Pipe network inspection method, system and terminal based on gas GIS (Geographic Information System)

Through the gas GIS-based pipeline inspection method, the inspection characteristics are analyzed, the inspection areas are divided and the target inspection areas are determined, and the problem of lack of targetedness and accuracy of gas pipeline inspection in the existing technology is solved, and abnormal gas pipeline operation is promptly discovered and dealt with in a timely manner to ensure gas safety.

CN119992768APending Publication Date: 2025-05-13SHENZHEN SAIYITE INFORMATION TECH CO LTD +2
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202411972262.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

The existing technology cannot improve the pertinence and accuracy of gas pipeline inspections, resulting in the inability to detect and deal with abnormal gas pipeline operation.

Method used

The pipeline inspection method based on gas GIS is adopted. By obtaining pipeline data in different regions, analyzing inspection characteristics based on the smart gas platform, multiple inspection areas are divided, and target inspection areas are determined according to the designated inspection tasks, and inspection and maintenance are carried out.

Benefits of technology

It improves the pertinence and accuracy of gas pipeline inspections, ensures that gas pipelines can be discovered and dealt with in a timely manner when abnormal gas pipelines are running, and ensures gas safety.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119992768A_ABST
    Figure CN119992768A_ABST
Patent Text Reader

Abstract

The invention discloses a gas GIS-based pipe network inspection method, system and terminal, and the method comprises the steps: obtaining pipe network data of gas pipe networks in different regions, and carrying out the analysis of the pipe network data based on an intelligent gas platform, and obtaining the inspection features of the gas pipe networks; carrying out region division on a gas GIS (Geographic Information System) pipe network map according to the inspection characteristics to obtain a plurality of gas inspection districts; when a specified patrol task is received, determining a target patrol area in the plurality of gas patrol areas according to the specified patrol task, and sending the target patrol area to a target person of the specified patrol task for patrol; and obtaining an inspection result, if the inspection result is abnormal, sending the inspection result and the target inspection district to a maintenance network, and notifying the maintenance network to arrange maintenance personnel for maintenance. The intelligent gas platform analyzes pipe network data, divides inspection areas, receives tasks and feeds back abnormities, and ensures gas safety maintenance.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of gas pipeline network inspection, and in particular to a pipeline network inspection method, system, terminal and computer-readable storage medium based on gas GIS. Background Art

[0002] At present, natural gas is flammable and explosive, so its safety during transportation is extremely important, which places high demands on the reliability of the gas transmission pipeline.

[0003] Gas has been widely used in many fields of social life and production, but gas pipelines are bound to fail during the transportation of gas. To ensure the safety of gas transportation, gas pipelines need to be regularly inspected and maintained. The distribution of gas pipelines is complex. If the inspection area allocation of inspection personnel is not clear and reasonable, it will not only consume a lot of manpower, material resources and time, but also easily lead to missed inspections, and some pipeline failures may not be discovered and handled in the first time.

[0004] However, universal and routine inspection methods will result in gas inspections that are not targeted, consuming manpower and material resources, and making it difficult to detect abnormalities in the operation of the gas pipeline network in a timely manner.

[0005] Therefore, the prior art still needs to be improved and developed. Summary of the invention

[0006] The main purpose of the present invention is to provide a gas GIS-based pipeline inspection method, system and computer-readable storage medium, aiming to solve the problem in the prior art that it is impossible to improve the pertinence and accuracy of gas pipeline inspection, resulting in the inability to take corresponding measures in time when abnormalities occur in the operation of the gas pipeline network.

[0007] To achieve the above object, the present invention provides a gas GIS-based pipeline network inspection method, which comprises the following steps:

[0008] Obtain the pipeline network data of gas pipeline networks in different regions, analyze the pipeline network data based on the smart gas platform, and obtain the inspection characteristics of the gas pipeline network;

[0009] According to the inspection characteristics, the gas GIS pipeline network map is divided into regions to obtain multiple gas inspection areas;

[0010] When a designated inspection task is received, a target inspection area among the plurality of gas inspection areas is determined according to the designated inspection task, and the target inspection area is sent to a target person of the designated inspection task for inspection;

[0011] Obtain the inspection result. If the inspection result is abnormal, send the inspection result and the target inspection area to the maintenance network point, and notify the maintenance network point to arrange maintenance personnel to perform repairs.

