Inspection management system and method based on urban and rural planning
Through the inspection management system based on urban and rural planning, the problem of disconnection between tasks and planning goals in the traditional inspection system is solved, the standardization and process of inspection projects are realized, and the intelligence and coordination of the inspection process are improved.
Patent Information
- Application Number
- CN202510990676.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-18
- Publication Date
- 2025-08-19
AI Technical Summary
The traditional inspection system does not deeply integrate urban and rural planning semantics, resulting in disconnection between tasks and planning goals, and lags in abnormal warnings, making it difficult to meet the needs of refined inspections.
Create a patrol management system based on urban and rural planning, generate inspection project plans through configuration processing, perform verification and information assembly, bind task IDs and inspectors, collect sensor data to form audit trajectory, conduct analysis and multi-channel reminders, and achieve strict control.
The standardization and processization of urban and rural planning inspection projects have been achieved, ensuring timely response to on-time inspections and abnormal warnings has been achieved, and the intelligence and coordination of the inspection process have been improved.
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Figure CN120509883A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of patrol inspection management, and in particular to a patrol inspection management system and method based on urban and rural planning. Background Art
[0002] With the increasing sophistication of urban and rural planning, inspection management needs to address issues such as data silos, insufficient intelligence, extensive process control, and weak multi-channel collaboration. Traditional inspection systems lack deep integration of urban and rural planning semantics, leading to a disconnect between tasks and planning objectives and delayed anomaly warnings. Existing systems lack full-chain intelligent collaboration, making it difficult to meet the demands of refined inspections. Therefore, there is an urgent need to develop an inspection management approach based on the full-dimensional linkage of urban and rural planning, achieving deep collaboration across projects, tasks, data, and control.
[0003] Therefore, a patrol inspection management system and method based on urban and rural planning is now provided. Summary of the Invention
[0004] In order to solve the above technical problems, the purpose of the present invention is to provide an inspection management system and method based on urban and rural planning.
[0005] In order to achieve the above-mentioned object, the present invention provides the following technical solution: a patrol management method based on urban and rural planning, the method comprising: Creating corresponding urban and rural planning inspection projects, configuring and processing the urban and rural planning inspection projects, and generating corresponding urban and rural planning inspection project plans; Verify the urban and rural planning inspection project plan to obtain the verified urban and rural planning inspection project plan, assemble information on the verified urban and rural planning inspection project plan to obtain the task ID of the verified urban and rural planning inspection project plan; bind the task ID to the inspection personnel, and obtain the task requirements based on the task ID, thereby achieving on-time inspection; Collect verified sensor data from urban and rural planning inspection project plans and form an audit trail; conduct judgment and analysis on the audit trail to obtain corresponding inspection analysis results; and report the corresponding inspection analysis results in real time to ensure the standardization and process of urban and rural planning inspection project plans. The inspection analysis results of the urban and rural planning inspection project plan are matched with the corresponding reminder type, and multi-channel push is carried out according to the reminder type, and the push results are recorded to achieve strict control of the inspection process.
[0006] Furthermore, the process of creating corresponding urban and rural planning inspection projects includes: Digitally construct basic information of the inspection project, input the core elements of the project through the system management interface, including the inspection project name, inspection cycle type and planned inspection time range, and form the basic structure of the inspection project with the inspection project name, inspection cycle type and planned inspection time range; Deeply map the urban and rural planning hierarchical attributes of the infrastructure and obtain multi-dimensional organizational data through user attribution information services; Obtain the manager ID, manager name, and department ID through the organizational structure service, call the department name query interface to obtain the department name, and simultaneously bind the manager information to form a basic association between the corresponding manager, department name, and inspection item; automatically generate a globally unique inspection item identifier based on the distributed ID generator; Bind the infrastructure, multi-dimensional organizational data, basic associations and inspection project identifiers of the corresponding inspection projects to generate urban and rural planning inspection projects.
[0007] Furthermore, the process of configuring and processing the urban and rural planning inspection project and generating the corresponding urban and rural planning inspection project plan includes: Perform multi-dimensional verification of urban and rural planning inspection projects, including time logic verification and professional capability verification; assemble information on the verified urban and rural planning inspection project plan to obtain the task ID of the verified urban and rural planning inspection project plan; bind the task ID to the inspection personnel and obtain the task requirements based on the task ID; The urban and rural planning inspection projects after multi-dimensional verification are processed into structured plans to generate corresponding urban and rural planning inspection project plans.
