Vehicle data comprehensive integrated management system and method for traffic management

By constructing a comprehensive vehicle data management platform, collaborative management between mobile terminals and the central platform has been achieved. Vehicle query requests are processed automatically, and multi-dimensional information is integrated for comprehensive analysis. This solves the problem of insufficient data correlation analysis capabilities in existing technologies and improves the scientific nature of traffic management decisions and the accuracy of law enforcement.

CN121583113APending Publication Date: 2026-02-27青海蓝盾信息服务有限公司
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Patent Information

Application Number
CN202511889955.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-15
Publication Date
2026-02-27

AI Technical Summary

Technical Problem

Existing technologies in intelligent traffic management lack sufficient data correlation and analysis capabilities, resulting in low efficiency in understanding group traffic behavior, difficulty in quickly forming a comprehensive situational awareness, and impacting the ability to respond instantly to complex traffic management scenarios.

Method used

By building a comprehensive vehicle data management platform, a collaborative management process between mobile terminals and the central platform is realized, vehicle query requests are processed automatically, traffic trajectory information is automatically associated and displayed, and related vehicle groups are screened through preset dimensions, and traffic data and early warning event information are integrated for comprehensive analysis.

Benefits of technology

It has improved the scientific nature of traffic management decisions and the accuracy of law enforcement, enhanced decision-making capabilities in complex traffic scenarios, achieved a leap from single vehicle queries to group correlation analysis, and improved the efficiency of data correlation analysis.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a vehicle data comprehensive integrated management system and method for traffic management, and relates to the field of intelligent traffic management, and the method comprises the steps: logging in a vehicle data comprehensive integrated management platform through an application program on a mobile terminal, inputting the license plate information of a target vehicle, and initiating a query request for the target vehicle; after the query request is received, the passing record data related to the license plate information are retrieved from the database, the passing record data are returned to the application program on the mobile terminal to be displayed, and passing track information of the target vehicle is formed; and inputting a query condition through the vehicle data comprehensive integrated management platform, and respectively retrieving and obtaining the passing data of the vehicles in the same or related classification as the target vehicle. According to the method, a standard operation process with data driving and clear logic is formed, and the decision making scientificity and law enforcement accuracy in a complex traffic scene are enhanced while the investigation coverage is improved.
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Description

Technical Field

[0001] This invention relates to the field of intelligent traffic management, and in particular to an integrated management system and method for vehicle data used in traffic management. Background Technology

[0002] In the field of intelligent traffic management, existing technologies typically construct an integrated data platform. Authorized users can submit requests to query the license plate information of specific vehicles via mobile applications. After responding, the platform retrieves and returns the vehicle's travel trajectory from the database. For further analysis, users can also manually search for relevant vehicle lists based on preset categories through the backend management system. Various warning events generated by the platform are centrally displayed in list form on a separate interface. Users need to comprehensively analyze this scattered information, select a processing method through the application, and submit the results. This model initially achieves a closed loop of centralized data query and processing.

[0003] Existing technologies have room for improvement in data correlation analysis and decision support. Their core limitation lies in the fact that each functional module is relatively independent, and the potential correlation between data relies on the user's manual operation and experience to connect them. When judging whether there is group behavior among vehicles, the user needs to obtain the trajectory of the target vehicle by querying, and then manually search and compare it in the classified vehicle list or warning event list based on subjective assumptions. This architecture, which separates data presentation from intelligent correlation analysis, results in insufficient efficiency in discerning the pattern of group behavior from discrete information, making it difficult to quickly form a comprehensive situational awareness, thereby affecting the ability to respond instantly to complex traffic management scenarios. Summary of the Invention

[0004] In view of the aforementioned existing problems, the present invention is proposed.

[0005] Therefore, this invention provides a comprehensive vehicle data management method for traffic management to solve the problem of low efficiency in understanding group traffic behavior caused by insufficient data correlation analysis capabilities in the prior art.

