Inspection management equipment, method and system, server and storage medium

By integrating inspection management equipment with main control module, image acquisition module, positioning module, etc., combined with GPS and Beidou dual-mode positioning technology, the real-time acquisition and analysis of audio and video data is solved, and the existing inspection equipment is achieved to promptly detect emergencies and improve inspection efficiency.

CN120356270APending Publication Date: 2025-07-22CHINA UNITED NETWORK COMM GRP CO LTD
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Patent Information

Application Number
CN202410083421.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-01-19
Publication Date
2025-07-22

AI Technical Summary

Technical Problem

The existing inspection equipment has low inspection quality and low efficiency, and cannot detect emergency situations in a timely manner, resulting in low maintenance efficiency of trunk optical cable lines.

Method used

The inspection management equipment is adopted, and the main control module, image acquisition module, positioning module, communication module, sound and light alarm module and display module are integrated. The audio and video data and position information are collected in real time through GPS and Beidou dual-mode positioning technology, and the real-time analysis and generation of reminder information to trigger alarm processing.

Benefits of technology

It has achieved timely detection of emergency situations during the inspection process, improved the quality and efficiency of inspections, and reduced the manpower and material resources required for supervision.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides inspection management equipment, method and system, a server and a storage medium. In the equipment, a main control module is used for acquiring a map marked with to-be-inspected line information and triggering a display module to perform display processing; the image acquisition module is used for acquiring audio and video data of a to-be-inspected line; the positioning module is used for collecting current position information of the inspection management equipment; and the main control module is used for sending the audio and video data and the current position information to the data analysis monitoring server through the communication module, so that the data analysis monitoring server sends the audio and video data to the alarm when determining that an alarm event exists. Sending the generated reminding information to inspection management equipment, updating the state of an inspection point on the to-be-inspected line according to the current position information, and sending the updated state of the inspection point to the inspection management equipment; correspondingly updating the map marked with the to-be-inspected line information, and performing display processing through a display module; and triggering an audible and visual alarm module to perform alarm processing according to the reminding information.
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Description

Technical Field

[0001] This application relates to the technical field of warning systems, and particularly to an inspection management device, method, system, server, and storage medium. Background Art

[0002] The development of the communication industry has entered the era of 5G and high-speed Internet characterized by broadband. Broadband large traffic is based on a large-capacity transmission basic network, and the core of the transmission basic network is the trunk optical cable. As the optical cable in the backbone layer, it undertakes the task of transmitting a large amount of data and signals. Therefore, the daily protection of the trunk optical cable line is the top priority of line equipment maintenance, and the inspection work of the line is the most important link to ensure the line safety.

[0003] In the prior art, the functions of the line inspection monitoring equipment used by inspection personnel are relatively simple. Inspection personnel usually conduct line inspections on the trunk optical cable line through a handheld terminal device to record the line inspection video. Then, after the line inspection is completed, the recorded line inspection video needs to be uploaded to the monitoring background so that the monitoring background can analyze and process the recorded line inspection video. Therefore, in the case of an emergency situation occurring during the line inspection, it can only be known after the monitoring background analyzes and processes the recorded line inspection video, resulting in the inability to discover the emergency situation in a timely and effective manner, and further causing the technical problems of low quality and low efficiency of the trunk line inspection. Summary of the Invention

[0004] This application provides an inspection management device, method, system, server, and storage medium to solve the technical problems of low inspection quality and low efficiency in existing inspection management.

[0005] In a first aspect, this application provides an inspection management device, including: a main control module, an image acquisition module, a positioning module, a communication module, an acoustic-optic warning module, and a display module; wherein,

[0006] The main control module is configured to obtain a map marked with the line information of the line to be inspected from the data analysis monitoring server and trigger the display module to perform display processing on the map; wherein, the line information of the line to be inspected includes: the direction of the line to be inspected, the kilometer marks on the line to be inspected, and the set inspection points;

[0007] The image acquisition module is configured to acquire audio and video data on the line to be inspected;

[0008] The positioning module is configured to collect and obtain the current position information of the inspection management device on the line to be inspected through GPS and Beidou dual-mode positioning technology;

[0009] The main control module is configured to send the audio-video data and the current location information to the data analysis and monitoring server through the communication module, so that the data analysis and monitoring server can analyze and process the audio-video data and the current location information, and when it is determined that there is an alarm event, send the generated reminder information to the patrol management device; and according to the current location information, update the status of the inspection points set on the to-be-inspected line from the un-inspected point status to the inspected point status, and send the updated status of the inspection points to the patrol management device;

[0010] The main control module is further configured to, according to the updated status of the inspection points, perform corresponding update processing on the status of the inspection points set on the to-be-inspected line on the map marked with the to-be-inspected line information, and perform display processing on the updated map through the display module;

[0011] The main control module is configured to trigger the sound and light alarm module to perform alarm processing according to the reminder information.

[0012] Optionally, the patrol management device as described above further includes: a storage module;

[0013] The main control module is further configured to store the audio-video data, the current location information and the corresponding acquisition time into the storage module in a hierarchical management manner, and perform marking processing on the audio-video data, the current location information and the corresponding acquisition time, so as to obtain an identifier corresponding to the audio-video data, the current location information and the corresponding acquisition time as a prohibited modification identifier;

[0014] The main control module is further configured to, when receiving a data modification request, judge the identifier corresponding to the data to be modified in the data modification request, and if the identifier corresponding to the data to be modified is a prohibited modification identifier, feedback a reminder message of prohibited modification.