[0012] Optionally, in the gas GIS-based pipeline network inspection method, the inspection features include location information, inspection time, and inspection frequency;

[0013] The obtaining of pipeline network data of gas pipeline networks in different regions, analyzing the pipeline network data based on the smart gas platform, and obtaining inspection characteristics of the gas pipeline network specifically include:

[0014] Collecting pipeline network data of gas pipeline networks in different regions, preprocessing the pipeline network data, and obtaining processed target data;

[0015] The target data is analyzed based on the smart gas platform to obtain the location information, inspection time and inspection frequency of the gas pipeline network.

[0016] Optionally, the gas GIS-based pipeline network inspection method, wherein the gas GIS pipeline network map is divided according to the inspection characteristics to obtain multiple gas inspection areas, specifically includes:

[0017] Divide the gas GIS pipeline network map according to the inspection characteristics to generate one or more key inspection points in the gas GIS pipeline network map;

[0018] Based on the one or more key inspection points, multiple gas inspection areas in the gas GIS pipeline network map are generated.

[0019] Optionally, the gas GIS-based pipeline inspection method, wherein, when a designated inspection task is received, a target inspection area among a plurality of gas inspection areas is determined according to the designated inspection task, and the target inspection area is sent to a target person of the designated inspection task for inspection, and the method further comprises:

[0020] A business scope and a business type are obtained, and the business scope is divided according to the business type to obtain multiple business sets.

[0021] Optionally, the gas GIS-based pipeline inspection method, wherein, when a designated inspection task is received, a target inspection area among a plurality of gas inspection areas is determined according to the designated inspection task, and the target inspection area is sent to a target person of the designated inspection task for inspection, specifically comprising:

[0022] When a designated inspection task is received, the plurality of gas inspection areas are screened according to the designated inspection task to obtain a target inspection area;

[0023] Determine a target set among the multiple service sets and a target service type among the service types according to the designated inspection task;

[0024] The target personnel of the designated inspection task are determined according to the target set and the target business type, and the target inspection area is sent to the target personnel of the designated inspection task for inspection.

[0025] Optionally, in the gas GIS-based pipeline inspection method, the step of determining a target set in the multiple business sets and a target business type in the business types according to the designated inspection task specifically includes:

[0026] Analyze the designated inspection task to obtain an analysis result;

[0027] Matching the multiple service sets according to the analysis results to obtain a target set;

[0028] According to the analysis result, a business type match is performed on the business type to obtain a target business type.

[0029] Optionally, the gas GIS-based pipeline inspection method, wherein the obtaining of the inspection result, if the inspection result is abnormal, sending the inspection result and the target inspection area to a maintenance network point, and notifying the maintenance network point to arrange maintenance personnel for repair, specifically includes:

[0030] Obtaining inspection results, and if the inspection results are abnormal, obtaining the maintenance point closest to the target inspection area according to the location information of the target inspection area;

[0031] Send the inspection results and the location information of the target inspection area to the maintenance network point, and notify the maintenance network point to arrange maintenance personnel to perform maintenance;

[0032] The maintenance result returned by the maintenance network point is received, wherein the maintenance result includes maintenance success and maintenance failure.

[0033] In addition, to achieve the above-mentioned purpose, the present invention further provides a gas GIS-based pipeline network inspection system, wherein the gas GIS-based pipeline network inspection system:

[0034] An inspection feature acquisition module is used to acquire the pipeline network data of gas pipeline networks in different regions, analyze the pipeline network data based on the smart gas platform, and obtain the inspection features of the gas pipeline network;

[0035] A gas inspection area generation module is used to divide the area on the gas GIS pipe network map according to the inspection characteristics to obtain multiple gas inspection areas;

[0036] A target inspection area inspection module is used to determine a target inspection area among a plurality of gas inspection areas according to the designated inspection task when receiving a designated inspection task, and send the target inspection area to a target person of the designated inspection task for inspection;

[0037] The target inspection area maintenance module is used to obtain the inspection result. If the inspection result is abnormal, the inspection result and the target inspection area are sent to the maintenance network point, and the maintenance network point is notified to arrange maintenance personnel for maintenance.