[0006] To solve the above-mentioned technical problems, the present invention provides the following technical solution: In a first aspect, the present invention provides a vehicle data integrated management method for traffic management, which includes logging into a vehicle data integrated management platform through an application on a mobile terminal, inputting the license plate information of the target vehicle, and initiating a query request for the target vehicle. After receiving a query request, the system retrieves traffic record data related to the license plate information from the database and returns the traffic record data to the application on the mobile terminal for display, thus forming the traffic trajectory information of the target vehicle. By inputting query conditions into the integrated vehicle data management platform, traffic data of vehicles in the same or related categories as the target vehicle can be retrieved and obtained. The vehicle data integrated management platform displays pre-set warning event information in a list format on the warning information interface of the back-end management system. Based on traffic trajectory information, vehicle traffic data, and early warning event information, users can select a processing method through an application on a mobile terminal and submit the processing results to the integrated vehicle data management platform.

[0007] As a preferred embodiment of the integrated vehicle data management method for traffic management described in this invention, the following steps are included: logging into the integrated vehicle data management platform via an application on a mobile terminal, inputting the license plate information of the target vehicle, and initiating a query request for the target vehicle: Users operate the application on their mobile terminals to log in to the integrated vehicle data management platform. Users who log in to the integrated vehicle data management platform can enter the license plate information of the target vehicle on the application interface of their mobile terminal. The query request for the target vehicle's license plate information is sent from the mobile terminal application to the integrated vehicle data management platform.

[0008] As a preferred embodiment of the integrated vehicle data management method for traffic management described in this invention, the method involves, after receiving a query request, retrieving traffic record data related to license plate information from the database, including the following steps: The integrated vehicle data management platform receives query requests for the license plate information of the target vehicle; Using the license plate information in the query request to access the database, the integrated vehicle data management platform retrieves the passage record data related to the license plate information from the database.

[0009] As a preferred embodiment of the integrated vehicle data management method for traffic management described in this invention, the method involves: returning traffic record data to an application on a mobile terminal for display to form the traffic trajectory information of the target vehicle, including the following steps: The integrated vehicle data management platform will retrieve the passage record data and return it to the mobile terminal application via the network; The application on the mobile terminal parses and renders the received traffic record data, and displays the parsed and rendered traffic record data on the application interface to form the traffic trajectory information of the target vehicle.

[0010] As a preferred embodiment of the integrated vehicle data management method for traffic management described in this invention, the method includes the following steps: By inputting query conditions through the integrated vehicle data management platform, the method retrieves and obtains traffic data of vehicles belonging to the same or related categories as the target vehicle, including the following steps: Users enter new query criteria in the backend management interface of the integrated vehicle data management platform; The integrated vehicle data management platform uses new query criteria to search the database; The integrated vehicle data management platform acquires traffic data of vehicles that match the new query criteria.

[0011] As a preferred embodiment of the integrated vehicle data management method for traffic management described in this invention, the integrated vehicle data management platform displays various pre-set early warning event information in a list format on the early warning information interface of the back-end management system, including the following steps: The integrated vehicle data management platform reads various types of early warning event information generated from the stored early warning records; The integrated vehicle data management platform formats and organizes the read warning event information according to time and type, generating list data; The integrated vehicle data management platform renders and displays the formatted list data as a list of warning event information in the warning information interface of the back-end management system.

[0012] As a preferred embodiment of the integrated vehicle data management method for traffic management described in this invention, the method includes the following steps: based on traffic trajectory information, vehicle traffic data, and early warning event information, a processing method is selected via an application on a mobile terminal, and the processing result is submitted to the integrated vehicle data management platform. Users can comprehensively view the target vehicle's travel trajectory information, the travel data of vehicles in the same or related categories as the target vehicle, and the warning event information in the warning information interface; Based on the comprehensive information viewed, users can choose a processing method from the options provided by the application on their mobile device. Users send a data packet containing the processing results of the selected processing method to the integrated vehicle data management platform via an application on their mobile devices.

