Equipment inspection methods, servers, equipment inspection monitoring systems and storage media

By assigning different IP addresses to wireless routers on each floor of the mine within the local area network, and combining mobile terminals and server management, intelligent equipment inspection was achieved, solving the problems of standardization and efficiency in mine equipment inspection, and improving safety and production efficiency.

CN116506405BActive Publication Date: 2025-10-31YIN MENG DA CHUAN DONG JI SHU (SHANG HAI) YOU XIAN ZE REN GONG SI
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Patent Information

Application Number
CN202310423928.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-19
Publication Date
2025-10-31
Estimated Expiration
2043-04-19

AI Technical Summary

Technical Problem

In mines, existing technologies make it difficult to conduct standardized and efficient inspections of equipment, leading to safety hazards and low production efficiency.

Method used

By assigning different IP addresses to the wireless routers on each floor in the local area network, and matching the real-time IP address of the mobile terminal with the device characteristic field, it is ensured that the inspectors are performing their inspection tasks in the correct location, and the inspection and maintenance process is managed through the server.

Benefits of technology

This improved the safety and efficiency of mine production, prevented unauthorized inspections, and ensured the standardization and timeliness of equipment maintenance.

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Abstract

This application relates to the field of smart mine technology, particularly to equipment inspection methods, servers (3), equipment inspection monitoring systems, and storage media. This application utilizes a local area network (LAN) to provide different IP addresses for wireless routers (4) on each floor. When an inspector wants to complete an inspection of equipment on a floor, the inspector must connect their first mobile terminal (1) to the LAN of that floor via the wireless router (4). Only when the actual characteristic field in the real-time IP address of the first mobile terminal (1) matches the required characteristic field can the inspector perform the inspection task and submit feedback information. Thus, through intelligent management of equipment inspection, the problem of inspectors completing inspection tasks without being at the inspection site is avoided, improving the safety of mine production and providing technical support for efficient mine production.
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Description

Technical Field

[0001] This application relates to the field of smart mine technology, and in particular to equipment inspection methods, servers, equipment inspection and monitoring systems, and storage media. Background Technology

[0002] Equipment on different floors of a mine requires inspection and maintenance to ensure its normal operation, eliminate safety hazards, and prevent equipment failures from affecting normal mine production. Currently, in the construction of intelligent mine systems, how to achieve more standardized and efficient inspections of mine equipment through intelligent mine equipment inspection management is of great significance for ensuring safe and efficient mine production. Summary of the Invention

[0003] In view of this, this application proposes an equipment inspection method, a server, and an equipment inspection monitoring system to achieve more standardized and efficient inspection of mine equipment.

[0004] In a first aspect, in one embodiment of the equipment inspection method provided in this application, the method includes: sending an inspection task list to a first mobile terminal logged into an inspector's account; receiving an operation request for an inspection task submitted by the first mobile terminal and obtaining the real-time IP address of the first mobile terminal; searching for the corresponding characteristic field of the equipment in the inspection task in the database according to the operation request; comparing the actual characteristic field in the real-time IP address of the first mobile terminal with the corresponding characteristic field; when the actual characteristic field matches the corresponding characteristic field, sending a submission success response message to the first mobile terminal; otherwise, sending a submission failure response message to the first mobile terminal.

[0005] As can be seen from the above scheme, by providing different IP addresses to the wireless routers on each floor using a local area network (LAN), when an inspector wants to complete an inspection task on a floor, the inspector must connect their primary mobile terminal to the LAN of that floor via the wireless router. Only when the actual characteristic field in the real-time IP address of the primary mobile terminal matches the required characteristic field can the inspector successfully perform the inspection task and submit feedback information. In this way, intelligent management of equipment inspection avoids the problem of inspectors completing inspection tasks without being at the designated inspection location, improving the safety of mine production and providing technical support for efficient mine production.

[0006] In a preferred embodiment of the equipment inspection method provided in the above embodiments, in the step of sending the inspection task list to the first mobile terminal, the inspection task list is automatically generated according to the preset inspection rules and sent to the inspector's account in advance before the required completion time.

[0007] In a preferred embodiment of the equipment inspection method provided in the above embodiments, the equipment inspection method further includes: when the required completion time has expired and there are inspection tasks that have not been completed before the required completion time expires, sending a task timeout reminder to the inspector account corresponding to the inspection task and the inspector's superior manager account.