[0008] Furthermore, the process of carrying out structured planning for the urban and rural planning inspection projects after multi-dimensional verification includes: Configure the corresponding area code and organization code for the urban and rural planning inspection items after multi-dimensional verification; According to the configured area code and organization code; each area code is split into area sub-items, and each organization code is split into organization sub-items, and corresponding project plan association records are generated. The project plan association records include association ID, inspection project identifier, area sub-items, organization sub-items and plan status.
[0009] Furthermore, the process of collecting verified sensor data from the urban and rural planning inspection project plan and forming an audit trail includes: Intelligently dispatch the collected and verified sensor data of the urban and rural planning inspection project plan, and receive the code list, attribute code and corresponding sensor data of the corresponding equipment; Constructing standardized data for the code list, attribute code, and corresponding sensor data, defining mapping rules for corresponding fields through a configuration table, and filtering and renaming the fields corresponding to the original code list, attribute code, and corresponding sensor data definitions; Add the current time to each piece of standardized data, generate a collection record message based on the collection time of the corresponding device, match the corresponding point according to the collection record message corresponding to each device, and generate the corresponding fence range. Based on the point and fence range, an unalterable audit trail is formed.
[0010] Furthermore, the collection of sensor data supports three collection modes including: full collection, precise collection and dynamic calculation of time window.
[0011] Furthermore, the process of analyzing the audit trace to obtain corresponding inspection analysis results includes: Obtain the coordinate location information of the inspection personnel in real time; determine whether the coordinate location information is within the fence range of the audit track. If the coordinate location information is outside the fence range of the point, record the inspection record corresponding to the task requirement of the point. When processing the next point, if the coordinate location information is within the fence range of the corresponding point, clear the coordinate location information and retain the historical record of the coordinate location information; Obtain the inspection record of the task required within the fence range of the corresponding point. If the inspection record does not exist, record the inspection record; if the inspection record exists, calculate the inspection time difference between the current inspection record and the historical inspection record of the point; Obtain the historical inspection time corresponding to the task requirements, and then obtain the corresponding historical inspection time difference; if the inspection time difference is greater than the historical inspection time difference, record the warning information until the coordinate position information of the inspection personnel is within the fence range of the point, and end the current warning; if the inspection time difference is less than or equal to the historical inspection time difference, do not record the warning information, and then obtain the corresponding inspection analysis result.
[0012] Furthermore, the process of matching the corresponding reminder types to the urban and rural planning inspection project plan includes: Obtain patrol personnel information through user information services; the patrol personnel information includes: mobile phone number, department name, and area number; Extracting exception types from inspection task objects in the urban and rural planning inspection project plan as the basis for matching reminder types; the exception types include: high-risk equipment data, high-risk core areas, and routine overdue; Develop intelligent matching rules, including: if the task anomaly type is high-risk equipment data or high-risk core areas, match the first-level alarm information; if the task anomaly type is regular overdue, match the second-level to-do information; Formulate rule engine mapping, map corresponding exception types to corresponding reminder types one by one, and automatically generate message type identifiers; The corresponding task ID, area number, attribute code, inspection personnel information, reminder type and message sending time are dynamically assembled into the message content to obtain the information to be processed; Based on a unified message service interface, the information to be processed is sent to the message center to achieve strict control of the inspection process.