[0013] Secondly, the present invention provides a vehicle data integrated management system for traffic management, including a query module, which allows users to log in to the vehicle data integrated management platform via an application on a mobile terminal, input the license plate information of the target vehicle, and initiate a query request for the target vehicle. The traffic trajectory module, after receiving a query request, retrieves traffic record data related to license plate information from the database, and returns the traffic record data to the application on the mobile terminal for display, thus forming the traffic trajectory information of the target vehicle; The retrieval module allows users to input query criteria into the integrated vehicle data management platform to retrieve and obtain traffic data for vehicles that fall under the same or related categories as the target vehicle. The early warning module, in the vehicle data integrated management platform, displays various pre-set early warning event information in a list format on the early warning information interface of the back-end management system; The submission module, based on traffic trajectory information, vehicle traffic data, and early warning event information, allows users to select a processing method through an application on a mobile terminal and submit the processing result to the integrated vehicle data management platform.

[0014] Thirdly, the present invention provides a computer device including a memory and a processor, wherein the memory stores a computer program, wherein when the computer program is executed by the processor, it implements any step of the integrated vehicle data management method for traffic management as described in the first aspect of the present invention.

[0015] Fourthly, the present invention provides a computer-readable storage medium having a computer program stored thereon, wherein: when the computer program is executed by a processor, it implements any step of the integrated vehicle data management method for traffic management as described in the first aspect of the present invention.

[0016] The beneficial effects of this invention are as follows: By constructing a closed-loop management process that coordinates mobile terminals and a central platform, it realizes the leap from single vehicle query to group association analysis in traffic management business. It combines classification-based manual extended query with multi-source information comprehensive decision-making. The former guides users to screen related vehicle groups through preset dimensions, laying a data foundation for group behavior analysis. The latter forcibly integrates multi-dimensional information such as trajectory, related vehicles, and warnings for comprehensive judgment, thereby forming a data-driven and logically clear standard operating procedure. While improving the coverage of investigation, it enhances the scientific nature of decision-making and the accuracy of law enforcement in complex traffic scenarios. Attached Figure Description

[0017] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the following description of the embodiments will be briefly introduced. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0018] Figure 1 This is a flowchart of a comprehensive vehicle data management method for traffic control.

[0019] Figure 2 This is a schematic diagram of a comprehensive vehicle data management system used for traffic management. Detailed Implementation

[0020] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, the specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings.

[0021] Many specific details are set forth in the following description in order to provide a full understanding of the invention. However, the invention may also be practiced in other ways different from those described herein, and those skilled in the art can make similar extensions without departing from the spirit of the invention. Therefore, the invention is not limited to the specific embodiments disclosed below.

[0022] Secondly, the term "one embodiment" or "example" as used herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the invention. An embodiment appearing in different places in this specification does not necessarily refer to the same embodiment, nor is it a single or selective embodiment that mutually excludes other embodiments.

[0023] Reference Figures 1-2 This is one embodiment of the present invention, which provides a comprehensive vehicle data integrated management method for traffic management, comprising the following steps: S1. Log in to the integrated vehicle data management platform through the application on the mobile terminal, enter the license plate information of the target vehicle, and initiate a query request for the target vehicle.

[0024] S1.1 The user operates the application on the mobile terminal to complete the login operation of the vehicle data integrated management platform.

[0025] Furthermore, a trusted identity authentication entry point is established. Upon launch of the application on the mobile terminal, an interactive interface prompts the user to input authorization credentials, consisting of a username and password. After the user submits the credentials, the application transmits them via an encrypted channel to the integrated vehicle data management platform for verification. The integrated vehicle data management platform compares the received credentials with a pre-stored authorization database. Only when the credentials match perfectly does the platform return a token representing permission for the current session to the application on the mobile terminal, thus completing the login process. This decouples complex backend permission management from simplified frontend user operations, laying a secure foundation for all subsequent data interactions through a one-time strong identity authentication. It effectively overcomes the risk of unauthorized access, ensuring the entire management process begins at a secure and controllable endpoint.

[0026] S1.2 Users who log in to the integrated vehicle data management platform can enter the license plate information of the target vehicle on the application interface of the mobile terminal.

