Inspection result prompt method, device, storage medium and electronic equipment
By obtaining actual and standard inspection information, calculating the difference indicators, and determining the inspection quality results, the problem of incomplete coverage during the inspection process is solved, and the effectiveness and accuracy of inspection quality is achieved.
Patent Information
- Application Number
- CN202310507523.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-06
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2043-05-06
AI Technical Summary
In the prior art, inspection personnel cannot guarantee full coverage of work content that needs inspection during equipment inspection, and can only ensure the arrival of the work point but cannot ensure the actual inspection quality.
By obtaining actual inspection information and standard inspection information, calculating indicators such as duration difference, positioning signal quantity difference and reception time, determining the inspection quality results, and outputting inspection result prompt information to ensure the comprehensiveness of the inspection process.
It has achieved comprehensive coverage of work content during the inspection process, ensured the quality of inspection, and improved the effectiveness and accuracy of inspection.
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Figure CN116631083B_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the field of data processing technology, and in particular to an inspection result prompting method, device, storage medium, and electronic device. Background Art
[0002] In production workshops, equipment must be monitored for potential safety hazards to ensure stable operation. Conventional technology typically involves inspectors taking photos, clocking in, and signing for confirmation at the corresponding workstations. However, this method only ensures that inspectors arrive at the workstations; it doesn't guarantee that they'll inspect the required work areas. Summary of the Invention
[0003] The purpose of the present disclosure is to provide a method, device, storage medium and electronic device for prompting inspection results, so as to solve the problem in related technologies that it is impossible to ensure that inspection personnel inspect the work content that needs to be inspected during the inspection process.
[0004] In order to achieve the above-mentioned object, according to a first aspect of an embodiment of the present disclosure, a method for prompting an inspection result is provided, the method comprising:
[0005] Obtain actual inspection information for the target inspection scenario during the actual inspection process;
[0006] Obtaining standard inspection information, where the standard inspection information is inspection information obtained by inspecting the target inspection scene according to preset inspection rules;
[0007] An inspection quality result of the target inspection scene during the actual inspection process is determined according to the actual inspection information and the standard inspection information, and inspection result prompt information is output according to the inspection quality result.
[0008] Optionally, the actual inspection information includes the total duration of the actual inspection, and the standard inspection information includes the total duration of the standard inspection:
[0009] The determining, according to the actual inspection information and the standard inspection information, an inspection quality result of the target inspection scene during the actual inspection process includes:
[0010] Determine the time difference information based on the actual inspection time and the standard inspection time;
[0011] An inspection quality result of the target inspection scene during the actual inspection process is determined according to the duration difference information.
[0012] Optionally, determining the duration difference information according to the actual total inspection duration and the standard total inspection duration includes:
[0013] Determine the difference between the actual inspection total time and the standard inspection total time;
[0014] The absolute value of the duration difference is divided by the total duration of the standard inspection to obtain duration difference information.
[0015] Optionally, the target inspection scene is provided with a positioning generator and at least one positioning receiver, the positioning generator is used to locate the position of the inspection personnel and generate a positioning signal to send to the positioning receiver, the positioning receiver is used to receive the positioning signal, the actual inspection information includes the total number of the positioning signals during the actual inspection process, and the standard inspection information includes the total number of the positioning signals during the standard inspection process;
[0016] The determining, according to the actual inspection information and the standard inspection information, an inspection quality result of the target inspection scene during the actual inspection process includes:
[0017] Determining quantity difference information based on the total number of positioning signals during the actual inspection process and the total number of positioning signals during the standard inspection process;
[0018] An inspection quality result of the target inspection scene during the actual inspection process is determined according to the quantity difference information.
[0019] Optionally, determining the quantity difference information according to the total number of positioning signals in the actual inspection process and the total number of positioning signals in the standard inspection process includes:
[0020] Determine the difference between the total number of positioning signals during the actual inspection process and the total number of positioning signals during the standard inspection process;
[0021] The absolute value of the quantity difference is divided by the total number of positioning signals during the standard inspection process to obtain quantity difference information.
[0022] Optionally, the target inspection scene is provided with a positioning generator and at least one positioning receiver, the positioning generator is used to locate the position of the inspection personnel and generate a positioning signal to send to the positioning receiver, the positioning receiver is used to receive the positioning signal, and a preset marked positioning receiver is included in the at least one positioning receiver, and the method further includes:
[0023] When the actual inspection information does not include the positioning signal corresponding to the marker positioning receiver, determining that the inspection quality result of the target inspection scene is a result used to indicate that the inspection is unqualified;
[0024] When the actual inspection information includes the positioning signal corresponding to the marker positioning receiver, it is determined that the inspection quality result of the target inspection scene is a result used to indicate that the inspection is qualified.