[0013] The second aspect of the present invention further provides an inspection management system based on urban and rural planning, comprising: an inspection project management module, a task intelligent distribution module, a problem reporting management module, a sensor data acquisition module, and an inspection process control module; Inspection project management module, used to create corresponding urban and rural planning inspection projects, configure and process the urban and rural planning inspection projects, and generate corresponding urban and rural planning inspection project plans; The task intelligent distribution module is used to verify the urban and rural planning inspection project plan, obtain the verified urban and rural planning inspection project plan, assemble the information of the verified urban and rural planning inspection project plan, and obtain the task ID of the verified urban and rural planning inspection project plan; bind the task ID with the inspection personnel information, and obtain the task requirements based on the task ID, thereby achieving on-time inspection; The sensor data acquisition module is used to collect the verified sensor data of the urban and rural planning inspection project plan and form an audit trail; The problem reporting management module analyzes the audit trail and obtains the corresponding inspection analysis results; the corresponding inspection analysis results are reported in real time to ensure the standardization and process of urban and rural planning inspection project plans; The inspection process control module is used to match the inspection analysis results of urban and rural planning inspection project plans with reminder types, push them through multiple channels according to the reminder types, and record the push results to achieve strict control of the inspection process.
[0014] Compared with the existing technology, the beneficial effects of the present invention are: creating corresponding urban and rural planning inspection projects, and performing configuration processing to generate urban and rural planning inspection project plans; verifying the urban and rural planning inspection project plans to obtain the verified urban and rural planning inspection project plans, and performing information assembly to obtain the task ID; binding the task ID with the inspection personnel information, and obtaining the task requirements based on the task ID; collecting sensor data of the verified urban and rural planning inspection project plans, and forming an audit trail; judging and analyzing the audit trail to obtain the inspection analysis results, and matching the inspection analysis results with the corresponding reminder types, and pushing them through multiple channels according to the reminder types, and recording the push results to achieve strict control of the inspection process. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, a brief introduction to the drawings required for use in the embodiments will be given below. Obviously, the drawings described below are only some embodiments recorded in the present invention. For ordinary technicians in this field, other drawings can also be obtained based on these drawings.
[0016] Figure 1 This is a schematic diagram of the steps of an inspection management method based on urban and rural planning.
[0017] Figure 2 This is a module diagram of an inspection and management system based on urban and rural planning. DETAILED DESCRIPTION
[0018] To make the objectives, technical solutions, and advantages of the present invention more apparent, the technical solutions of the present invention will be described in detail below. Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other implementations obtained by those of ordinary skill in the art without inventive effort are within the scope of protection of the present invention.
[0019] like Figure 1 As shown, a patrol management method based on urban and rural planning includes the following steps: Creating corresponding urban and rural planning inspection projects, configuring and processing the urban and rural planning inspection projects, and generating corresponding urban and rural planning inspection project plans; Verify the urban and rural planning inspection project plan to obtain the verified urban and rural planning inspection project plan, assemble information on the verified urban and rural planning inspection project plan to obtain the task ID of the verified urban and rural planning inspection project plan; bind the task ID to the inspection personnel, and obtain the task requirements based on the task ID, thereby achieving on-time inspection; Collect verified sensor data from urban and rural planning inspection project plans and form an audit trail; conduct judgment and analysis on the audit trail to obtain corresponding inspection analysis results; and report the corresponding inspection analysis results in real time to ensure the standardization and process of urban and rural planning inspection project plans. The inspection analysis results of the urban and rural planning inspection project plan are matched with the corresponding reminder type, and multi-channel push is carried out according to the reminder type, and the push results are recorded to achieve strict control of the inspection process.
[0020] It should be further explained that, during the specific implementation process, the specific process of creating the corresponding urban and rural planning inspection project includes: Digitally construct basic information for inspection projects. Enter the core elements of the project through the system management interface, including the inspection project name (such as "municipal facilities inspection"), inspection cycle type (daily inspection, weekly inspection, or monthly inspection), and planned inspection time range. The inspection project name, inspection cycle type, and planned inspection time range constitute the basic structure of the inspection project. Perform deep mapping of urban and rural planning hierarchical attributes on the infrastructure and obtain multi-dimensional organizational data through the user belonging information service (e.g., calling the "userBelongservice.getCurUserBelongInfo" method); It should be further explained that the multi-dimensional organizational data includes: tenant ID (used to distinguish the management authority of different districts and counties), street ID (such as "No. 2, Road, Street, City, etc."), organizational structure array (for example, "District and County Planning Bureau - Geographic Distribution - Inspection Personnel"), department ID and parent department array; Obtain the manager ID, manager name, and department ID through the organizational structure service, call the department name query interface (for example, call the department name query interface "publicUtilService.queryDeptName") to obtain the department name, and simultaneously bind the manager information to form a basic association between the corresponding manager, department name, and inspection item; automatically generate a globally unique inspection item identifier based on the distributed ID generator; Bind the infrastructure, multi-dimensional organizational data, basic associations and inspection project identification of the corresponding inspection project to generate the final urban and rural planning inspection project.
