the parking location in a large parking lot, and effectively improves the rate of querying historical data of the vehicle flow in the parking lot, with broad application prospects and is conducive to popularization and application.

[0005] To achieve the above purpose, an intelligent parking lot management system provided by the present invention includes a parking lot information entry module, a parking space information entry module, a vehicle identification module, peripheral control devices, a core processing module, a control management module, a data persistence module and a database. The core processing module is bidirectionally connected to the parking lot information entry module, the parking space information entry module, the vehicle identification module, the control management module and the data persistence module respectively. The control management module is bidirectionally connected to the peripheral control devices, and the data persistence module is bidirectionally connected to the database; The parking lot information entry module enters the basic information of the parking lot and uploads it to the core processing module; The parking space information entry module enters the basic information of the parking space and uploads it to the core processing module; The vehicle identification module identifies vehicle information and uploads it to the core processing module; The core processing module, as the core of the system, is responsible for connecting to other sub-modules, for issuing control instructions, uploading data operations and responding to user behaviors; The data persistence module provides the persistence operation of system data, interfaces with the core processing module, and stores the data in the database; The database stores data, interfaces with the data persistence module, and the storage operation process is provided by the data persistence module; The control and management module provides the control and management function for the peripheral control devices and interfaces with the core processing module; The peripheral control devices are vehicle identification devices or alarm devices.

[0006] Preferably, the parking lot information entry module uses a general APP device to upload vehicle license plate number, vehicle brand, vehicle model, vehicle purchase time, and vehicle mileage information to the core processing module through the Internet or local area network by means of entry.

[0007] Preferably, the parking space information entry module uses a general APP device to upload the parking lot to which the parking space belongs, parking space number, unique code of the vehicle identification device bound to the parking space, unique identification code of the alarm device bound to the vehicle, and vehicle position information to the core processing module through the Internet or local area network.

[0008] Preferably, the vehicle identification module uploads the vehicle license plate number, vehicle entry or exit status, and vehicle entry or exit time information to the core processing module through the vehicle identification device by means of the Internet or local area network.

[0009] Preferably, the core processing module connects to the parking lot information entry module through the Internet or local area network. After receiving the vehicle information identified by the vehicle identification module through the in-system communication control and management module and the data persistence module, it notifies the data persistence module to perform data storage. In response to the user's operation, such as querying the current status information of the vehicle in the parking lot, it will transmit the existing vehicle information value through the network to the parking space information entry module for query. If it controls the peripheral control devices, it will send the control instruction directly through the system to the control and management module for controlling the peripheral control devices.

[0010] Preferably, the data persistence module responds to the data processing instructions sent by the core processing module, including but not limited to addition, deletion, modification, and query, and uses a specific persistence interface to operate the database through the Internet or local area network to complete the corresponding data operations.

[0011] Preferably, the database responds to the data operation instructions sent by the data persistence module through the Internet or local area network and performs relevant data storage to achieve the purpose of data persistence.

[0012] Preferably, the control management module receives control instructions sent by the core processing module through intra-system communication, then responds to the instructions, sends them to the peripheral control device through the Internet or local area network, and receives the instruction sending results and returns them to the core processing module.

[0013] Preferably, the peripheral control device receives the control instruction sent by the control management module through the Internet or the local area network and responds, and transmits back the operation result.