[0015] In a second aspect, the present application provides a patrol processing method, which is applied to a patrol management device. The patrol management device includes: a main control module, an image acquisition module, a positioning module, a communication module, a sound and light alarm module and a display module. Then the method includes:

[0016] The main control module obtains a map marked with to-be-inspected line information from the data analysis and monitoring server, and triggers the display module to perform display processing on the map marked with to-be-inspected line information; wherein, the to-be-inspected line information includes: the trend of the to-be-inspected line, the kilometer markers on the to-be-inspected line and the set inspection points;

[0017] The image acquisition module acquires audio-video data on the to-be-inspected line;

[0018] The positioning module acquires the current position information of the inspection management device on the to-be-inspected line through GPS and Beidou dual-mode positioning technology;

[0019] The main control module sends the audio-video data and the current position information to the data analysis and monitoring server through the communication module, so that the data analysis and monitoring server analyzes and processes the audio-video data and the current position information, and when it determines that there is an alarm event, it sends the generated reminder information to the inspection management device; and according to the current position information, updates the status of the set inspection points on the to-be-inspected line from the un-inspected point status to the inspected point status, and sends the updated status of the inspection points to the inspection management device;

[0020] The main control module correspondingly updates the status of the set inspection points on the to-be-inspected line on the map marked with the to-be-inspected line information according to the updated status of the inspection points, and performs display processing on the updated map through the display module;

[0021] The main control module triggers the sound and light alarm module to perform alarm processing according to the reminder information.

[0022] In a third aspect, the present application provides an inspection processing method, which is applied to a data analysis and monitoring server, and the method includes:

[0023] Receiving the audio-video data and the current position information sent by the inspection management device;

[0024] Analyzing and processing the audio-video data and the current position information, and when it determines that there is an alarm event, sending the generated reminder information to the inspection management device, so that the main control module in the inspection management device triggers the sound and light alarm module to perform alarm processing according to the reminder information;

[0025] According to the current position information, updating the status of the set inspection points on the to-be-inspected line from the un-inspected point status to the inspected point status, and sending the updated status of the inspection points to the inspection management device, so that the main control module in the inspection management device correspondingly updates the status of the set inspection points on the to-be-inspected line on the map marked with the to-be-inspected line information according to the updated status of the inspection points, and performs display processing on the updated map through the display module.

[0026] Optionally, the method as described above further includes:

[0027] Obtaining a line production request, where the line production request includes: the to-be-inspected line;

[0028] According to the line production request, mark the route of the line to be inspected on the map based on the longitude and latitude information of the kilometer markers, mark the kilometer markers of the line to be inspected, and the set inspection points, and use the route of the line to be inspected, the kilometer markers of the line to be inspected, and the set inspection points as the line information of the line to be inspected, so as to send the map marked with the line information of the line to be inspected to the inspection management device.

[0029] Optionally, in the method as described above, the step of updating the status of the set inspection points on the line to be inspected from the uninspected point status to the inspected point status according to the current position information includes:

[0030] Compare the current position information with the longitude and latitude information of the set inspection points in the line information of the line to be inspected. If the distance between the current position information and the set inspection points is less than a preset value, update the status of the set inspection points from the uninspected point status to the inspected point status.

[0031] In a fourth aspect, the present application provides a data analysis and monitoring server, including:

[0032] A processor, and a memory communicatively connected to the processor;

[0033] The memory stores computer execution instructions;

[0034] The processor executes the computer execution instructions stored in the memory to implement the inspection processing method described in any one of the above embodiments.

[0035] In a fifth aspect, the present application provides an inspection management system, including: an inspection management device and a data analysis and monitoring server, where

[0036] The inspection management device is used to execute the method described in claim 3;

[0037] The data analysis and monitoring server is used to execute the method described in any one of claims 4 to 6.

[0038] In a sixth aspect, the present application provides an electronic device, including:

[0039] The memory stores computer execution instructions;

[0040] The processor executes the computer execution instructions stored in the memory to implement the inspection processing method described in any one of the above embodiments.

[0041] In a seventh aspect, the present application provides a computer-readable storage medium storing computer-executable instructions, which when executed by a processor are used to implement the inspection processing method described in any one of the above embodiments.

[0042] The present application provides an inspection management device, method, system, server, and storage medium. The device includes a main control module, an image acquisition module, a positioning module, a communication module, an audible and visual alarm module, and a display module. The main control module obtains a map with line information marked for inspection from a data analysis and monitoring server and triggers the display module to perform display processing on the map. Then, the image acquisition module acquires audio and video data on the line to be inspected, and at the same time, the positioning module uses a dual-mode positioning technology of GPS and Beidou to acquire the current position information of the inspection management device on the line to be inspected. The main control module sends the acquired audio and video data and current position information to the data analysis and monitoring server through the communication module for the data analysis and monitoring server to analyze and process the audio and video data and current position information. When it is determined that there is an alarm event, a reminder message is generated, and according to the current position information, the status of the set inspection points on the line to be inspected is updated from the uninspected point status to the inspected point status. The main control module triggers the audible and visual alarm module to perform alarm processing according to the reminder message, and according to the updated inspection point status, updates the status of the set inspection points on the line to be inspected on the map with the line information marked for inspection accordingly, and displays the updated map through the display module. It realizes inspection according to the map with the line information marked for inspection, obtains position information according to the dual-mode positioning technology and updates the inspection point status in real time, and during the inspection process, the audio and video data is collected and sent to the data analysis and monitoring server in real time for analysis and processing to timely determine whether there is an alarm event and quickly generate a reminder message to trigger the alarm of the inspection management device, thereby realizing remote monitoring and management of the line inspection and the personnel on duty, improving the inspection quality and efficiency, and reducing the manpower and material resources required for supervision. BRIEF DESCRIPTION OF THE DRAWINGS

[0043] The accompanying drawings herein are incorporated into the specification and constitute a part of the specification, showing embodiments consistent with the present application, and are used together with the specification to explain the principles of the present application.