[0025] Optionally, the target inspection scene is provided with a positioning generator and at least one positioning receiver, the positioning generator is used to locate the position of the inspection personnel and generate a positioning signal to send to the positioning receiver, the positioning receiver is used to receive the positioning signal, the actual inspection information includes a reception duration, and the reception duration is the duration for the positioning receiver to receive the positioning signal. The method further includes:
[0026] When the receiving time is longer than a preset time, determining inspection status information, the inspection status information being information obtained by the inspection equipment carried by the inspection personnel during the receiving time;
[0027] When the actual inspection information does not include the inspection status information, it is determined that the inspection quality result of the target inspection scenario is a result used to indicate that the inspection is unqualified.
[0028] According to a second aspect of an embodiment of the present disclosure, there is provided an inspection result prompting device, comprising a first information acquisition module, a second information acquisition module, and a determination module;
[0029] The first information acquisition module is used to obtain actual inspection information for the target inspection scene during the actual inspection process;
[0030] The second information acquisition module is used to acquire standard inspection information, where the standard inspection information is inspection information acquired by inspecting the target inspection scene according to preset inspection rules;
[0031] The determination module is used to determine the inspection quality result of the target inspection scene during the actual inspection process according to the actual inspection information and the standard inspection information, and output inspection result prompt information according to the inspection quality result.
[0032] Optionally, the actual inspection information includes the total duration of the actual inspection, the standard inspection information includes the total duration of the standard inspection, and the determining module includes:
[0033] A first determining submodule is configured to determine duration difference information based on the actual total inspection duration and the standard total inspection duration;
[0034] The second determining submodule is configured to determine an inspection quality result of the target inspection scene during the actual inspection process according to the duration difference information.
[0035] Optionally, the first determining submodule includes:
[0036] A first calculation module is used to determine the difference between the actual total inspection time and the standard total inspection time;
[0037] The second calculation module is used to divide the absolute value of the duration difference by the total duration of the standard inspection to obtain duration difference information.
[0038] Optionally, the target inspection scene is provided with a positioning generator and at least one positioning receiver, the positioning generator is used to locate the position of the inspection personnel and generate a positioning signal to send to the positioning receiver, the positioning receiver is used to receive the positioning signal, the actual inspection information includes the total number of the positioning signals during the actual inspection process, and the standard inspection information includes the total number of the positioning signals during the standard inspection process;
[0039] The determination module also includes:
[0040] A third determining submodule is configured to determine quantity difference information based on the total number of positioning signals during the actual inspection process and the total number of positioning signals during the standard inspection process;
[0041] The fourth determining submodule is configured to determine an inspection quality result of the target inspection scene during the actual inspection process according to the quantity difference information.
[0042] Optionally, the third determining submodule includes:
[0043] a third calculation module, configured to determine a difference between a total number of positioning signals during the actual inspection process and a total number of positioning signals during the standard inspection process;
[0044] The fourth calculation module is used to divide the absolute value of the quantity difference by the total number of positioning signals in the standard inspection process to obtain quantity difference information.
[0045] Optionally, the target inspection scene is provided with a positioning generator and at least one positioning receiver, the positioning generator is used to locate the position of the inspection personnel and generate a positioning signal to send to the positioning receiver, the positioning receiver is used to receive the positioning signal, and there is a preset marked positioning receiver in the at least one positioning receiver, and the device further includes:
[0046] a fifth determining submodule, configured to determine, when the actual inspection information does not include a positioning signal corresponding to the marker positioning receiver, that the inspection quality result of the target inspection scene is a result indicating that the inspection is unqualified;
[0047] The sixth determining submodule is configured to determine, when the actual inspection information includes a positioning signal corresponding to the marker positioning receiver, that the inspection quality result of the target inspection scene is a result indicating that the inspection is qualified.
[0048] Optionally, the target inspection scene is provided with a positioning generator and at least one positioning receiver, the positioning generator is used to locate the position of the inspection personnel and generate a positioning signal to send to the positioning receiver, the positioning receiver is used to receive the positioning signal, the actual inspection information includes a reception duration, and the reception duration is the duration for the positioning receiver to receive the positioning signal. The device further includes:
[0049] a seventh determining submodule, configured to determine inspection status information when the receiving time is greater than a preset time, the inspection status information being information obtained by an inspection device carried by an inspection personnel during the receiving time;
[0050] An eighth determining submodule is configured to determine, when the actual inspection information does not include the inspection status information, that the inspection quality result of the target inspection scenario is a result indicating that the inspection is unqualified.
[0051] According to a third aspect of an embodiment of the present disclosure, a non-temporary computer-readable storage medium is provided, on which a computer program is stored, which, when executed by a processor, implements the steps of any one of the methods described in the first aspect of the present disclosure.
[0052] According to a fourth aspect of the embodiments of the present disclosure, there is provided an electronic device, including:
[0053] a memory having a computer program stored thereon;
[0054] A processor is used to execute the computer program in the memory to implement the steps of any one of the methods described in the first aspect of the present disclosure.