[0021] It should be further explained that, in the specific implementation process, the specific process of configuring and processing the urban and rural planning inspection project and generating the corresponding urban and rural planning inspection project plan includes: Conduct multi-dimensional verification of urban and rural planning inspection projects, including time logic verification and professional capability verification; It should be further explained that the time logic check includes that the start time of the inspection item is greater than or equal to the current time, and the end time of the inspection item is greater than or equal to the start time of the inspection item.
[0022] For example, if you enter "2025-06-20" as the inspection project start time and "2025-06-15" as the inspection project end time, a time sequence error alarm will be triggered; It should be further explained that the professional capability verification is to analyze the professional type selected by the manager (for example, "water supply and drainage, electrical, pipeline maintenance", etc.), and verify whether there is a professional capability gap through the personnel skill tag library (used to store the certification information of the inspection personnel).
[0023] For example, if an urban and rural planning inspection project is configured with the "elevator safety" profession but the team does not have a certified person, the system will highlight the prompt and recommend a cross-departmental collaboration plan.
[0024] Assemble the verified urban and rural planning inspection project plan information to obtain the verified urban and rural planning inspection project plan task ID; bind the task ID with the inspection personnel information, and obtain the task requirements based on the task ID, thereby achieving on-time inspection; It should be further explained that the task requirements include inspection time, inspection duration, and inspection items.
[0025] The urban and rural planning inspection projects after multi-dimensional verification are processed into structured plans to generate corresponding urban and rural planning inspection project plans.
[0026] It should be further explained that the specific process of carrying out structured planning for urban and rural planning inspection projects after multi-dimensional verification includes: Configure the corresponding area code and organization code for the urban and rural planning inspection items after multi-dimensional verification; Based on the configured area codes (such as "01,02,03" for three streets) and organization codes (such as "org001,org002" for two communities); Each region code is split into region sub-items (e.g., "01"), and each organization code is split into organization sub-items (e.g., "org001"), and corresponding project plan association records are generated. The project plan association records include the association ID, inspection project identifier, region sub-items, organization sub-items, and plan status (e.g., "0" indicates pending activation; "1" indicates activated); For example, call the project plan associated method "PatrolDefineProjectRela".
[0027] It is important to further explain that, during the specific implementation process, the specific process of collecting and verifying the sensor data of the urban and rural planning inspection project plan and forming an audit trail includes: Intelligently schedule the collected and verified sensor data for urban and rural planning inspection projects, receiving a list of device codes (e.g., "dev001, dev002"), attribute codes (e.g., "water_pressure, gas_leak"), and corresponding sensor data; the attribute codes include: attribute code, resource type, and collection time window; Collecting sensor data supports three collection modes: 1. Full collection: When no device is specified, all devices with a status of "true" in the code list are queried; 2. Precise collection: Split the array (split(",")) according to the device's attribute code to construct a device information object, including: attribute code, resource type, and collection time; 3. Dynamic calculation of time window: If the device resource type is configured with a dynamic time window (for example, storing "08:00 or 18:00" in the remarks field of sysDictItem), collection is performed according to the dynamic time window; if not configured, data is collected for the 10 minutes before the current time by default (for example, if the current time is 10:30, sensor data from 10:20-10:30 is collected by default).
[0028] Build standardized data for the code list, attribute code, and corresponding sensor data, define mapping rules for corresponding fields through the configuration table (for example, the attribute code field "PressValue" of a device is mapped to the standard field "water_pressure"), and filter and rename the corresponding fields of the original code list, attribute code, and corresponding sensor data definition; Add the current time to each piece of standardized data, generate a collection record message based on the collection time of the corresponding device, match the corresponding point according to the collection record message corresponding to each device, and generate the corresponding fence range. Based on the point and fence range, an unalterable audit trail is formed.