[0044] Figure 1 It is a schematic structural diagram of an embodiment of an inspection management device provided by the present application;

[0045] Figure 2 It is a schematic flowchart of an embodiment of an inspection processing method applied to an inspection management device provided by the present application;

[0046] Figure 3A schematic flowchart of an embodiment of an inspection processing method applied to a data analysis monitoring server provided by this application;

[0047] Figure 4 A schematic flowchart of another embodiment of an inspection processing method applied to a data analysis monitoring server provided by this application;

[0048] Figure 5 A schematic structural diagram of an embodiment of a data analysis monitoring server provided by this application;

[0049] Figure 6 A schematic structural diagram of an embodiment of an inspection management system provided by this application;

[0050] Figure 7 A schematic structural diagram of an embodiment of an electronic device provided by this application.

[0051] Through the above-mentioned drawings, the specific embodiments of this application have been shown, and there will be more detailed descriptions hereinafter. These drawings and textual descriptions are not intended to limit the scope of the concept of this application in any way, but to illustrate the concept of this application to those skilled in the art by referring to specific embodiments. Detailed implementation manners

[0052] Here, the exemplary embodiments will be described in detail, and the examples are shown in the drawings. When the following description refers to the drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The implementation manners described in the following exemplary embodiments do not represent all the implementation manners consistent with this application. On the contrary, they are only examples of devices and methods consistent with some aspects of this application as detailed in the appended claims.

[0053] With the rapid development of communication technologies, we have entered the 5G and Internet era marked by high-speed broadband. A large-capacity transmission network has become the cornerstone of building broadband, and the core of a large-capacity transmission network is trunk optical cable transmission. Therefore, to ensure the normal operation of the optical cable line, it is very important to carry out daily maintenance and inspection work on the trunk optical cable line. Through regular maintenance and inspection, potential problems can be discovered and solved in a timely manner, preventing failures from occurring and ensuring the reliability and stability of the optical cable line.

[0054] In the prior art, inspection personnel usually use handheld terminal devices to patrol the trunk line and record the patrol video. After the patrol is completed, the recorded patrol video is uploaded to the monitoring background so that the monitoring background can analyze and process the recorded patrol video, determine the location of potential problems based on the analysis results, and then the back-end monitoring personnel notify the patrol personnel to maintain the location with potential problems. Therefore, if an emergency occurs during the patrol, it can only be known after the monitoring background analyzes and processes the recorded patrol video, resulting in the potential problems not being processed in time, thereby causing the technical problems of low quality and low efficiency of trunk line inspection.

[0055] To solve the above technical problems, the inventive concept of this application lies in: how to quickly locate the position of an emergency to improve the quality and efficiency of inspection.

[0056] The following will specifically describe the technical solutions of this application and how the technical solutions of this application solve the above technical problems through specific embodiments. These specific embodiments can be combined with each other, and the same or similar concepts or processes may not be repeated in some embodiments. The embodiments of this application will be described below with reference to the accompanying drawings.

[0057] Figure 1 It is a schematic structural diagram of an embodiment of an inspection management device provided by this application. As Figure 1 shown, the inspection management device 10 includes a main control module 11, an image acquisition module 12, a positioning module 13, a communication module 14, an acoustic-optic alarm module 15, and a display module 16.

[0058] Specifically, the main control module 11 is used to obtain a map with line information marking the line to be inspected from the data analysis and monitoring server, and trigger the display module 16 to perform display processing on the map. Among them, the line information of the line to be inspected includes: the direction of the line to be inspected, the kilometer marks on the line to be inspected, and the set inspection points. The image acquisition module 12 is used to acquire audio and video data on the line to be inspected. The positioning module 13 is used to acquire the current position information of the inspection management device 10 on the line to be inspected through GPS and Beidou dual-mode positioning technology. The main control module 11 is used to send the audio and video data and the current position information to the data analysis and monitoring server through the communication module 14, so that the data analysis and monitoring server can analyze and process the audio and video data and the current position information, and when it is determined that there is an alarm event, send the generated reminder information to the inspection management device 10; and according to the current position information, update the status of the set inspection points on the line to be inspected from the uninspected point status to the inspected point status, and send the updated status of the inspection points to the inspection management device 10. The main control module 11 is also used to correspondingly update the status of the set inspection points on the line to be inspected on the map with line information marking the line to be inspected according to the updated status of the inspection points, and perform display processing on the updated map through the display module 16. The main control module 11 is also used to trigger the sound and light alarm module 15 to perform alarm processing according to the reminder information.

[0059] In this embodiment, when the inspection management device 10 is powered on, the main control module 11 sends a map acquisition request to the data analysis and monitoring server through the communication module 14. When the data analysis and monitoring server receives the map acquisition request, it sends the map with line information marking the line to be inspected to the inspection management device 10 through the communication module 14. When the map with line information marking the line to be inspected is acquired, the main control module 11 triggers the display module 16 to perform display processing on the map. Among them, the map with line information marking the line to be inspected also includes the direction of the line to be inspected, the kilometer marks on the line to be inspected, and the preset inspection points. At this time, the status of the set inspection points is all in the uninspected state.

[0060] When the inspection personnel carry the inspection management device 10 to inspect the line to be inspected according to the map with line information marking the line to be inspected, the image acquisition module 12 continuously acquires audio and video data on the line to be inspected through the camera, and at the same time, the positioning module 13 continuously acquires the current position information of the inspection management device 10 on the line to be inspected through GPS and Beidou dual-mode positioning technology.

[0061] For example, in this embodiment, the positioning module 13 can adopt a dual-mode positioning technology, which includes Beidou technology and GPS positioning technology, that is, the Beidou + GPS dual-mode satellite positioning technology. Its basic principle is to measure the distance between the satellite at a known position and the user patrol management device 10, and then the specific position of the patrol management device 10 can be known by integrating the data of multiple satellites. Among them, the position of the satellite can be found in the satellite ephemeris according to the time recorded by the on-board clock. The distance from the patrol management device 10 to the satellite is obtained by recording the time it takes for the satellite signal to propagate to the patrol management device 10 and then multiplying it by the speed of light. When the satellite is working properly, it will continuously transmit navigation messages with a pseudo-random code (abbreviated as pseudo-code) composed of binary code elements 1 and 0. When the patrol management device 10 receives the navigation message, it extracts the satellite time and compares it with its own clock to know the distance between the satellite and the patrol management device 10, and then uses the satellite ephemeris data in the navigation message to calculate the position where the satellite sends the message, the position and speed of the patrol management device 10 in the WGS-84 geodetic coordinate system, etc., and more accurate current position information can be obtained.