[0038] In addition, to achieve the above-mentioned purpose, the present invention also provides a computer-readable storage medium, wherein the computer-readable storage medium stores a gas GIS-based pipeline inspection program, and when the gas GIS-based pipeline inspection program is executed by a processor, the steps of the gas GIS-based pipeline inspection method as described above are implemented.

[0039] The present invention obtains the pipeline network data of gas pipeline networks in different regions, analyzes the pipeline network data based on the smart gas platform, and obtains the inspection characteristics of the gas pipeline network; divides the area on the gas GIS pipeline network map according to the inspection characteristics, and obtains multiple gas inspection areas; when receiving a designated inspection task, determines the target inspection area among the multiple gas inspection areas according to the designated inspection task, and sends the target inspection area to the target personnel of the designated inspection task for inspection; obtains the inspection result, and if the inspection result is abnormal, sends the inspection result and the target inspection area to the maintenance network point, and notifies the maintenance network point to arrange maintenance personnel for repair. The present invention analyzes the pipeline network data, divides the inspection area, receives tasks and feedbacks abnormalities through the smart gas platform, and ensures safe gas maintenance. BRIEF DESCRIPTION OF THE DRAWINGS

[0040] Figure 1 It is a flow chart of a preferred embodiment of the gas GIS-based pipeline network inspection method of the present invention;

[0041] Figure 2 It is a structural diagram of a preferred embodiment of the gas GIS-based pipeline network inspection system of the present invention;

[0042] Figure 3 It is a structural diagram of a preferred embodiment of the terminal of the present invention. DETAILED DESCRIPTION

[0043] In order to make the purpose, technical solution and advantages of the present invention clearer and more specific, the present invention is further described in detail below with reference to the accompanying drawings and examples. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.

[0044] The universal and conventional inspection methods in the prior art will lead to the problem that the gas inspection is not targeted, which consumes manpower and material resources, and it is difficult to timely discover the abnormal operation of the gas pipeline network, and it is impossible to improve the pertinence and accuracy of the gas pipeline network inspection. Therefore, a pipeline network inspection method based on gas GIS is needed, which can improve the pertinence and accuracy of the gas pipeline network inspection.

[0045] The gas GIS-based pipeline network inspection method described in the preferred embodiment of the present invention is as follows: Figure 1 As shown, the gas GIS-based pipeline network inspection method includes the following steps:

[0046] Step S10: Obtain pipeline network data of gas pipeline networks in different regions, analyze the pipeline network data based on the smart gas platform, and obtain inspection characteristics of the gas pipeline network.

[0047] Specifically, the inspection characteristics include location information, inspection time, and inspection frequency. The pipeline data of gas pipelines in different areas are collected, and the pipeline data are pre-processed to obtain the processed target data; the target data is analyzed based on the smart gas platform to obtain the location information, inspection time, and inspection frequency of the gas pipeline network (wherein, the location characteristics may include the location coordinates, terrain, inspection difficulty, etc. of the inspection unit; the required inspection time may refer to the next inspection time determined according to the inspection frequency requirements and the time of the last inspection; the inspection frequency may refer to the time interval for inspecting the inspection unit). For example: for periodic business, the inspection frequency needs to be set, so as to realize the periodic generation task according to the set inspection frequency. For periodic business, the inspection frequency needs to be set. Pull down to select the frequency division basis and set the inspection frequency.

[0048] For pipeline inspection business, the inspection frequency corresponds to different pipeline risk levels, so the inspection frequency needs to be set according to the risk level. The business requirements for risk level setting are as follows: Level 1 risk: two inspections a day, Level 2 risk: one inspection a day, Level 3 risk: two inspections a week, Level 4 risk: one inspection every seven days. In order to generate pipeline inspection tasks according to the above rules, you need to first set the risk level for all pipelines to be inspected.

[0049] Step S20: divide the gas GIS network map into different areas according to the inspection characteristics to obtain multiple gas inspection areas.