[0027] Furthermore, after successful login, the integrated vehicle data management platform pushes the main function interface to the application on the mobile terminal. The interface includes a dedicated input area for receiving vehicle identification information. Users can perform input actions in this area through two paths: one is to manually type in the target vehicle's license plate number using the mobile terminal's physical or virtual keyboard; the other is to trigger the application on the mobile terminal to call its integrated high-speed image sensor to capture an image of the real license plate and immediately convert the image into structured license plate text information through the embedded optical character recognition engine. Both paths ultimately ensure that the target vehicle's license plate information is accurately filled into the input area, balancing ease of operation with adaptability to different scenarios. Manual input ensures reliability in scenarios without physical vehicles, while image recognition greatly improves the efficiency and accuracy of on-site inspections, jointly overcoming the efficiency bottlenecks or error rate problems that may exist with a single input method.

[0028] S1.3 The query request for the license plate information of the target vehicle is sent from the application on the mobile terminal to the integrated vehicle data management platform.

[0029] Furthermore, after the user confirms the query on the application interface of the mobile terminal, the application encapsulates the license plate information already filled in on the interface into a structured data packet that conforms to a predetermined communication protocol. This data packet not only contains the license plate information itself, but also contains session tokens and other necessary request metadata. The encapsulated data packet is actively sent to the predefined network access point of the vehicle data integrated management platform through the mobile Internet connection, transforming the front-end user interaction event into a standardized network event that can be processed by the back-end. Through data encapsulation and protocol compliance, the integrity and parsability of the request are ensured, effectively overcoming communication failures caused by data format chaos or missing identity, and providing a clear and legitimate trigger signal for the subsequent data retrieval process.

[0030] S2. After receiving the query request, retrieve the passage record data related to the license plate information from the database.

[0031] S2.1 The integrated vehicle data management platform receives a query request for the license plate information of the target vehicle.

[0032] Furthermore, the integrated vehicle data management platform continuously monitors the network ports through which it provides services. When a data packet sent by an application on a mobile terminal arrives at the port, the network service interface of the integrated vehicle data management platform immediately receives the data packet, then unpacks it, verifies whether the data packet format conforms to the predetermined communication protocol, and verifies whether the session token contained therein is valid and has not expired. After passing all verifications, the integrated vehicle data management platform accurately extracts the core query condition, namely the license plate information of the target vehicle, from the unpacked data, thereby completing the reception and parsing of the query request and preparing a unique and legitimate query key for subsequent data retrieval.

[0033] S2.2. Using the license plate information in the query request, access the database. The integrated vehicle data management platform retrieves the passage record data related to the license plate information from the database.

[0034] Furthermore, the data processing unit of the integrated vehicle data management platform uses the license plate information of the target vehicle extracted from the query request as the key condition of the database query statement. This query statement is constructed to search for all data rows in the database table storing massive amounts of traffic records whose license plate number field completely matches the input condition. The constructed query statement is sent to the database engine for execution through a stable database connection. With the assistance of indexes, the database engine quickly completes the scanning and matching work and returns all traffic record data that meet the conditions as a complete result set to the integrated vehicle data management platform, thereby realizing the accurate retrieval of all traffic record data related to the license plate information of the target vehicle from the database.

[0035] S3. Return the passage record data to the application on the mobile terminal for display, forming the passage trajectory information of the target vehicle.

[0036] S3.1 The integrated vehicle data management platform will return the retrieved traffic record data to the application on the mobile terminal via the network.

[0037] Furthermore, the integrated vehicle data management platform encapsulates the retrieved structured passage record data into a data exchange format recognizable by the mobile terminal application. For example, it organizes information such as the passage time, checkpoint location code, and vehicle photo storage path of each passage record into a specific data object format. Subsequently, the integrated vehicle data management platform uses network communication protocols to send the encapsulated data packet as a response to the previous query request, and sends it back to the application on the requesting mobile terminal via the Internet or a dedicated data link. This completes the physical transmission process of data from the central platform to the front-end application, ensuring that the application on the mobile terminal can receive complete and formatted passage record data.

[0038] S3.2 The application on the mobile terminal parses and renders the received passage record data, and displays the parsed and rendered passage record data on the application interface to form the passage trajectory information of the target vehicle.