[0062] In addition, in this embodiment, when the patrol management device 10 obtains the audio and video data and the current position information on the line to be patrolled, the main control module 11 sends the audio and video data and the current position information to the data analysis and monitoring server through the communication module 14 for the data analysis and monitoring server to perform data analysis on the audio and video data and the current position information and determine whether there is an alarm event; when it is determined that there is an alarm event, the reminder information corresponding to the generated alarm event is sent to the patrol management device 10, and the distance between the patrol management device 10 and the unpatrolled point on the map is judged according to the current position information. If the distance is less than the preset value, the status of the set patrol point on the line to be patrolled is updated from the unpatrolled point status to the patrolled point status, and the updated status of the patrol point is sent to the patrol management device 10.

[0063] Furthermore, in this embodiment, the main control module 11 is also used to update the status of the set patrol points on the to-be-patrolled line on the map marked with the to-be-patrolled line information according to the obtained updated status of the patrol points, and perform display processing on the updated map through the display module 16. At the same time, according to the reminder information corresponding to the alarm event obtained from the data analysis and monitoring server, the sound and light alarm module is triggered for corresponding alarm reminders.

[0064] In this embodiment, the patrol management device includes a main control module, an image acquisition module, a positioning module, a communication module, an acoustic-optic alarm module, and a display module. The main control module obtains a map of the line information marked with the line to be patrolled from the data analysis and monitoring server and triggers the display module to perform display processing on the map. Then, the image acquisition module acquires audio and video data on the line to be patrolled. At the same time, the positioning module uses the dual-mode positioning technology of GPS and Beidou to acquire the current position information of the patrol management device on the line to be patrolled. The main control module sends the acquired audio and video data and current position information to the data analysis and monitoring server through the communication module, so that the data analysis and monitoring server can analyze and process the audio and video data and current position information. When it is determined that there is an alarm event, a reminder message is generated, and the status of the set patrol points on the line to be patrolled is updated from the unpatrolled point status to the patrolled point status according to the current position information. The main control module triggers the acoustic-optic alarm module to perform alarm processing according to the reminder message, and according to the updated status of the patrol points, the status of the set patrol points on the line to be patrolled on the map marked with the line information to be patrolled is updated accordingly, and the updated map is displayed through the display module. Compared with the prior art, in which the patrol personnel need to patrol according to the patrol route by themselves, and upload the audio and video of the patrol process after the patrol, and then analyze and process the audio and video to determine the location of the problem, the method of this application patrols according to the map of the line information marked with the line to be patrolled in the patrol device, obtains the position information according to the dual-mode positioning technology and updates the status of the patrol points in real time. During the patrol process, the audio and video data is collected and sent to the data analysis and monitoring server in real time for analysis and processing, so as to timely judge whether there is an alarm event, and quickly generate a reminder message to trigger the alarm of the patrol management device, so as to enable the patrol personnel to timely determine the location of the problem and take corresponding measures in time, improving the patrol quality and efficiency, and reducing the manpower and material resources required for supervision.

[0065] Further, on the basis of the above embodiment, the patrol management device 10 may further include: a storage module 17.

[0066] The main control module 11 is further configured to store the audio and video data, the current position information, and the corresponding acquisition time into the storage module 17 in a hierarchical management manner, and perform marking processing on the audio and video data, the current position information, and the corresponding acquisition time, so as to obtain an identifier corresponding to the audio and video data, the current position information, and the corresponding acquisition time as a prohibited modification identifier;

[0067] In this embodiment, when the main control module 11 obtains the audio-visual data and the current position information on the line to be inspected through the image acquisition module 12 and the positioning module 13, the obtained audio-visual data, the current position information, and the corresponding acquisition time are hierarchically stored and managed in the storage module 17 according to the inspection date; and the audio-visual data, the current position information, and the corresponding acquisition time are marked to obtain an identifier corresponding to the audio-visual data, the current position information, and the corresponding acquisition time as a non-modifiable identifier. For example, the non-modifiable identifier may be to add a corresponding inspection time watermark to the audio-visual data.

[0068] The main control module 11 is further configured to, when receiving a data modification request, determine the identifier corresponding to the data to be modified in the data modification request, and if the identifier corresponding to the data to be modified is a non-modifiable identifier, then feedback a reminder message indicating that modification is prohibited.

[0069] In this embodiment, when the main control module 11 receives a data modification request, it obtains the identifier corresponding to the data to be modified in the data modification request and performs a determination process; if the identifier corresponding to the data to be modified is a non-modifiable identifier, it determines that the data cannot be modified and feedbacks a reminder message indicating that modification is prohibited.

[0070] In this embodiment, the inspection management device may further include a storage module. At this time, the main control module is further configured to perform hierarchical storage management according to the inspection date, and mark the audio-visual data, the current position information, and the corresponding acquisition time with a non-modifiable identifier; when the main control module receives a data modification request, it determines whether the identifier corresponding to the data to be modified in the data modification request is a non-modifiable identifier, and if the identifier corresponding to the data to be modified is a non-modifiable identifier, then feedbacks a reminder message indicating that modification is prohibited. Compared with the prior art, the inspection management device of the present application hierarchically manages the audio-visual data, the current position information, and the corresponding acquisition time on the inspection line, and performs marking processing with a non-modifiable identifier; when a user desires to modify the data, a reminder message indicating that modification is prohibited is feedback according to the non-modifiable identifier, so as to ensure that the recording time of the recorded audio-visual information and position information cannot be changed, thereby avoiding the manual calibration of the inspection position by the inspection personnel, preventing phenomena such as missed reports, false reports, or concealment reports, improving the security of the inspection data, and at the same time realizing refinement and traceability in management, thereby improving the standardization of the inspection work and improving the inspection quality.