[0050] Specifically, the gas GIS pipeline network map is divided according to the inspection characteristics to generate one or more key inspection points in the gas GIS pipeline network map (key inspection points refer to key inspection units in the gas GIS pipeline network map. In some embodiments, key inspection points can be pipelines, pipeline intersections or pressure regulating stations in the gas GIS pipeline network map, etc.); based on the one or more key inspection points, multiple gas inspection areas in the gas GIS pipeline network map are generated (gas inspection areas refer to part or all of the inspection areas divided by the gas GIS pipeline network map), thereby improving the efficiency and pertinence of gas pipeline network area inspections and ensuring the stable and safe operation of the gas pipeline network. In some embodiments, the smart gas platform includes a preset number of key inspection points in each inspection area. Determine one or more gas inspection areas within the target inspection area. The preset number of areas that each gas inspection area needs to include can be set by technical personnel in this field based on experience. Further, obtain the business scope and business type, divide the business scope according to the business type (grid division), and obtain multiple business sets (for example: grid division is performed within the scope of the area. When the team leader assigns work tasks to employees, one or more business grids can be assigned to the same person. Plans and tasks are then assigned to each business grid assigned to each person. Click to enter the plan preparation menu interface. The organization selection box is displayed at the top of the organization column on the left. Select Organization to Team. The map interface displays the corresponding area of ​​the team. The mouse floats to this area to display the area name and area area).

[0051] Step S30: When a designated inspection task is received, a target inspection area among the plurality of gas inspection areas is determined according to the designated inspection task, and the target inspection area is sent to a target person of the designated inspection task for inspection.

[0052] Specifically, when a designated inspection task is received, the multiple gas inspection areas are screened according to the designated inspection task to obtain a target inspection area; the target set among the multiple business sets and the target business type among the business types are determined according to the designated inspection task; the target personnel of the designated inspection task are determined according to the target set and the target business type (a personnel skill database is obtained, and the target skill configuration requirements and equipment configuration requirements required to perform the designated inspection task are determined according to the target set and the target business type; a skill matching search is performed in the personnel skill database according to the target skill configuration requirements to obtain the target personnel in the personnel skill database who meets the target skill configuration requirements), and the target inspection area is sent to the target personnel of the designated inspection task for inspection.

[0053] Furthermore, the designated inspection task is parsed to obtain an analysis result; the multiple business sets are matched according to the analysis result to obtain a target set; the business type is matched according to the analysis result to obtain a target business type, and the corresponding task issuance object is quickly found, which speeds up the task matching and task issuance efficiency. For example, when the designated inspection task is received, the designated inspection task is parsed, and the information obtained is that the XX area is for high-voltage inspection. Based on this information, the corresponding target set and target business type can be immediately determined. At the same time, the system can immediately match personnel according to the determined target set and target business type, and issue and execute tasks.

[0054] Step S40, obtaining the inspection result. If the inspection result is abnormal, sending the inspection result and the target inspection area to the maintenance network point, and notifying the maintenance network point to arrange maintenance personnel to perform maintenance.

[0055] Specifically, the inspection results are obtained. If the inspection results are abnormal, the maintenance point closest to the target inspection area is obtained based on the location information of the target inspection area (wherein the target inspection area includes location information, which is the specific location of the gas equipment and facilities, accurate to the house number or location coordinates, and the user information and location information are reserved by the user when opening a gas account or reported by the terminal device during the inspection); the inspection results and the location information of the target inspection area are sent to the maintenance point, and the maintenance point is notified to arrange maintenance personnel to perform repairs; the maintenance results returned by the maintenance point are received, wherein the maintenance results include successful maintenance and failed maintenance (click Add, a Add dialog box pops up, set the shift name, whether to repair urgently, the start and end time, and make notes on maintenance success / failure, and click Confirm to save).

[0056] Furthermore, if Figure 2 As shown, based on the above-mentioned gas GIS-based pipeline network inspection method, the present invention also provides a gas GIS-based pipeline network inspection system, wherein the gas GIS-based pipeline network inspection system includes:

[0057] The inspection feature acquisition module 51 is used to acquire the pipeline network data of the gas pipeline networks in different regions, analyze the pipeline network data based on the smart gas platform, and obtain the inspection features of the gas pipeline network;

[0058] A gas inspection area generation module 52 is used to divide the area on the gas GIS pipe network map according to the inspection characteristics to obtain multiple gas inspection areas;

[0059] A target inspection area inspection module 53 is used for, when receiving a designated inspection task, determining a target inspection area among the plurality of gas inspection areas according to the designated inspection task, and sending the target inspection area to a target person of the designated inspection task for inspection;

[0060] The target inspection area maintenance module 54 is used to obtain the inspection result. If the inspection result is abnormal, the inspection result and the target inspection area are sent to the maintenance network point, and the maintenance network point is notified to arrange maintenance personnel for maintenance.