[0029] It should be further explained that the collection record message includes data such as device attribute code, resource type, current time, collection time, and original data content, and is inserted into the property_brain_gather_qxcgq table.
[0030] It should be further explained that, in the specific implementation process, the specific process of analyzing the audit trail and obtaining the corresponding inspection analysis results includes: Obtain the coordinate location information of inspection personnel in real time; Determine whether the coordinate location information is within the fence range of the audit trail. If the coordinate location information is outside the fence range of the point, record the inspection record corresponding to the task requirement of the point. When processing the next point, if the coordinate location information is within the fence range of the corresponding point, clear the coordinate location information and retain the historical record of the coordinate location information. It should be further explained that when the coordinate position information is within the fence range of the point, it means that the task requirement corresponding to the point has been completed and it is a repeated inspection.
[0031] Obtain the inspection record of the task required within the fence range of the corresponding point. If the inspection record does not exist, record the inspection record; if the inspection record exists, calculate the inspection time difference between the current inspection record and the historical inspection record of the point; Obtain the historical inspection time corresponding to the task requirements, and then obtain the corresponding historical inspection time difference; If the inspection time difference is greater than the historical inspection time difference, the warning information is recorded until the coordinate position information of the inspection personnel is within the fence range of the point, and the current warning is ended; if the inspection time difference is less than or equal to the historical inspection time difference, the warning information is not recorded, and the corresponding inspection analysis results are obtained.
[0032] The corresponding inspection and analysis results are reported in real time to ensure the standardization and process-based planning of urban and rural planning inspection projects.
[0033] It should be further explained that, in the specific implementation process, the specific process of matching the urban and rural planning inspection project plan with the corresponding reminder type includes: Obtain patrol personnel information (e.g., fields such as "phone, deptName, areaCode") through the user information service (e.g., "userInfoMapper.queryAppUserByPhone"); the patrol personnel information includes: mobile phone number, department name, area code, etc.
[0034] Anomaly types are extracted from the inspection task objects of the urban and rural planning inspection project plan as the basis for matching reminder types; the anomaly types include: high-risk equipment data, high-risk core areas, routine overdue, etc.
[0035] Develop intelligent matching rules, including: if the task anomaly type is high-risk equipment data (for example, gas leakage, water quality exceeding standards, etc.) or high-risk core areas (for example, CBD, cultural heritage sites, etc.), match the first-level alarm information and set the highest priority (for example, marking it in the sendType field);
[0036] If the exception type of the task is a regular overdue (i.e., inspection not completed on time or low-risk issue), match the secondary to-do information.
[0037] Create a rule engine mapping to map the corresponding exception type to the corresponding reminder type (for example, the type assignment logic of the content field, such as "type": 6 corresponds to the first-level alarm information, and "type": 4 corresponds to the second-level to-do information), and automatically generate the message type identifier.
[0038] The corresponding task ID, area number, attribute code, inspection personnel information, reminder type and message sending time are dynamically assembled into the message content to obtain the information to be processed, so that the receiver can quickly locate the problem. It should be further explained that the corresponding default processing period should be set to ensure that the reminder is effective within a reasonable time.
[0039] Based on a unified message service interface (for example, the "messageService.sendMsg" method), the information to be processed is sent to the message center to achieve strict control of the inspection process.
[0040] It should be further explained that the message middle platform supports multi-channel push such as APP, SMS, and voice.
[0041] The push results (eg, success, failure, and recipient response status) returned by the message service interface are captured and stored in the system log table for subsequent reminder strategy optimization.
[0042] It should be further explained that if multi-channel push fails and is retried, a 3-time retry mechanism is set, with an interval of 1 minute each, to ensure the delivery rate of the pending information; for example, push failure caused by network fluctuations.