[0071] Figure 2 This is a schematic flowchart of an embodiment of a patrol processing method applied to a patrol management device provided by the present application. As Figure 2As shown in the figure, based on the above embodiments, the method is applied to an inspection management device, which includes: a main control module, an image acquisition module, a positioning module, a communication module, an acoustic-optic alarm module, and a display module; then the method includes:

[0072] Step 101: The main control module obtains a map marked with the line information to be inspected from the data analysis and monitoring server, and triggers the display module to perform display processing on the map marked with the line information to be inspected.

[0073] Among them, the line information to be inspected includes: the direction of the line to be inspected, the kilometer marks on the line to be inspected, and the set inspection points.

[0074] In this embodiment, the main control module sends a map acquisition request to the data analysis and monitoring server to obtain a map marked with the line information to be inspected. When the main control module obtains the map marked with the line information to be inspected from the data analysis and monitoring server through the communication module, it triggers the display module to perform display processing on the map marked with the line information to be inspected, so that the inspection personnel can perform inspections according to the map marked with the line information to be inspected; in addition, when the inspection has not started yet, all inspection points are displayed as uninspected points, which means that the inspection personnel have not reached the inspection point to complete the inspection work at that place.

[0075] Step 102: The image acquisition module acquires audio and video data on the line to be inspected.

[0076] In this embodiment, when the inspection personnel perform inspections on the line to be inspected according to the map of the line information to be inspected, the image acquisition module acquires and obtains the audio and video data on the line to be inspected in real time through the camera. For example, for different application scenarios and environments, the camera can be various non-handheld imaging devices in different forms, such as pen holders / worn on hats, buttons / on the chest, epaulettes, so that the inspection personnel can free their hands during the inspection record process.

[0077] Step 103: The positioning module acquires the current position information of the inspection management device on the line to be inspected through GPS and Beidou dual-mode positioning technology.

[0078] In this embodiment, the positioning module adopts GPS and Beidou dual-mode positioning technology. By obtaining and measuring the distance between the satellites at known positions and the inspection personnel in real time, and then integrating the data of multiple satellites, the current position information of the inspection personnel on the line to be inspected is obtained.

[0079] Step 104: The main control module sends the audio-video data and the current location information to the data analysis and monitoring server through the communication module, so that the data analysis and monitoring server can analyze and process the audio-video data and the current location information, and when it is determined that there is an alarm event, send the generated reminder information to the patrol management device; and according to the current location information, update the status of the set inspection points on the to-be-inspected line from the un-inspected point status to the inspected point status, and send the updated status of the inspection points to the patrol management device.

[0080] In this embodiment, when the audio-video data and the current location information on the to-be-inspected line are obtained, the main control module sends the audio-video data and the current location information to the data analysis and monitoring server through the communication module, so that the data analysis and monitoring server can perform data analysis on the audio-video data and the current location information and determine whether there is an alarm event. For example, the alarm event may include the existence of potential safety hazards and deviation from the inspection route; when it is determined that there is an alarm event, send the reminder information corresponding to the generated alarm event to the patrol management device and judge the distance between the patrol management device and the un-inspected points on the map according to the current location information. If the distance is less than the preset value, update the status of the set inspection points on the to-be-inspected line from the un-inspected point status to the inspected point status, and send the updated status of the inspection points to the patrol management device.

[0081] Step 105: The main control module updates the status of the set inspection points on the to-be-inspected line on the map marked with the to-be-inspected line information according to the updated status of the inspection points, and performs display processing on the updated map through the display module.

[0082] In this embodiment, the main control module updates the status of the set inspection points on the to-be-inspected line on the map marked with the to-be-inspected line information according to the obtained updated status of the inspection points, and performs display processing on the updated map through the display module.

[0083] Step 106: The main control module triggers the sound and light alarm module to perform alarm processing according to the reminder information.

[0084] In this embodiment, the main control module obtains the reminder information generated and sent by the data analysis and monitoring server through the communication module, and triggers the sound and light alarm module to perform alarm processing corresponding to the reminder information to remind the patrol personnel of the possible location of problems or potential hazards, so that the patrol personnel can take relevant measures in time.

[0085] This method is applied to the patrol management device in any of the foregoing embodiments, and its implementation principle and technical effects are similar, which will not be elaborated here.

[0086] Figure 3This is a schematic flowchart of an embodiment of an inspection processing method applied to a data analysis monitoring server provided by this application. As Figure 3 shown, based on the above embodiment, this method is applied to a data analysis monitoring server; then this method includes:

[0087] Step 201: Receive the audio-visual data and the current location information sent by the inspection management device.

[0088] In this embodiment, during the inspection process, the audio-visual data and the current location information sent by the inspection management device are obtained in real time.

[0089] Step 202: Analyze and process the audio-visual data and the current location information, and when it is determined that there is an alarm event, send the generated reminder information to the inspection management device for the main control module in the inspection management device to trigger the sound and light alarm module to perform alarm processing according to the reminder information.

[0090] In this embodiment, the data analysis monitoring server analyzes and processes the obtained audio-visual data by performing big data analysis on a large amount of collected audio-visual data and by using an AI image recognition algorithm to analyze the audio-visual data; for example, when comparing the audio-visual data with the previously stored audio-visual data of the corresponding inspection route to be inspected, if an excavator or a warning tape appears in the audio-visual data, it is determined that there is an alarm event of a construction hazard at this location; if the optical cable sinks in the audio-visual data, it is determined that there is a safety hazard at this location. When it is determined that there is an alarm event, corresponding reminder information is generated according to the results of the analysis and processing, and the reminder information is sent to the inspection management device for the main control module in the inspection management device to trigger the sound and light alarm module to perform alarm processing according to the reminder information.