[0014] The present invention also provides an intelligent parking lot management method using the above-mentioned intelligent parking lot management system, comprising the following steps: entering parking lot and parking space information through a parking lot information entry module and a parking space information entry module, and sending the entered information to a core processing module; the vehicle identification module identifies the vehicle license plate number, parking time, and departure time information, and sends them to the core processing module; the core processing module calls a data persistence module to store the parking lot and parking space information sent by the parking lot information entry module and the parking space information entry module in a database, and after the vehicle identification module identifies the vehicle license plate number and vehicle entry and exit time information through a vehicle identification device, calls a data persistence module to store the parking lot and parking space information sent by the parking lot information entry module and the parking space information entry module in a database, and after the vehicle identification module identifies the vehicle license plate number and vehicle entry and exit time information through a vehicle identification device, The data persistence module stores data in the database. When a user sends an operation request through the web, the corresponding operation is performed according to the type of request. For example, if the parking space where the vehicle is currently located is queried, the data persistence module is called to query the database. If it fails, the reason for failure is returned. For example, if a peripheral control device is controlled and a parking space cannot be found and an alarm device prompt is required, the control management module is called to send relevant instructions to the peripheral control device and return the execution result of the control instruction. After receiving the control instruction from the core processing module, the control management module sends it to different peripheral control devices according to different instruction types. The peripheral control device responds with control and returns the response result.

[0015] The present invention provides an intelligent parking lot management system and method, which have the following beneficial effects.

[0016] Before a vehicle arrives at the parking lot, the present invention can check the status of empty parking spaces in the parking lot through the system, and can determine the approximate location and direction of the parking spaces through the system. When the parking space area is forgotten, the location of the vehicle can be queried through the system according to the license plate number. This not only reduces the staff input in the parking lot, but also the coordinated operation of the core processing module, the persistence module and the control management module will make the entire data processing, query, input and equipment control more efficient, and also solve the problem of forgetting the parking location due to the large area of ​​the parking lot and finding it difficult, and effectively improves the rate of consulting the historical data of the parking lot traffic flow. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 A structural block diagram of an intelligent parking lot management system provided by the present invention; Figure 2 Flow chart of an intelligent parking lot management method provided by the present invention. Specific implementation manners

[0018] The present invention will be further described below in conjunction with specific embodiments and drawings to facilitate understanding of the content of the present invention.

[0019] As Figure 1 shown, it is a structural block diagram of an intelligent parking lot management system provided by the present invention. The intelligent parking lot management system includes a parking lot information entry module, a parking space information entry module, a vehicle identification module, peripheral control devices, a core processing module, a control and management module, a data persistence module, and a database. The core processing module is bidirectionally connected to the parking lot information entry module, the parking space information entry module, the vehicle identification module, the control and management module, and the data persistence module. The control and management module is bidirectionally connected to the peripheral control devices. The data persistence module is bidirectionally connected to the database; The parking lot information entry module enters the basic information of the parking lot and uploads it to the core processing module; the parking lot information entry module uses a general APP device to upload vehicle license plate number, vehicle brand, vehicle model, vehicle purchase time, and vehicle mileage information to the core processing module through the Internet or local area network by means of entry.

[0020] The parking space information entry module enters the basic information of the parking space and uploads it to the core processing module; the parking space information entry module uses a general APP device to upload the parking lot to which the parking space belongs, the parking space number, the unique code of the vehicle identification device bound to the parking space, the unique identification code of the vehicle-bound alarm device, and the vehicle position information to the core processing module through the Internet or local area network.

[0021] The vehicle identification module identifies vehicle information and uploads it to the core processing module; the vehicle identification module uploads vehicle license plate number, vehicle entry or exit status, and vehicle entry or exit time information to the core processing module through the Internet or local area network by means of a vehicle identification device.

[0022] The core processing module, as the core of the system, is responsible for connecting to other sub-modules, controlling the issuance of instructions, uploading data operations, and responding to user behaviors. The core processing module connects to the parking lot information entry module through the Internet or local area network. After the parking lot information entry module enters information, through the in-system communication control management module and data persistence module, when receiving the vehicle information recognized by the vehicle identification module, it notifies the data persistence module to store the data. In response to user operations, such as querying the current status information of a vehicle in the parking lot, it will transmit the existing vehicle information value through the network to the parking lot information entry module for querying. If controlling the peripheral control device, it will send the control instruction directly through the in-system connection to the control management module for controlling the peripheral control device.

[0023] The data persistence module provides the persistence operation of system data, connects to the core processing module, and stores the data in the database. The data persistence module responds to the data processing instructions sent by the core processing module, including but not limited to adding, deleting, modifying, and querying, and uses a specific persistence interface to operate the database through the Internet or local area network to complete the corresponding data operations.