[0061] Furthermore, if Figure 3 As shown, based on the above-mentioned gas GIS-based pipeline inspection method and system, the present invention also provides a terminal accordingly, and the terminal includes a processor 10, a memory 20 and a display 30. Figure 3 Only some components of the terminal are shown, but it should be understood that it is not required to implement all of the components shown, and more or fewer components may be implemented instead.

[0062] In some embodiments, the memory 20 may be an internal storage unit of the terminal, such as a hard disk or memory of the terminal. In other embodiments, the memory 20 may also be an external storage device of the terminal, such as a plug-in hard disk, a smart memory card (Smart Media Card, SMC), a secure digital (Secure Digital, SD) card, a flash card (Flash Card), etc. equipped on the terminal. Further, the memory 20 may also include both an internal storage unit of the terminal and an external storage device. The memory 20 is used to store application software and various types of data installed on the terminal, such as the program code of the installation terminal. The memory 20 may also be used to temporarily store data that has been output or is to be output. In one embodiment, a gas GIS-based pipeline inspection program 40 is stored on the memory 20, and the gas GIS-based pipeline inspection program 40 can be executed by the processor 10, thereby realizing the gas GIS-based pipeline inspection method in this application.

[0063] In some embodiments, the processor 10 may be a central processing unit (CPU), a microprocessor or other data processing chip, used to run the program code or process data stored in the memory 20, such as executing the gas GIS-based pipeline inspection method.

[0064] In some embodiments, the display 30 may be an LED display, a liquid crystal display, a touch-sensitive liquid crystal display, an OLED (Organic Light-Emitting Diode) touch device, etc. The display 30 is used to display information on the terminal and to display a visual user interface. The components of the terminal communicate with each other via a system bus.

[0065] In one embodiment, when the processor 10 executes the gas GIS-based pipeline network inspection program 40 in the memory 20, the following steps are implemented:

[0066] Obtain the pipeline network data of gas pipeline networks in different regions, analyze the pipeline network data based on the smart gas platform, and obtain the inspection characteristics of the gas pipeline network;

[0067] According to the inspection characteristics, the gas GIS pipeline network map is divided into regions to obtain multiple gas inspection areas;

[0068] When a designated inspection task is received, a target inspection area among the plurality of gas inspection areas is determined according to the designated inspection task, and the target inspection area is sent to a target person of the designated inspection task for inspection;

[0069] Obtain the inspection result. If the inspection result is abnormal, send the inspection result and the target inspection area to the maintenance network point, and notify the maintenance network point to arrange maintenance personnel to perform repairs.

[0070] The inspection characteristics include location information, inspection time, and inspection frequency;

[0071] The obtaining of pipeline network data of gas pipeline networks in different regions, analyzing the pipeline network data based on the smart gas platform, and obtaining inspection characteristics of the gas pipeline network specifically include:

[0072] Collecting pipeline network data of gas pipeline networks in different regions, preprocessing the pipeline network data, and obtaining processed target data;

[0073] The target data is analyzed based on the smart gas platform to obtain the location information, inspection time and inspection frequency of the gas pipeline network.

[0074] The gas GIS pipeline network map is divided according to the inspection characteristics to obtain multiple gas inspection areas, including:

[0075] Divide the gas GIS pipeline network map according to the inspection characteristics to generate one or more key inspection points in the gas GIS pipeline network map;

[0076] Based on the one or more key inspection points, multiple gas inspection areas in the gas GIS pipeline network map are generated.

[0077] Wherein, when receiving the designated inspection task, determining a target inspection area among the plurality of gas inspection areas according to the designated inspection task, and sending the target inspection area to the target personnel of the designated inspection task for inspection, the method also includes:

[0078] The business scope and the business type are obtained, and the business scope is divided according to the business type to obtain multiple business sets.

[0079] Wherein, when receiving the designated inspection task, determining a target inspection area among the plurality of gas inspection areas according to the designated inspection task, and sending the target inspection area to the target personnel of the designated inspection task for inspection, specifically includes:

[0080] When a designated inspection task is received, the plurality of gas inspection areas are screened according to the designated inspection task to obtain a target inspection area;

[0081] Determine a target set among the multiple service sets and a target service type among the service types according to the designated inspection task;

[0082] The target personnel of the designated inspection task are determined according to the target set and the target business type, and the target inspection area is sent to the target personnel of the designated inspection task for inspection.