[0043] like Figure 2 As shown, an inspection management system based on urban and rural planning includes: an inspection project management module, a task intelligent distribution module, a problem reporting management module, a sensor data acquisition module, and an inspection process control module; Inspection project management module, used to create corresponding urban and rural planning inspection projects, configure and process the urban and rural planning inspection projects, and generate corresponding urban and rural planning inspection project plans; The task intelligent distribution module is used to verify the urban and rural planning inspection project plan, obtain the verified urban and rural planning inspection project plan, assemble the information of the verified urban and rural planning inspection project plan, and obtain the task ID of the verified urban and rural planning inspection project plan; bind the task ID with the inspection personnel information, and obtain the task requirements based on the task ID, thereby achieving on-time inspection; The sensor data acquisition module is used to collect the verified sensor data of the urban and rural planning inspection project plan and form an audit trail; The problem reporting management module analyzes the audit trail and obtains the corresponding inspection analysis results; the corresponding inspection analysis results are reported in real time to ensure the standardization and process of urban and rural planning inspection project plans; The inspection process control module is used to match the inspection analysis results of urban and rural planning inspection project plans with reminder types, push them through multiple channels according to the reminder types, and record the push results to achieve strict control of the inspection process.
[0044] The above embodiments are only used to illustrate the technical method of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical method of the present invention may be modified or replaced by equivalents without departing from the spirit and scope of the technical method of the present invention.
Claims
1. A patrol inspection management method based on urban and rural planning, characterized in that: The method comprises: Creating corresponding urban and rural planning inspection projects, configuring and processing the urban and rural planning inspection projects, and generating corresponding urban and rural planning inspection project plans; Verify the urban and rural planning inspection project plan to obtain the verified urban and rural planning inspection project plan, assemble information on the verified urban and rural planning inspection project plan to obtain the task ID of the verified urban and rural planning inspection project plan; bind the task ID to the inspection personnel, and obtain the task requirements based on the task ID, thereby achieving on-time inspection; Collect verified sensor data from urban and rural planning inspection project plans and form an audit trail; conduct judgment and analysis on the audit trail to obtain corresponding inspection analysis results; and report the corresponding inspection analysis results in real time to ensure the standardization and process of urban and rural planning inspection project plans. The inspection analysis results of the urban and rural planning inspection project plan are matched with the corresponding reminder type, and multi-channel push is carried out according to the reminder type, and the push results are recorded to achieve strict control of the inspection process.
2. The inspection management method based on urban and rural planning according to claim 1 is characterized in that: The process of creating a corresponding urban and rural planning inspection project includes: Digitally construct basic information of the inspection project, input the core elements of the project through the system management interface, including the inspection project name, inspection cycle type and planned inspection time range, and form the basic structure of the inspection project with the inspection project name, inspection cycle type and planned inspection time range; Deeply map the urban and rural planning hierarchical attributes of the infrastructure and obtain multi-dimensional organizational data through user attribution information services; Obtain the manager ID, manager name, and department ID through the organizational structure service, call the department name query interface to obtain the department name, and simultaneously bind the manager information to form a basic association between the corresponding manager, department name, and inspection item; automatically generate a globally unique inspection item identifier based on the distributed ID generator; Bind the infrastructure, multi-dimensional organizational data, basic associations and inspection project identifiers of the corresponding inspection projects to generate urban and rural planning inspection projects.
3. The inspection management method based on urban and rural planning according to claim 2 is characterized in that: The process of configuring and processing urban and rural planning inspection projects and generating corresponding urban and rural planning inspection project plans includes: Perform multi-dimensional verification of urban and rural planning inspection projects, including time logic verification and professional capability verification; assemble information on the verified urban and rural planning inspection project plan to obtain the task ID of the verified urban and rural planning inspection project plan; bind the task ID to the inspection personnel and obtain the task requirements based on the task ID; The urban and rural planning inspection projects after multi-dimensional verification are processed into structured plans to generate corresponding urban and rural planning inspection project plans.
4. The inspection management method based on urban and rural planning according to claim 3 is characterized in that: The process of carrying out structured planning for urban and rural planning inspection projects after multi-dimensional verification includes: Configure the corresponding area code and organization code for the urban and rural planning inspection items after multi-dimensional verification; According to the configured area code and organization code; each area code is split into area sub-items, and each organization code is split into organization sub-items, and corresponding project plan association records are generated. The project plan association records include association ID, inspection project identifier, area sub-items, organization sub-items and plan status.