[0024] The database stores data, connects to the data persistence module, and the storage operation process is provided by the data persistence module. The database responds to the data operation instructions sent by the data persistence module through the Internet or local area network and performs relevant data storage to achieve the purpose of data persistence.

[0025] The control management module provides the control management function for the peripheral control device and connects to the core processing module. The control management module receives the control instructions sent by the core processing module through the in-system communication method, then responds to the instructions, sends them to the peripheral control device through the Internet or local area network, and receives the instruction sending result and passes it back to the core processing module.

[0026] The peripheral control device is a vehicle identification device or an alarm device. The peripheral control device receives the control instructions sent by the control management module through the Internet or local area network and responds, and passes back the operation result.

[0027] In the intelligent parking lot management system, data is input through the parking lot information entry module and the parking space information entry module, the vehicle identification module is accessed through the Internet or local area network, and the recognized vehicle information is uploaded to the core processing module through the Internet or local area network. The core processing module, control management module, and data persistence module coexist on a physical computer, communicate directly within the system, the data persistence module connects to the database through the local area network, and the control management module sends control instructions to the peripheral control device through the Internet or local area network.

[0028] Such as Figure 2As shown in the figure, it is a flowchart of an intelligent parking lot management method provided by the present invention. The intelligent parking lot management method includes the following steps: The parking lot information entry module and the parking space information entry module are used to enter the parking lot and parking space information, and the entered information is sent to the core processing module; After the vehicle identification module identifies the vehicle license plate number, parking time, and leaving time information, it is sent to the core processing module; The core processing module stores the parking lot and parking space information sent by the parking lot information entry module and the parking space information entry module in the database by calling the data persistence module. After the vehicle identification module identifies the vehicle license plate number and vehicle entry and exit time information through the vehicle identification device, it calls the data persistence module to store in the database; When the user sends an operation request through the web side, corresponding operations are performed according to the type of the request. For example, when querying the parking lot and parking space where the vehicle is currently located, the data persistence module is called to query the database, and if it fails, the reason for the failure is returned; If peripheral control equipment control is performed, when the alarm equipment needs to be prompted because no parking space can be found, the control management module is called to send relevant instructions to the peripheral control equipment, and the execution result of the control instruction is returned; After receiving the control instruction from the core processing module, the control management module sends it to different peripheral control equipment according to different instruction types, and the peripheral control equipment performs control response and returns the response result.

[0029] After using this system, not only can the parking lot be easily managed, and information such as the traffic flow of the parking lot can be remotely viewed, but the combined operation of the core processing module, the data persistence module, and the control management module will make the processing, querying, entry, and equipment control of the entire data more effective. Especially the vehicle identification module can easily find the location of its own vehicle directly through the system, improving the convenience of life for customers.

[0030] In this article, specific examples are used to elaborate on the inventive concept in detail. The description of the above embodiments is only used to help understand the core idea of the present invention. It should be noted that for those of ordinary skill in the art of this technology, any obvious modifications, equivalent replacements, or other improvements made without departing from the inventive concept should be included in the protection scope of the present invention.

Claims

1. An intelligent parking lot management system, characterized in that, It includes a parking lot information entry module, a parking space information entry module, a vehicle identification module, peripheral control devices, a core processing module, a control and management module, a data persistence module, and a database. The core processing module is bidirectionally connected to the parking lot information entry module, the parking space information entry module, the vehicle identification module, the control and management module, and the data persistence module. The control and management module is bidirectionally connected to the peripheral control devices. The data persistence module is bidirectionally connected to the database; The parking lot information entry module enters the basic information of the parking lot and uploads it to the core processing module; The parking space information entry module enters the basic information of the parking space and uploads it to the core processing module; The vehicle identification module identifies the vehicle information and uploads it to the core processing module; The core processing module, as the core of the system, is responsible for connecting to other sub-modules, for controlling instruction issuance, uploading data operations, and responding to user behaviors; The data persistence module provides the persistence operation of the system data, connects to the core processing module, and stores the data in the database; The database stores data, connects to the data persistence module, and the storage operation process is provided by the data persistence module; The control and management module provides the control and management function for the peripheral control devices and connects to the core processing module; The peripheral control devices are vehicle identification devices or alarm devices.