[0091] Step 203: According to the current location information, update the status of the inspection points set on the inspection route to be inspected from the un-inspected point status to the inspected point status, and send the updated status of the inspection points to the inspection management device for the main control module in the inspection management device to update the status of the inspection points set on the inspection route to be inspected marked on the map with the route information to be inspected accordingly, and display the updated map through the display module.

[0092] In this embodiment, the data analysis and monitoring server compares the current location information with the location information of the inspection points set on the line to be inspected according to the current location information. If the distance between the current location information and the set inspection point is less than a preset value, for example, less than 20 m, it can be determined that the inspection personnel have reached the inspection point and completed the inspection work. At the same time, the status of the inspection point set on the line to be inspected is updated from the uninspected point status to the inspected point status. And the updated inspection point status is sent to the inspection management device, so that the main control module in the inspection management device can update the corresponding inspection point status on the map marked with the line information to be inspected according to the obtained updated inspection point status, and display the updated map through the display module.

[0093] In this embodiment, the inspection processing method is applied to the data analysis and monitoring server. By analyzing and processing the audio and video data and the current location information obtained from the inspection management device, when an alarm event is determined, a reminder information corresponding to the alarm event is generated and sent to the inspection management device, so that the main control module in the inspection management device can trigger the sound and light alarm module to perform alarm processing according to the reminder information. At the same time, according to the current location information, the status of the inspection points set on the line to be inspected is updated from the uninspected point status to the inspected point status, so that the main control module in the inspection management device can update the status of the set inspection points on the line to be inspected on the map marked with the line information to be inspected according to the updated inspection point status, and display the updated map through the display module. Compared with the prior art, the method of this application uses big data analysis and AI algorithms to analyze and process the audio and video data and location information obtained by the inspection management device in real time to timely judge the existence of alarm events and give alarms, so that the inspection personnel can timely know the potential hazards and problems existing in the inspection line and take corresponding measures in time, providing a more accurate reference for formulating the line inspection and monitoring plan and improving the intelligent level of the system; at the same time, the inspection point status is updated according to the location information to obtain the inspection work progress, improving the timeliness of inspection supervision and decision-making, and standardizing the line inspection management at the same time.

[0094] Further, on the basis of the above embodiment, the specific implementation method of "updating the status of the inspection points set on the line to be inspected from the uninspected point status to the inspected point status according to the current location information" in step 203 can be:

[0095] According to the current location information, compare it with the longitude and latitude information of the inspection points set in the line information of the line to be inspected. If the distance between the current location information and the set inspection point is less than the preset value, the status of the set inspection point is updated from the uninspected point status to the inspected point status.

[0096] In this embodiment, the data analysis and monitoring server compares the current location information with the location information of the inspection points set on the line to be inspected according to the current location information. If the distance between the current location information and the set inspection point is less than a preset value, for example, less than 20 m, it can be determined that the inspection personnel have reached the inspection point and completed the inspection work. At the same time, the status of the inspection point set on the line to be inspected is updated from the uninspected point status to the inspected point status.

[0097] In this embodiment, by comparing the current location information with the longitude and latitude information of the inspection points set in the line information of the line to be inspected, if the distance between the current location information and the set inspection point is less than the preset value, the status of the inspection point is updated from the uninspected point status to the inspected point status. Compared with the prior art, the method of the present application realizes the automatic and efficient supervision of the inspection work by comparing the current location information with the longitude and latitude information of the inspection points set in the line information of the line to be inspected, and reduces the human and material resources required for supervision.

[0098] Figure 4 FIG. is a schematic flowchart of still another embodiment of the inspection processing method applied to the data analysis and monitoring server provided by the present application. As Figure 4 shown, on the basis of the above embodiment, the method further includes:

[0099] Step 301: Obtain a line production request, where the line production request includes: the line to be inspected.

[0100] In this embodiment, the data analysis and monitoring server obtains the line production request in real time to obtain the line to be inspected that the inspection personnel need to inspect.

[0101] Step 302: According to the line production request, mark the route of the line to be inspected on the map according to the longitude and latitude information of the kilometer markers, mark the kilometer markers of the line to be inspected, and the set inspection points, and use the route of the line to be inspected, the kilometer markers of the line to be inspected, and the set inspection points as the line information of the line to be inspected, so as to send the map marked with the line information of the line to be inspected to the inspection management device.

[0102] In this embodiment, according to the line to be inspected in the obtained line production request, the direction of the line to be inspected is marked on the map according to the longitude and latitude information of the kilometer markers corresponding to the line to be inspected. The kilometer marker can be a point taken every 100 meters on the line to be inspected. Furthermore, the kilometer markers of the line to be inspected are marked on the map, and some or all of them are selected as the set inspection points. Furthermore, the direction of the line to be inspected, the kilometer markers of the line to be inspected, and the set inspection points are marked as the line information of the line to be inspected on the map, so as to send the map marked with the line information of the line to be inspected to the inspection management device for the inspection personnel to carry out inspection work according to the map.

[0103] In this embodiment, by obtaining a line production request, marking the direction of the line to be inspected on the map according to the line production request and the longitude and latitude information of the kilometer markers, marking the kilometer markers of the line to be inspected, and the set inspection points, and taking the direction of the line to be inspected, the kilometer markers of the line to be inspected, and the set inspection points as the line information of the line to be inspected, so as to send the map marked with the line information of the line to be inspected to the inspection management device. Compared with the prior art where the inspection personnel conduct inspections by themselves, the method of this application marks the direction of the line to be inspected and the set inspection points on the map according to the longitude and latitude information of the kilometer markers, realizes the production of the inspection route map, and sends the map marked with the line information of the line to be inspected to the inspection management device, providing a more accurate inspection route for the inspection personnel and improving the inspection efficiency.

[0104] Figure 5 This is a schematic structural diagram of an embodiment of a data analysis monitoring server provided by this application. As Figure 5 shown, the data analysis monitoring server 50 may include: a processor 51 and a memory 52.