[0083] The step of determining the target set in the multiple service sets and the target service type in the service types according to the designated inspection task specifically includes:

[0084] Analyze the designated inspection task to obtain an analysis result;

[0085] Matching the multiple service sets according to the analysis results to obtain a target set;

[0086] According to the analysis result, a business type match is performed on the business type to obtain a target business type.

[0087] The obtaining of the inspection result, if the inspection result is abnormal, sending the inspection result and the target inspection area to a maintenance network point, and notifying the maintenance network point to arrange maintenance personnel for maintenance, specifically includes:

[0088] Obtaining inspection results, and if the inspection results are abnormal, obtaining the maintenance point closest to the target inspection area according to the location information of the target inspection area;

[0089] Send the inspection results and the location information of the target inspection area to the maintenance network point, and notify the maintenance network point to arrange maintenance personnel to perform maintenance;

[0090] The maintenance result returned by the maintenance network point is received, wherein the maintenance result includes maintenance success and maintenance failure.

[0091] The present invention also provides a computer-readable storage medium, wherein the computer-readable storage medium stores a gas GIS-based pipeline inspection program, and when the gas GIS-based pipeline inspection program is executed by a processor, the steps of the gas GIS-based pipeline inspection method as described above are implemented.

[0092] In summary, the present invention provides a pipeline inspection method, system and computer-readable storage medium based on gas GIS, the method comprising: obtaining pipeline data of gas pipelines in different regions, analyzing the pipeline data based on the smart gas platform, and obtaining the inspection characteristics of the gas pipeline; dividing the area on the gas GIS pipeline map according to the inspection characteristics to obtain multiple gas inspection areas; when receiving a designated inspection task, determining a target inspection area among the multiple gas inspection areas according to the designated inspection task, and sending the target inspection area to the target personnel of the designated inspection task for inspection; obtaining the inspection result, if the inspection result is abnormal, sending the inspection result and the target inspection area to the maintenance network, and notifying the maintenance network to arrange maintenance personnel for repair. The present invention analyzes pipeline data through the smart gas platform, divides inspection areas, receives tasks and feedbacks abnormalities, and ensures safe gas maintenance.

[0093] It should be noted that, in this article, the terms "include", "comprises" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article or terminal system including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or terminal system. In the absence of further restrictions, an element defined by the sentence "comprises a ..." does not exclude the existence of other identical elements in the process, method, article or terminal system including the element.

[0094] Of course, those skilled in the art can understand that all or part of the processes in the above-mentioned embodiments can be implemented by instructing related hardware (such as a processor, a controller, etc.) through a computer program, and the program can be stored in a computer-readable storage medium that can be read by a computer, and the program can include the processes of the above-mentioned method embodiments when executed. The computer-readable storage medium can be a memory, a disk, an optical disk, etc.

[0095] It should be understood that the application of the present invention is not limited to the above examples. For ordinary technicians in this field, improvements or changes can be made based on the above description. All these improvements and changes should fall within the scope of protection of the claims attached to the present invention.

Claims

1. A gas GIS-based pipeline network inspection method, characterized in that: The gas GIS-based pipeline network inspection method includes: Obtain the pipeline network data of gas pipeline networks in different regions, analyze the pipeline network data based on the smart gas platform, and obtain the inspection characteristics of the gas pipeline network; According to the inspection characteristics, the gas GIS pipeline network map is divided into regions to obtain multiple gas inspection areas; When a designated inspection task is received, a target inspection area among the plurality of gas inspection areas is determined according to the designated inspection task, and the target inspection area is sent to a target person of the designated inspection task for inspection; Obtain the inspection result. If the inspection result is abnormal, send the inspection result and the target inspection area to the maintenance network point, and notify the maintenance network point to arrange maintenance personnel to perform repairs.