[0039] Furthermore, after receiving the response data packet from the integrated vehicle data management platform, the mobile terminal application first parses the data packet according to the agreed data exchange format, extracting the specific field content of each passage record. Then, the interface rendering engine of the mobile terminal application converts the parsed data into visual user interface elements according to the predefined display template. For example, the time field is formatted into an easy-to-read date and time string, the checkpoint location code is mapped to coordinate points on the map and marked, or a thumbnail is loaded from the storage path and displayed. Finally, these rendered interface elements are arranged in an orderly manner and drawn in the display area of ​​the mobile terminal application, so as to intuitively present the passage record data of the target vehicle in the form of a list view or map trajectory map, forming passage trajectory information that users can understand and use.

[0040] S4. By inputting query conditions through the integrated vehicle data management platform, traffic data of vehicles in the same or related categories as the target vehicle can be retrieved and obtained.

[0041] S4.1 The user enters new query conditions in the back-end management interface of the vehicle data integrated management platform.

[0042] Furthermore, after successfully logging into the integrated vehicle data management platform, users are directed to an input area designed specifically for advanced queries. This area provides a series of filter controls representing different classification dimensions. Users manually manipulate these controls to input new query conditions based on their current analysis intent. These new query conditions are not targeted at a single license plate, but are based on preset vehicle attribute classifications. For example, in the location dimension, users can select "non-Qingdao license plate" to represent vehicles from other provinces, or in the violation type dimension, they can select "speeding" as a filter condition. After completing the condition settings, users can confirm and submit this set of new query conditions by clicking the "Execute Query" button on the interface, thereby initiating a classification-based retrieval process that is independent of the original target vehicle query.

[0043] S4.2 The integrated vehicle data management platform uses new query criteria to search the database.

[0044] Furthermore, after receiving new query conditions submitted by the user, the backend service of the integrated vehicle data management platform dynamically constructs a database query statement with a different structure but the same purpose, based on the classification dimension corresponding to the new query conditions. The new query conditions are converted into the WHERE clause in the database query statement. For example, when the new query condition is "non-Qingpai", the query statement will be set to find all vehicle records whose license plate numbers do not belong to the provincial code prefix. The integrated vehicle data management platform sends the constructed query statement for execution through the database connection. The database engine scans and matches the entire table or the corresponding index based on the new query conditions, thereby completing the retrieval of all vehicle passage records that meet the classification characteristics in the database.

[0045] S4.3 The integrated vehicle data management platform acquires the traffic data of vehicles that match the new query conditions.

[0046] Furthermore, after the database engine completes the retrieval of the new query conditions, it returns all vehicle passage record data that meet the new query conditions as a result set to the integrated vehicle data management platform. The integrated vehicle data management platform receives and temporarily stores this result set, which contains the passage data of multiple vehicles that meet the classification conditions. Each vehicle's passage data may contain multiple passage records, thus enabling the integrated vehicle data management platform to obtain a set of passage data of multiple vehicles filtered based on classification logic, providing a data foundation for subsequent possible correlation analysis or manual comparison.

[0047] The S5 vehicle data integrated management platform displays pre-set warning event information in a list format on the warning information interface of the back-end management system.

[0048] S5.1 The integrated vehicle data management platform reads various types of early warning event information generated from the stored early warning records.

[0049] Furthermore, in accordance with the predetermined scheduling cycle or in response to user access to the warning information interface of the backend management system, the integrated vehicle data management platform triggers a read operation on the warning event information storage medium. The integrated vehicle data management platform accesses the database table or file storing all warning event records automatically generated by preset rules. By executing a database query command or file read instruction to query all currently unprocessed or warning records within a specified time range, a series of warning event information entries are completely read from the storage medium. Each warning event information entry contains fields such as warning generation time, vehicle license plate number that triggered the warning, warning type, associated checkpoint location, and warning event description information, thus providing a data source for subsequent information organization and display.

[0050] S5.2 The integrated vehicle data management platform will format and organize the read early warning event information according to time and type dimensions to generate list data.