[0105] Among them, the processor 51 is communicatively connected to the memory 52, and the memory 52 is used to store computer execution instructions; the processor 51 is configured to execute the technical solutions in any of the foregoing method embodiments by executing the computer execution instructions stored in the memory 52.

[0106] Optionally, the memory 52 can be either independent or integrated with the processor 51. Optionally, when the memory 52 is a device independent of the processor 51, the electronic device 50 may further include: a bus for connecting the above-mentioned devices.

[0107] This data analysis monitoring server is used to execute the technical solutions in any of the foregoing method embodiments, and its implementation principle and technical effects are similar, which will not be elaborated here.

[0108] Figure 6This is a schematic structural diagram of an embodiment of an inspection management system provided by this application. As Figure 6 shown, the inspection management system 60 may include: an inspection management device 10 and a data analysis and monitoring server 62.

[0109] This inspection management system is used to implement the technical solutions in any of the foregoing method embodiments, and its implementation principle and technical effects are similar, which will not be elaborated here.

[0110] Figure 7 This is a schematic structural diagram of an embodiment of an electronic device provided by this application. As Figure 7 shown, the electronic device 70 may include: a processor 71 and a memory 72.

[0111] Among them, the processor 71 is communicatively connected to the memory 72, and the memory 72 is used to store computer execution instructions; the processor 71 is configured to execute the technical solutions in any of the foregoing method embodiments by executing the computer execution instructions stored in the memory 72.

[0112] Optionally, the memory 72 can be either independent or integrated with the processor 71. Optionally, when the memory 72 is a device independent of the processor 71, the electronic device 70 may further include: a bus for connecting the above-mentioned devices.

[0113] This electronic device is used to implement the technical solutions in any of the foregoing method embodiments, and its implementation principle and technical effects are similar, which will not be elaborated here.

[0114] This application embodiment also provides a computer-readable storage medium, in which computer execution instructions are stored. When the computer execution instructions are executed by a processor, they are used to implement the above method, and its implementation principle and technical effects are similar, which will not be elaborated here.

[0115] Specifically, the computer-readable storage medium may include: various media such as a USB flash drive, a mobile hard disk, a read-only memory (ROM), a RAM, a disk, or an optical disc that can store computer execution instructions. Specifically, the computer-readable storage medium stores computer execution instructions, and when the computer execution instructions are executed by a computer, the technical solutions shown in the above method embodiments are executed. The specific implementation manner and technical effects are similar and will not be elaborated here.

[0116] It should be noted that, for the foregoing method embodiments, for the sake of simple description, they are all expressed as a series of action combinations. However, those skilled in the art should know that this application is not limited by the described action sequence, because according to this application, certain steps can be performed in other sequences or simultaneously. Secondly, those skilled in the art should also know that the embodiments described in the specification are all optional embodiments, and the actions and modules involved are not necessarily essential to this application.

[0117] Furthermore, it should be noted that although the steps in the flowchart are displayed in sequence according to the arrows, these steps are not necessarily executed in the order indicated by the arrows. Unless there is a clear description in this article, the execution of these steps has no strict order restriction, and these steps can be executed in other orders. Moreover, at least a part of the steps in the flowchart may include multiple sub-steps or multiple stages. These sub-steps or stages are not necessarily executed at the same moment, but can be executed at different moments. The execution order of these sub-steps or stages is not necessarily sequential, but can be executed alternately or in turn with at least a part of other steps or sub-steps or stages of other steps.

[0118] It should be understood that the above device embodiments are illustrative only, and the devices of this application can also be implemented in other ways. For example, the division of units / modules in the above embodiments is only a logical function division, and there can be other division methods in actual implementation. For example, multiple units, modules or components can be combined, or can be integrated into another system, or some features can be ignored or not executed.

[0119] In addition, unless otherwise specified, in each embodiment of this application, each functional unit / module can be integrated in one unit / module, or each unit / module can exist physically alone, or two or more units / modules can be integrated together. The above integrated unit / module can be implemented in the form of hardware or in the form of a software program module.

[0120] When the integrated unit / module is implemented in the form of hardware, the hardware can be a digital circuit, an analog circuit, etc. The physical implementation of the hardware structure includes, but is not limited to, transistors, memristors, etc. Unless otherwise specified, the processor can be any suitable hardware processor, such as a CPU, GPU, FPGA, DSP, and ASIC, etc. Unless otherwise specified, the storage unit can be any suitable magnetic storage medium or magneto-optical storage medium, such as resistive random access memory (RRAM), dynamic random access memory (DRAM), static random access memory (SRAM), enhanced dynamic random access memory (EDRAM), high-bandwidth memory (HBM), hybrid memory cube (HMC), etc.

[0121] When the integrated unit / module is implemented in the form of a software program module and sold or used as an independent product, it can be stored in a computer-readable memory. Based on this understanding, the technical solution of this application, in essence, or the part that contributes to the prior art, or all or part of this technical solution, can be embodied in the form of a software product. This computer software product is stored in a memory and includes several instructions to enable a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the methods in various embodiments of this application. The aforementioned memory includes: USB flash drives, read-only memory (ROM), random access memory (RAM), mobile hard disks, magnetic disks, or optical discs, etc., which are various media that can store program codes.

[0122] In the above embodiments, the descriptions of each embodiment have their own focuses. For the parts not detailed in a certain embodiment, reference can be made to the relevant descriptions of other embodiments. The technical features of the above embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered to be within the scope described in this specification.

[0123] Those skilled in the art will readily conceive of other embodiments of the present application after considering the specification and practicing the invention disclosed herein. The present application is intended to cover any variations, uses, or adaptations of the present application, which follow the general principles of the present application and include the common general knowledge or conventional technical means in the technical field not disclosed in the present application. The specification and examples are only regarded as exemplary, and the true scope and spirit of the present application are pointed out by the following claims.

[0124] It should be understood that the present application is not limited to the exact structures described above and shown in the drawings, and various modifications and changes can be made without departing from its scope. The scope of the present application is only limited by the appended claims.