2. The intelligent parking lot management system according to claim 1, characterized in that, The parking lot information entry module uses a general APP terminal device to upload the vehicle license plate number, vehicle brand, vehicle model, vehicle purchase time, and vehicle mileage information to the core processing module through the Internet or local area network by means of entry.

3. An intelligent parking lot management system according to claim 2, characterized in that, The parking space information entry module uses a general APP terminal device to upload the parking lot to which the parking space belongs, the parking space number, the unique code of the vehicle identification device bound to the parking space, the unique identification code of the vehicle alarm device bound to the vehicle, and the vehicle position information to the core processing module through the Internet or local area network.

4. An intelligent parking lot management system according to claim 3, characterized in that, The vehicle identification module uploads the vehicle license plate number, the vehicle leaving or entering status, and the vehicle leaving or entering time information to the core processing module through the vehicle identification device by means of the Internet or local area network.

5. An intelligent parking lot management system according to claim 4, characterized in that, The core processing module connects to the parking lot information entry module and the parking space information entry module through the Internet or local area network. After receiving the vehicle information identified by the vehicle identification module through the communication control management module and the data persistence module within the system, it notifies the data persistence module to perform data storage and responds to the user's operations. For example, when querying the current status information of the vehicle in the parking lot, it will transmit the existing vehicle information value through the network to the parking space information entry module for query. If it controls the peripheral control devices, it will send the control instruction directly through the system to the control and management module for controlling the peripheral control devices.

6. An intelligent parking lot management system according to claim 5, characterized in that, The data persistence module responds to the data processing instructions sent by the core processing module, including but not limited to adding, deleting, modifying, and querying, and uses a specific persistence interface to operate the database through the Internet or local area network to complete the corresponding data operations.

7. An intelligent parking lot management system according to claim 6, characterized in that, The database response data persistence module sends data operation instructions sent over the Internet or local area network and performs relevant data storage to achieve the purpose of data persistence.

8. An intelligent parking lot management system according to claim 7, characterized in that, The control and management module receives control instructions sent by the core processing module through system internal communication, then responds to the instructions, sends them to the peripheral control device through the Internet or local area network, and receives the instruction sending result and returns it to the core processing module.

9. An intelligent parking lot management system according to claim 8, characterized in that, The peripheral control device receives and responds to the control instructions sent by the control and management module through the Internet or local area network, and returns the operation result.

10. An intelligent parking lot management method using the intelligent parking lot management system according to any one of claims 1-9, characterized in that, It includes the following steps: Enter the parking lot and parking space information through the parking lot information entry module and the parking space information entry module, and send the entered information to the core processing module; After the vehicle identification module identifies the vehicle license plate number, parking time, and leaving time information, it sends them to the core processing module; The core processing module stores the relevant parking lot and parking space information sent by the parking lot information entry module and the parking space information entry module in the database by calling the data persistence module. After the vehicle identification module identifies the vehicle license plate number and vehicle entry and exit time information through the vehicle identification device, it calls the data persistence module for database storage; When the user sends an operation request through the web end, corresponding operations are performed according to the type of request. For example, when querying the parking lot and parking space where the vehicle is currently located, the data persistence module is called for database query, and if it fails, the reason for failure is returned; When controlling the peripheral control device, when the parking space cannot be found and the alarm device needs to be prompted, the control and management module is called to send relevant instructions to the peripheral control device and return the execution result of the control instruction; After receiving the control instruction from the core processing module, the control and management module sends it to different peripheral control devices according to different instruction types, and the peripheral control device performs control response and returns the response result.