[0051] Furthermore, the integrated vehicle data management platform processes the collection of warning event information entries. First, all entries are sorted according to the warning generation time field. This sorting can be done in descending order from newest to oldest or in ascending order from oldest to newest to determine the chronological order of the entries in the list. Then, all entries are grouped and categorized according to the warning type field. For example, different types of events such as speeding warnings, license plate clone warnings, and vehicle surveillance warnings are grouped into different logical groups. After the sorting and grouping operations are completed, the integrated vehicle data management platform extracts and reassembles the core fields of each warning event information entry according to a predetermined format. For example, the time, license plate number, type, and location information are concatenated into a structured text line or data object, ultimately generating an ordered and clearly categorized list of warning event information data.

[0052] S5.3 The integrated vehicle data management platform renders and displays the formatted list data as a list of warning event information in the warning information interface of the back-end management system.

[0053] Furthermore, when the backend management system of the integrated vehicle data management platform is preparing to render the warning information interface, it calls the formatted and organized list of warning event information data. The frontend rendering engine of the backend management system maps each formatted information in the list data set to a visual row entry in the interface based on a predefined webpage or interface template. For example, time information is rendered in a time column cell, and license plate number information is rendered in a license plate number column cell. Different colored background markers may be added to the row entries according to different warning types. The rendering engine processes the list data row by row until all entries are drawn. Finally, a complete, scrollable list of warning event information containing headers and multiple rows of data content is formed in the warning information interface area of ​​the backend management system for users to view.

[0054] S6. Based on the traffic trajectory information, vehicle traffic data, and early warning event information, select the processing method through the application on the mobile terminal and submit the processing result to the vehicle data integrated management platform.

[0055] S6.1 Users can comprehensively view the target vehicle's travel trajectory information, the travel data of vehicles in the same or related categories as the target vehicle, and the warning event information in the warning information interface.

[0056] Furthermore, users operate the application interface on their mobile terminals to display the target vehicle's travel trajectory information, which is presented as a list of connecting points or times marked on a map. Simultaneously, users operate the backend management interface of the integrated vehicle data management platform to display the travel data of vehicles in the same or related categories as the target vehicle, obtained through new query conditions. This travel data is usually presented as a vehicle list and may include brief travel records for each vehicle. In addition, users also operate the warning information interface of the backend management system of the integrated vehicle data management platform to display a list of warning events. This list displays all warning entries generated under pre-set rules. Through visual browsing and cognitive processing, users associate, compare, and synthesize the information displayed in these three independent interfaces in their minds to form a holistic judgment on the target vehicle and its related situation.

[0057] S6.2 Based on the comprehensive information viewed, the user selects a processing method from the options provided by the application on the mobile terminal.

[0058] Furthermore, after making a comprehensive judgment, the user returns to the operation interface associated with the target vehicle in the application on the mobile terminal, such as a details page specifically for recording the inspection or processing results. On this page, the application on the mobile terminal provides a set of options containing multiple preset handling methods for the user to choose from. The options may include release, warning, on-site penalty, transfer for processing, etc. Based on the judgment formed after comprehensively reviewing the information, the user manually selects a handling method that is considered to be most in line with the current situation and law enforcement requirements from the set of options provided by the application on the mobile terminal. This selection action is recorded by the application on the mobile terminal as a clear user instruction.

[0059] S6.3 The user sends a data packet containing the processing result of the selected processing method to the vehicle data integrated management platform through an application on the mobile terminal.

[0060] Furthermore, after the user confirms and completes the filling in of all necessary information and selection of the method on the application interface of the mobile terminal, a clear submission operation, such as clicking the submit button, triggers the data sending process. The application on the mobile terminal then begins to work, encapsulating the user's selected processing method, along with the target vehicle's license plate information, the timestamp of this processing, and other necessary on-site record information such as on-site photos or descriptive text, into a structured processing result data packet. After encapsulation, the application on the mobile terminal uses the mobile terminal's network connectivity to send the processing result data packet to the predefined network endpoint address of the vehicle data integrated management platform for receiving processing feedback via the Internet or a dedicated data link, thereby completing the submission of the processing result.