[0008] In a preferred embodiment of the equipment inspection method provided in the above embodiments, the equipment inspection method further includes: when the actual feature field matches the required feature field, receiving feedback information submitted by the first mobile terminal for an inspection task, the feedback information including at least one of text, voice, image, video and fill-in options.

[0009] In a preferred embodiment of the equipment inspection method provided in the above embodiments, the equipment inspection method further includes: sending a maintenance task generated based on the feedback information of the inspection task to a second mobile terminal logged into the maintenance personnel's account, and forwarding the feedback information of the inspection task to the second mobile terminal; receiving and storing maintenance description information for an inspection item submitted by the second mobile terminal; wherein the maintenance description information includes the cause of the fault and the solution.

[0010] In a preferred embodiment of the equipment inspection method provided in the above embodiments, the equipment inspection method further includes: receiving a maintenance history query request information sent by a second mobile terminal; and in response to the query request information, sending maintenance description information matching the query request information to the second mobile terminal.

[0011] Secondly, this application also provides a server for executing the equipment inspection method described in any of the above embodiments.

[0012] Thirdly, this application also provides an equipment inspection and monitoring system, which includes a server, multiple wireless routers, and at least one first mobile terminal. The server is used to access a local area network (LAN). One of the multiple wireless routers is located on one floor and connected to the LAN, and routers on different floors are assigned IP addresses with different characteristic fields. The first mobile terminal can access and communicate with the server through one of the wireless routers, and the first mobile terminal supports login with an inspector's account.

[0013] Fourthly, this application also provides a computer-readable storage medium storing computer instructions, which, when executed by a processor, cause the processor to perform the device inspection method described in any of the above embodiments. Attached Figure Description

[0014] The preferred embodiments of this application will now be described in detail with reference to the accompanying drawings, so that those skilled in the art can more clearly understand the above and other features and advantages of this application, in which:

[0015] Figure 1 This is a schematic diagram of one embodiment of the equipment inspection and monitoring system of this application.

[0016] Figure 2 for Figure 1 A flowchart illustrating the equipment inspection method executed by the server in the equipment inspection and monitoring system.

[0017] The accompanying figure is labeled as follows:

[0018] 1-First mobile terminal; 2-Second mobile terminal; 3-Server; 4-Wireless router. Detailed Implementation

[0019] To make the objectives, technical solutions, and advantages of this application clearer, the following embodiments are provided to further illustrate this application in detail. It should be understood that in the description of this application, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0020] like Figure 1 As shown, the equipment inspection and monitoring system in this embodiment includes a server 3, multiple wireless routers 4, and at least one first mobile terminal 1. The server 3 and the multiple wireless routers 4 are connected to the same local area network (LAN). One wireless router 4 is located on one floor and connected to the LAN, and the wireless routers 4 on different floors are assigned IP addresses with different characteristic fields. For example, the IP address format for each floor is 192.169.x01.xxx, where the IP address of the wireless router 4 on the first floor could be 192.169.101.xxx, the IP address of the wireless router 4 on the second floor could be 192.169.201.xxx, and the IP address of the wireless router 4 on the eighth floor could be 192.169.801.xxx. The equipment to be inspected is distributed on different floors. The first mobile terminal 1 can access and communicate with the server 3 through one of the wireless routers 4, and the first mobile terminal 1 supports login with the inspector's account.

[0021] Preferably, the equipment inspection and monitoring system may also include at least one second mobile terminal 2, which can access and communicate with the server 3 through a wireless router 4, and the second mobile terminal 2 supports maintenance personnel account login.

[0022] In this embodiment, server 3 can execute the following device inspection method to complete data interaction with the first mobile terminal 1. (Refer to...) Figure 2The equipment inspection method includes:

[0023] S11. Send the inspection task list to the first mobile terminal 1 that is logged into the inspector's account.

[0024] S12. Receive an operation request for an inspection task submitted by the first mobile terminal 1, and obtain the real-time IP address of the first mobile terminal 1.

[0025] S13. Based on the operation request, search the database for the corresponding characteristic fields of the equipment in the inspection task.

[0026] S14. Compare the actual feature field in the real-time IP address of the first mobile terminal 1 with the required feature field.

[0027] S15. When the actual feature field matches the required feature field, a submission success response is sent to the first mobile terminal 1; otherwise, a submission failure response is sent to the first mobile terminal 1.