2. The gas GIS-based pipeline network inspection method according to claim 1 is characterized in that: The inspection characteristics include location information, inspection time, and inspection frequency; The pipeline network data of gas pipeline networks in different regions are obtained, and the pipeline network data are analyzed based on the smart gas platform to obtain the inspection characteristics of the gas pipeline network, which specifically includes: Collecting pipeline network data of gas pipeline networks in different regions, preprocessing the pipeline network data, and obtaining processed target data; The target data is analyzed based on the smart gas platform to obtain the location information, inspection time and inspection frequency of the gas pipeline network.

3. The gas GIS-based pipeline network inspection method according to claim 1 is characterized in that: The gas GIS pipeline network map is divided according to the inspection characteristics to obtain multiple gas inspection areas, specifically including: Divide the gas GIS pipeline network map according to the inspection characteristics to generate one or more key inspection points in the gas GIS pipeline network map; Based on the one or more key inspection points, multiple gas inspection areas in the gas GIS pipeline network map are generated.

4. The gas GIS-based pipeline network inspection method according to claim 1 is characterized in that: When receiving the designated inspection task, determining a target inspection area among the plurality of gas inspection areas according to the designated inspection task, and sending the target inspection area to the target personnel of the designated inspection task for inspection, the method further includes: The business scope and the business type are obtained, and the business scope is divided according to the business type to obtain multiple business sets.

5. The gas GIS-based pipeline network inspection method according to claim 4 is characterized in that: When receiving the designated inspection task, determining a target inspection area among the plurality of gas inspection areas according to the designated inspection task, and sending the target inspection area to the target personnel of the designated inspection task for inspection specifically includes: When a designated inspection task is received, the plurality of gas inspection areas are screened according to the designated inspection task to obtain a target inspection area; Determine a target set among the multiple service sets and a target service type among the service types according to the designated inspection task; The target personnel of the designated inspection task are determined according to the target set and the target business type, and the target inspection area is sent to the target personnel of the designated inspection task for inspection.

6. The gas GIS-based pipeline network inspection method according to claim 5 is characterized in that: The determining, according to the designated inspection task, a target set in the multiple service sets and a target service type in the service types specifically includes: Analyze the designated inspection task to obtain an analysis result; Matching the multiple service sets according to the analysis results to obtain a target set; According to the analysis result, a business type match is performed on the business type to obtain a target business type.

7. The gas GIS-based pipeline network inspection method according to claim 1 is characterized in that: The obtaining of the inspection result, if the inspection result is abnormal, sending the inspection result and the target inspection area to a maintenance network point, and notifying the maintenance network point to arrange maintenance personnel for maintenance, specifically includes: Obtaining inspection results, and if the inspection results are abnormal, obtaining the maintenance point closest to the target inspection area according to the location information of the target inspection area; Send the inspection results and the location information of the target inspection area to the maintenance network point, and notify the maintenance network point to arrange maintenance personnel to perform maintenance; The maintenance result returned by the maintenance network point is received, wherein the maintenance result includes maintenance success and maintenance failure.

8. A gas GIS-based pipeline inspection system, characterized in that: The gas GIS-based pipeline network inspection system includes: An inspection feature acquisition module is used to acquire the pipeline network data of gas pipeline networks in different regions, analyze the pipeline network data based on the smart gas platform, and obtain the inspection features of the gas pipeline network; A gas inspection area generation module is used to divide the area on the gas GIS pipe network map according to the inspection characteristics to obtain multiple gas inspection areas; A target inspection area inspection module is used to determine a target inspection area among a plurality of gas inspection areas according to the specified inspection task when receiving a specified inspection task, and send the target inspection area to a target person of the specified inspection task for inspection; The target inspection area maintenance module is used to obtain the inspection result. If the inspection result is abnormal, the inspection result and the target inspection area are sent to the maintenance network point, and the maintenance network point is notified to arrange maintenance personnel for maintenance.

9. A terminal, characterized in that: The terminal includes: a memory, a processor, and a gas GIS-based pipeline inspection program stored in the memory and executable on the processor. When the gas GIS-based pipeline inspection program is executed by the processor, the steps of the gas GIS-based pipeline inspection method as described in any one of claims 1 to 7 are implemented.

10. A computer-readable storage medium, characterized in that: The computer-readable storage medium stores a gas GIS-based pipeline inspection program, and when the gas GIS-based pipeline inspection program is executed by the processor, the steps of the gas GIS-based pipeline inspection method according to any one of claims 1 to 7 are implemented.