[0061] This embodiment also provides a vehicle data integrated management system for traffic management, including: a query module, which allows users to log in to the vehicle data integrated management platform via an application on a mobile terminal, input the license plate information of the target vehicle, and initiate a query request for the target vehicle; The traffic trajectory module, after receiving a query request, retrieves traffic record data related to license plate information from the database, and returns the traffic record data to the application on the mobile terminal for display, thus forming the traffic trajectory information of the target vehicle; The retrieval module allows users to input query criteria into the integrated vehicle data management platform to retrieve and obtain traffic data for vehicles that fall under the same or related categories as the target vehicle. The early warning module, in the vehicle data integrated management platform, displays various pre-set early warning event information in a list format on the early warning information interface of the back-end management system; The submission module, based on traffic trajectory information, vehicle traffic data, and early warning event information, allows users to select a processing method through an application on a mobile terminal and submit the processing result to the integrated vehicle data management platform.

[0062] This embodiment also provides a computer device applicable to the integrated vehicle data management method for traffic management, comprising: a memory and a processor; the memory is used to store computer-executable instructions, and the processor is used to execute the computer-executable instructions to implement the integrated vehicle data management method for traffic management as proposed in the above embodiment.

[0063] The computer device can be a terminal, comprising a processor, memory, communication interface, display screen, and input devices connected via a system bus. The processor provides computing and control capabilities. The memory includes non-volatile storage media and internal memory. The non-volatile storage media stores the operating system and computer programs. The internal memory provides an environment for the operation of the operating system and computer programs stored in the non-volatile storage media. The communication interface is used for wired or wireless communication with external terminals; wireless communication can be achieved through Wi-Fi, carrier networks, NFC (Near Field Communication), or other technologies. The display screen can be an LCD screen or an e-ink screen. The input devices can be a touch layer covering the display screen, buttons, a trackball, or a touchpad on the computer device's casing, or an external keyboard, touchpad, or mouse.

[0064] This embodiment also provides a storage medium storing a computer program. When executed by a processor, the program implements the integrated vehicle data management method for traffic management as proposed in the above embodiments. The storage medium can be implemented by any type of volatile or non-volatile storage device or a combination thereof, such as Static Random Access Memory (SRAM), Electrically Erasable Programmable Read-Only Memory (EEPROM), Erasable Programmable Read Only Memory (EPROM), Programmable Red-Only Memory (PROM), Read-Only Memory (ROM), magnetic storage, flash memory, magnetic disk, or optical disk.

[0065] In summary, this invention, by constructing a closed-loop management process that coordinates mobile terminals and a central platform, achieves a leap in traffic management operations from single vehicle queries to group correlation analysis. It combines classification-based manual extended queries with multi-source information-based comprehensive decision-making. The former guides users to screen related vehicle groups through preset dimensions, laying a data foundation for group behavior analysis, while the latter forcibly integrates multi-dimensional information such as trajectories, related vehicles, and warnings for comprehensive judgment, thereby forming a data-driven and logically clear standard operating procedure. This improves the coverage of investigations while enhancing the scientific nature of decision-making and the accuracy of law enforcement in complex traffic scenarios.

[0066] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention, and all such modifications or substitutions should be covered within the scope of the claims of the present invention.

Claims

1. A comprehensive vehicle data management method for traffic management, characterized in that: This includes logging into the integrated vehicle data management platform via a mobile application, entering the license plate information of the target vehicle, and initiating a query request for the target vehicle; After receiving a query request, the system retrieves traffic record data related to the license plate information from the database and returns the traffic record data to the application on the mobile terminal for display, thus forming the traffic trajectory information of the target vehicle. By inputting query conditions into the integrated vehicle data management platform, traffic data of vehicles in the same or related categories as the target vehicle can be retrieved and obtained. The vehicle data integrated management platform displays pre-set warning event information in a list format on the warning information interface of the back-end management system. Based on traffic trajectory information, vehicle traffic data, and early warning event information, users can select a processing method through an application on a mobile terminal and submit the processing results to the integrated vehicle data management platform.