[0028] For example, in step S11, an inspection task in the inspection task list may include a device code, device name, a corresponding inspection item, inspection standards, and a required completion time. Preferably, server 3 can automatically generate an inspection task list according to pre-set inspection rules and send it to the inspector's account before the required completion time. For example, depending on the inspection requirements of different devices, the inspection rules for different devices on the same floor can be set separately or in batches. For instance, some devices require an inspection cycle of daily, some require an inspection cycle of two days, and some require an inspection cycle of one week or one month.

[0029] Optionally, in step S12, a JAVA program can be used to obtain the real-time IP address of the first mobile terminal 1 that submitted the inspection task feedback information. This operation request can be an input request for the inspection task feedback information, or a submission request for already input feedback information, etc.

[0030] Optionally, in step S13, server 3 can search in the mapping table between device name and corresponding IP address based on the device name corresponding to the feedback information of the inspection task to obtain the corresponding IP address of the inspection task.

[0031] For example, based on the order and number of network connections to the wireless router 4, the wireless router 4 on each floor can assign IP addresses to the first mobile terminal 1 and the second mobile terminal 2 connected to its network. For instance, the wireless router 4 on the first floor assigns an IP address of 192.169.101.001 to one first mobile terminal 1 connected to it, and an IP address of 192.169.101.002 to the second first mobile terminal 1. When the server 3 obtains the real-time IP address of the first mobile terminal 1 as 192.169.101.001, it extracts its feature field as "192.169.101", or only extracts the third field as the feature field "101". The server 3 can determine that the actual feature field matches the required feature field based on the fact that the floor where the device is located in the device inspection task is the first floor, and its corresponding feature field should be "192.169.101" or "101", and can send a successful submission response message to the first mobile terminal 1. Conversely, if the actual extracted feature field is "192.169.101", while the floor where the equipment is located in the inspection task is the second floor, its corresponding feature field should be "192.169.102", which is a mismatch. In this case, a submission failure response message can be sent to the first mobile terminal 1.

[0032] In the equipment inspection method, server 3, and equipment inspection monitoring system provided in the above embodiments, different IP addresses are provided to the wireless routers 4 on each floor using a local area network. When an inspector wants to complete the inspection task of the equipment on a floor, the inspector must connect the first mobile terminal 1 he is holding to the local area network of that floor through the wireless router 4. Only when the actual characteristic field in the real-time IP address of the first mobile terminal 1 matches the corresponding characteristic field can he normally perform the inspection task operation and submit the inspection task feedback information. In this way, through intelligent management of equipment inspection, the problem of inspectors completing inspection tasks illegally before arriving at the inspection site is avoided, improving the safety of mine production and providing technical support for efficient mine production.

[0033] In a preferred embodiment, the equipment inspection method may further include: when the required completion time has expired and there are inspection tasks that have not been completed before the deadline, the server 3 sends a task timeout reminder to the inspector's account corresponding to the inspection task and the inspector's superior manager's account. For example, the inspector's account and its superior manager's account can log in via computer or mobile phone to urge the inspector to complete the inspection task.

[0034] In a preferred embodiment, the device inspection method may further include: when the actual feature field matches the required feature field, receiving feedback information submitted by the first mobile terminal 1 for an inspection task, the feedback information may include at least one of text, voice, image, video and fill-in options.

[0035] In a preferred embodiment, the equipment inspection method may further include:

[0036] S21. Send a maintenance task generated based on the feedback information of the inspection task to the second mobile terminal 2 logged into the maintenance personnel account, and forward the feedback information of the inspection task to the second mobile terminal 2.

[0037] S22. Receive and store maintenance instructions for an inspection item submitted by the second mobile terminal 2; wherein the maintenance instructions include the cause of the fault and the solution.

[0038] In this implementation, after receiving a maintenance task, the maintenance personnel can prepare the necessary tools and materials in advance based on feedback from the inspection task, and then carry out maintenance work after on-site inspection, thus improving equipment maintenance efficiency. Furthermore, the maintenance personnel can also send the cause of the fault and the solution to the server 3 via the second mobile terminal 2 to form a maintenance record.

[0039] Furthermore, in a preferred embodiment, the equipment inspection method may further include:

[0040] S23. Receive the maintenance history query request information sent by the second mobile terminal 2;

[0041] S24. In response to the query request information, the repair instructions matching the query request information are sent to the second mobile terminal 2.

[0042] For example, maintenance personnel can search for relevant maintenance instructions using keywords such as equipment name, inspection items, and causes of failure, providing a reference for their maintenance work and further improving equipment maintenance efficiency.