5. The inspection management method based on urban and rural planning according to claim 4 is characterized in that: The process of collecting verified sensor data from urban and rural planning inspection project plans and forming an audit trail includes: Intelligently dispatch the collected and verified sensor data of the urban and rural planning inspection project plan, and receive the code list, attribute code and corresponding sensor data of the corresponding equipment; Constructing standardized data for the code list, attribute code, and corresponding sensor data, defining mapping rules for corresponding fields through a configuration table, and filtering and renaming the fields corresponding to the original code list, attribute code, and corresponding sensor data definitions; Add the current time to each piece of standardized data, generate a collection record message based on the collection time of the corresponding device, match the corresponding point according to the collection record message corresponding to each device, and generate the corresponding fence range. Based on the point and fence range, an unalterable audit trail is formed.
6. The inspection management method based on urban and rural planning according to claim 5 is characterized in that: Collecting sensor data supports three collection modes: full collection, precise collection, and dynamic calculation within a time window.
7. The inspection management method based on urban and rural planning according to claim 6 is characterized in that: The process of analyzing the audit trace and obtaining the corresponding inspection analysis results includes: Obtain the coordinate location information of the inspection personnel in real time; determine whether the coordinate location information is within the fence range of the audit track. If the coordinate location information is outside the fence range of the point, record the inspection record corresponding to the task requirement of the point. When processing the next point, if the coordinate location information is within the fence range of the corresponding point, clear the coordinate location information and retain the historical record of the coordinate location information; Obtain the inspection record of the task required within the fence range of the corresponding point. If the inspection record does not exist, record the inspection record; if the inspection record exists, calculate the inspection time difference between the current inspection record and the historical inspection record of the point; Obtain the historical inspection time corresponding to the task requirements, and then obtain the corresponding historical inspection time difference; if the inspection time difference is greater than the historical inspection time difference, record the warning information until the coordinate position information of the inspection personnel is within the fence range of the point, and end the current warning; if the inspection time difference is less than or equal to the historical inspection time difference, do not record the warning information, and then obtain the corresponding inspection analysis result.
8. The inspection management method based on urban and rural planning according to claim 7 is characterized in that: The process of matching the corresponding reminder types to the urban and rural planning inspection project plan includes: Obtain patrol personnel information through user information services; the patrol personnel information includes: mobile phone number, department name, and area number; Extracting exception types from inspection task objects in the urban and rural planning inspection project plan as the basis for matching reminder types; the exception types include: high-risk equipment data, high-risk core areas, and routine overdue; Develop intelligent matching rules, including: if the task anomaly type is high-risk equipment data or high-risk core areas, match the first-level alarm information; if the task anomaly type is regular overdue, match the second-level to-do information; Formulate rule engine mapping, map corresponding exception types to corresponding reminder types one by one, and automatically generate message type identifiers; The corresponding task ID, area number, attribute code, inspection personnel information, reminder type and message sending time are dynamically assembled into the message content to obtain the information to be processed; Based on a unified message service interface, the information to be processed is sent to the message center to achieve strict control of the inspection process.
9. A patrol inspection management system based on urban and rural planning, which implements the patrol inspection management method based on urban and rural planning as described in any one of claims 1 to 8, characterized in that: include: Inspection project management module, task intelligent distribution module, problem reporting management module, sensor data acquisition module and inspection process control module; Inspection project management module, used to create corresponding urban and rural planning inspection projects, configure and process the urban and rural planning inspection projects, and generate corresponding urban and rural planning inspection project plans; The task intelligent distribution module is used to verify the urban and rural planning inspection project plan, obtain the verified urban and rural planning inspection project plan, assemble information of the verified urban and rural planning inspection project plan, and obtain the task ID of the verified urban and rural planning inspection project plan; Bind the task ID with the inspection personnel's information, and obtain the task requirements based on the task ID, thereby achieving on-time inspection; The sensor data acquisition module is used to collect the verified sensor data of the urban and rural planning inspection project plan and form an audit trail; The problem reporting management module analyzes the audit trail and obtains the corresponding inspection analysis results; the corresponding inspection analysis results are reported in real time to ensure the standardization and process of urban and rural planning inspection project plans; The inspection process control module is used to match the inspection analysis results of urban and rural planning inspection project plans with reminder types, push them through multiple channels according to the reminder types, and record the push results to achieve strict control of the inspection process.
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