Claims

1. An inspection management device, characterized in that, Including: A main control module, an image acquisition module, a positioning module, a communication module, an acoustic-optic alarm module, and a display module; among them, The main control module is used to obtain a map marked with the line information of the line to be inspected from the data analysis and monitoring server, and trigger the display module to perform display processing on the map; among them, the line information of the line to be inspected includes: the direction of the line to be inspected, the kilometer markers on the line to be inspected, and the set inspection points; The image acquisition module is used to acquire audio and video data on the line to be inspected; The positioning module is used to acquire the current position information of the inspection management device on the line to be inspected through GPS and Beidou dual-mode positioning technology; The main control module is used to send the audio and video data and the current position information to the data analysis and monitoring server through the communication module, so that the data analysis and monitoring server can analyze and process the audio and video data and the current position information, and when it is determined that there is an alarm event, send the generated reminder information to the inspection management device; and according to the current position information, update the status of the set inspection points on the line to be inspected from the uninspected point status to the inspected point status, and send the updated status of the inspection points to the inspection management device; The main control module is further used to, according to the updated status of the inspection points, perform corresponding update processing on the status of the set inspection points on the line to be inspected on the map marked with the line information to be inspected, and perform display processing on the updated map through the display module; The main control module is used to trigger the acoustic-optic alarm module to perform alarm processing according to the reminder information.

2. The patrol management device according to claim 1, wherein It further includes: A storage module; The main control module is further used to store the audio and video data, the current position information, and the corresponding acquisition time into the storage module in accordance with a hierarchical management method, and perform labeling processing on the audio and video data, the current position information, and the corresponding acquisition time to obtain an identifier corresponding to the audio and video data, the current position information, and the corresponding acquisition time as a prohibited modification identifier; The main control module is further used to, when receiving a data modification request, judge the identifier corresponding to the data to be modified in the data modification request, and if the identifier corresponding to the data to be modified is a prohibited modification identifier, feedback a reminder message of prohibited modification.

3. A patrol inspection processing method, characterized in that, Applied to an inspection management device, the inspection management device includes: a main control module, an image acquisition module, a positioning module, a communication module, an acoustic-optic alarm module, and a display module, then the method includes: The main control module obtains a map marked with the line information to be inspected from the data analysis and monitoring server, and triggers the display module to perform display processing on the map marked with the line information to be inspected; among them, the line information to be inspected includes: the direction of the line to be inspected, the kilometer markers on the line to be inspected, and the set inspection points; The image acquisition module acquires audio and video data on the line to be inspected; The positioning module acquires the current position information of the inspection management device on the line to be inspected through GPS and Beidou dual-mode positioning technologies; The main control module sends the audio-video data and the current position information to the data analysis and monitoring server through the communication module, so that the data analysis and monitoring server analyzes and processes the audio-video data and the current position information, and when it is determined that there is an alarm event, the generated reminder information is sent to the inspection management device; and according to the current position information, the status of the set inspection points on the line to be inspected is updated from the uninspected point status to the inspected point status, and the updated status of the inspection points is sent to the inspection management device; The main control module correspondingly updates the status of the set inspection points on the line to be inspected on the map marked with the line information to be inspected according to the updated status of the inspection points, and displays the updated map through the display module; The main control module triggers the sound and light alarm module to perform alarm processing according to the reminder information.

4. A patrol inspection processing method, characterized in that, When applied to a data analysis and monitoring server, the method includes: Receiving the audio-video data and the current position information sent by the inspection management device; Analyzing and processing the audio-video data and the current position information, and when it is determined that there is an alarm event, sending the generated reminder information to the inspection management device, so that the main control module in the inspection management device triggers the sound and light alarm module to perform alarm processing according to the reminder information; According to the current position information, the status of the set inspection points on the line to be inspected is updated from the uninspected point status to the inspected point status, and the updated status of the inspection points is sent to the inspection management device, so that the main control module in the inspection management device correspondingly updates the status of the set inspection points on the line to be inspected on the map marked with the line information to be inspected according to the updated status of the inspection points, and displays the updated map through the display module.

5. The method according to claim 4, characterized in that It further includes: Obtaining a line production request, where the line production request includes: the line to be inspected; According to the line production request, marking the route of the line to be inspected on the map according to the longitude and latitude information of the kilometer markers, marking the kilometer markers of the line to be inspected, and the set inspection points, and taking the route of the line to be inspected, the kilometer markers of the line to be inspected, and the set inspection points as the line information of the line to be inspected, so as to send the map marked with the line information of the line to be inspected to the inspection management device.

6. The method according to claim 4 or 5, characterized in that, The step of updating the status of the set inspection points on the line to be inspected from the uninspected point status to the inspected point status according to the current position information includes: Comparing the current position information with the longitude and latitude information of the set inspection points in the line information of the line to be inspected, and if the distance between the current position information and the set inspection points is less than a preset value, updating the status of the set inspection points from the uninspected point status to the inspected point status.

7. A data analysis monitoring server, characterized in that, It includes: A processor, and a memory communicatively connected to the processor; The memory stores computer-executable instructions; The processor executes the computer-executable instructions stored in the memory to implement the method according to any one of claims 4 to 6.

8. An inspection management system, characterized in that, Comprising: An inspection management device and a data analysis and monitoring server, wherein, The inspection management device is configured to execute the method according to claim 3; The data analysis and monitoring server is configured to execute the method according to any one of claims 4 to 6.

9. An electronic device, characterized in that, Comprising: A processor and a memory communicatively connected to the processor; The memory stores computer-executable instructions; The processor executes the computer-executable instructions stored in the memory to implement the method according to claim 3.

10. A computer-readable storage medium, characterized in that, Computer-executable instructions are stored in the computer-readable storage medium, and when the computer-executable instructions are executed by a processor, they are used to implement the method according to any one of claims 3 to 6.