[0043] It should be noted that not all steps in the above process are mandatory, and some steps can be omitted as needed. The execution order of the steps is not fixed and can be adjusted as required.

[0044] This application also provides a computer-readable storage medium storing computer instructions, which, when executed by a processor, cause the processor to perform the device inspection method described in any of the above embodiments.

[0045] This application relates to the field of smart mine technology, specifically to equipment inspection methods, a server 3, an equipment inspection monitoring system, and a storage medium. This application utilizes a local area network (LAN) to provide different IP addresses to wireless routers 4 on each floor. When an inspector wants to complete an inspection task on a floor, they must connect their first mobile terminal 1 to the LAN of that floor via the wireless router 4. Only when the actual characteristic field in the real-time IP address of the first mobile terminal 1 matches the required characteristic field can the inspector normally perform the inspection task and submit feedback information. Thus, through intelligent management of equipment inspection, the problem of inspectors completing inspection tasks without being at the designated inspection location is avoided, improving the safety of mine production and providing technical support for efficient mine production.

[0046] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of protection of this application. The nouns and pronouns referring to persons in this patent application are not limited to specific genders.

Claims

1. An equipment inspection method, characterized in that, The method includes: Multiple wireless routers (4) are deployed on different floors and connected to the same local area network; wherein each of the wireless routers (4) is deployed on one floor and connected to the local area network; different floors do not share wireless routers (4). The local area network is used to provide different IP addresses for each wireless router (4) on each floor; among them, each wireless router (4) on different floors is assigned an IP address with different characteristic fields; Send the inspection task list to the first mobile terminal (1) logged into the inspector's account; The first mobile terminal (1) accesses the local area network through the first wireless router (4) on the first floor; The first wireless router (4) in the first floor assigns a real-time IP address to the first mobile terminal (1); wherein, the real-time IP address is: an IP address with a characteristic field assigned by the first wireless router (4); Receive an operation request for an inspection task submitted by the first mobile terminal (1) and obtain the real-time IP address of the first mobile terminal (1); Based on the operation request, search the database for the corresponding characteristic fields of the equipment in the inspection task; The actual feature field in the real-time IP address of the first mobile terminal (1) is compared with the required feature field; When the actual feature field matches the required feature field, a successful submission response is sent to the first mobile terminal (1); otherwise, a failed submission response is sent to the first mobile terminal (1).

2. The method according to claim 1, characterized in that, In the step of sending the inspection task list to the first mobile terminal (1), the inspection task list is automatically generated according to the pre-set inspection rules and sent to the inspector's account in advance before the required completion time.

3. The method according to claim 1, characterized in that, Also includes: If the deadline for completion has passed and there are unfinished inspection tasks before the deadline, a task timeout reminder will be sent to the inspector's account corresponding to the inspection task and the inspector's superior manager's account.

4. The method according to claim 1, characterized in that, Also includes: When the actual feature field matches the required feature field, the system also receives feedback information submitted by the first mobile terminal (1) for an inspection task. The feedback information includes at least one of text, voice, image, video and fill-in options.

5. The method according to claim 4, characterized in that, Also includes: Send a maintenance task generated based on the feedback information of the inspection task to the second mobile terminal (2) logged into the maintenance personnel account, and forward the feedback information of the inspection task to the second mobile terminal (2). Receive and store maintenance instructions for an inspection item submitted by the second mobile terminal (2); wherein the maintenance instructions include the cause of the fault and the solution.

6. The method according to claim 5, characterized in that, Also includes: Receive the maintenance history query request information sent by the second mobile terminal (2); In response to the query request information, the repair instructions information matching the query request information is sent to the second mobile terminal (2).

7. An equipment inspection and monitoring system, characterized in that, include: A server (3) for performing the equipment inspection method according to any one of claims 1 to 6, wherein the server (3) is used to access a local area network; Multiple wireless routers (4), one wireless router (4) is arranged on one floor and connected to the local area network, and the routers on different floors are assigned IP addresses with different characteristic fields; At least one first mobile terminal (1) can access the server (3) and communicate with the server (3) through a wireless router (4), and the first mobile terminal (1) supports the login of the inspector's account.

8. A computer-readable storage medium, characterized in that, The readable storage medium stores computer instructions that, when executed by a processor, cause the processor to perform the method described in any one of claims 1 to 6.

Citation Information

Patent Citations

  • Management method and device for equipment inspection process, electronic equipment and storage medium

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