2. The integrated vehicle data management method for traffic management as described in claim 1, characterized in that: Log in to the integrated vehicle data management platform via a mobile application, enter the license plate information of the target vehicle, and initiate a query request for the target vehicle, including the following steps: Users operate the application on their mobile terminals to log in to the integrated vehicle data management platform. Users who log in to the integrated vehicle data management platform can enter the license plate information of the target vehicle on the application interface of their mobile terminal. The query request for the target vehicle's license plate information is sent from the mobile terminal application to the integrated vehicle data management platform.

3. The integrated vehicle data management method for traffic management as described in claim 2, characterized in that: After receiving a query request, the system retrieves passage record data related to license plate information from the database, including the following steps: The integrated vehicle data management platform receives query requests for the license plate information of the target vehicle; Using the license plate information in the query request to access the database, the integrated vehicle data management platform retrieves the passage record data related to the license plate information from the database.

4. The integrated vehicle data management method for traffic management as described in claim 3, characterized in that: The passage record data is returned to the application on the mobile terminal for display, forming the passage trajectory information of the target vehicle, including the following steps: The integrated vehicle data management platform will retrieve the passage record data and return it to the mobile terminal application via the network; The application on the mobile terminal parses and renders the received traffic record data, and displays the parsed and rendered traffic record data on the application interface to form the traffic trajectory information of the target vehicle.

5. The integrated vehicle data management method for traffic management as described in claim 4, characterized in that: By inputting query criteria into the integrated vehicle data management platform, the system retrieves and obtains traffic data for vehicles belonging to the same or related categories as the target vehicle, including the following steps: Users enter new query criteria in the backend management interface of the integrated vehicle data management platform; The integrated vehicle data management platform uses new query criteria to search the database; The integrated vehicle data management platform acquires traffic data of vehicles that match the new query criteria.

6. The integrated vehicle data management method for traffic management as described in claim 5, characterized in that: The integrated vehicle data management platform displays pre-set warning event information in a list format on the warning information interface of the back-end management system, including the following steps: The integrated vehicle data management platform reads various types of early warning event information generated from the stored early warning records; The integrated vehicle data management platform formats and organizes the read warning event information according to time and type, generating list data; The integrated vehicle data management platform renders and displays the formatted list data as a list of warning event information in the warning information interface of the back-end management system.

7. The integrated vehicle data management method for traffic management as described in claim 6, characterized in that: Based on traffic trajectory information, vehicle traffic data, and early warning event information, the user selects a processing method through a mobile application and submits the processing result to the integrated vehicle data management platform, including the following steps: Users can comprehensively view the target vehicle's travel trajectory information, the travel data of vehicles in the same or related categories as the target vehicle, and the warning event information in the warning information interface; Based on the comprehensive information viewed, users can choose a processing method from the options provided by the application on their mobile device. Users send a data packet containing the processing results of the selected processing method to the integrated vehicle data management platform via an application on their mobile devices.

8. A vehicle data integrated management system for traffic management, based on the vehicle data integrated management method for traffic management according to any one of claims 1 to 7, characterized in that: include, The query module allows users to log in to the integrated vehicle data management platform via a mobile application, input the license plate information of the target vehicle, and initiate a query request for the target vehicle. The traffic trajectory module, after receiving a query request, retrieves traffic record data related to license plate information from the database, and returns the traffic record data to the application on the mobile terminal for display, thus forming the traffic trajectory information of the target vehicle; The retrieval module allows users to input query criteria into the integrated vehicle data management platform to retrieve and obtain traffic data for vehicles that fall under the same or related categories as the target vehicle. The early warning module, in the vehicle data integrated management platform, displays various pre-set early warning event information in a list format on the early warning information interface of the back-end management system; The submission module, based on traffic trajectory information, vehicle traffic data, and early warning event information, allows users to select a processing method through an application on a mobile terminal and submit the processing result to the integrated vehicle data management platform.

9. A computer device comprising a memory and a processor, wherein the memory stores a computer program, characterized in that: When the processor executes the computer program, it implements the steps of the integrated vehicle data management method for traffic management as described in any one of claims 1 to 7.

10. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by the processor, it implements the steps of the integrated vehicle data management method for traffic management as described in any one of claims 1 to 7.