[0055] Through the above technical solution, actual inspection information for the target inspection scenario is obtained during the actual inspection process, as well as standard inspection information. Based on the actual inspection information and the standard inspection information, the inspection quality results for the target inspection scenario during the actual inspection process are confirmed. The method of obtaining inspection quality results based on the actual inspection information and the standard inspection information ensures that inspectors conduct inspections on the work content that requires inspection during the inspection process.
[0056] Other features and advantages of the present disclosure will be described in detail in the following detailed description. BRIEF DESCRIPTION OF THE DRAWINGS
[0057] The accompanying drawings are used to provide a further understanding of the present disclosure and constitute a part of the specification. Together with the following detailed description, they are used to explain the present disclosure but do not constitute a limitation of the present disclosure. In the accompanying drawings:
[0058] Figure 1 The figure is a schematic diagram showing a method for prompting inspection results according to an exemplary embodiment of the present disclosure.
[0059] Figure 2 FIG1 is a schematic diagram showing the layout of N1 area equipment and work points according to an exemplary embodiment of the present disclosure.
[0060] Figure 3 FIG. 1 is a schematic diagram showing the layout of N2 area equipment and work points according to an exemplary embodiment of the present disclosure.
[0061] Figure 4 Schematic diagram of the layout of N3 area equipment and work points according to an exemplary embodiment of the present disclosure.
[0062] Figure 5 The figure is a schematic diagram showing a device for prompting inspection results according to an exemplary embodiment of the present disclosure.
[0063] Figure 6 is a block diagram of an electronic device according to an exemplary embodiment of the present disclosure. DETAILED DESCRIPTION
[0064] The following describes the specific embodiments of the present disclosure in detail with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are only used to illustrate and explain the present disclosure and are not intended to limit the present disclosure.
[0065] It should be noted that all actions of acquiring signals, information or data in the present disclosure are carried out in compliance with the corresponding data protection laws and policies of the country where they are located and with the authorization given by the owner of the corresponding device.
[0066] In a production workshop, it is often necessary to monitor the safety hazards, appearance integrity, mechanical safety, operator safety, and operating status of related equipment to ensure stable operation. Therefore, inspectors are required to regularly inspect related equipment to ensure stable and orderly production.
[0067] In the related art, inspections are usually carried out by inspection personnel taking photos of relevant equipment, punching in, and signing for confirmation at the corresponding work points.
[0068] However, when this method is used to inspect equipment, it can only ensure that the relevant inspection personnel arrive at the work point, but cannot ensure that the inspection personnel will inspect the work content that needs to be inspected during the inspection process.
[0069] In view of this, the present disclosure provides an inspection result prompt method, device, storage medium and electronic device to solve the problems in related technologies: when inspection personnel take photos, punch in and sign to confirm the inspection of the production workshop at the work point, it cannot be guaranteed that the inspection personnel will inspect the work content that needs to be inspected during the inspection process.
[0070] like Figure 1 As shown, Figure 1 is a schematic diagram showing a method for prompting inspection results according to an exemplary embodiment of the present disclosure, with reference to Figure 1 The inspection result prompt method is used to process the information obtained after the inspection, including:
[0071] Step S101: Acquire actual inspection information for a target inspection scenario during an actual inspection process;
[0072] Step S102: Acquire standard inspection information, which is inspection information obtained by inspecting a target inspection scene according to preset inspection rules;
[0073] Step S103: determining the inspection quality result of the target inspection scene during the actual inspection process according to the actual inspection information and the standard inspection information, and outputting inspection result prompt information according to the inspection quality result.
[0074] Through the above technical solution, actual inspection information for the target inspection scenario is obtained during the actual inspection process, as well as standard inspection information. Based on the actual inspection information and the standard inspection information, the inspection quality results for the target inspection scenario during the actual inspection process are confirmed. The method of obtaining inspection quality results based on the actual inspection information and the standard inspection information ensures that inspectors conduct inspections on the work content that requires inspection during the inspection process.
[0075] In order to enable those skilled in the art to better understand the image compression method provided by the present disclosure, the above steps are described in detail with examples below.
[0076] It should be understood that standard inspection information can be inspection information obtained by inspecting a target inspection scenario according to preset inspection rules. The preset inspection rules can include, during the inspection of the target inspection scenario, a standard inspection time at an operating point, a standard inspection time for a piece of equipment, a standard time required to handle a temporary equipment fault, and a standard time required to handle a special fault. The embodiments of the present disclosure do not impose specific limitations on this.
[0077] It should be understood that the actual inspection information may be characteristic information used to characterize the actual inspection process during the actual inspection of the target inspection scene. The target inspection scene may be an assembly line operation scene requiring inspection and testing of related equipment, which is not specifically limited in the embodiments of the present disclosure.
[0078] It should be understood that determining the inspection quality of the target inspection scene based on actual inspection information and standard inspection information can ensure that the inspection personnel inspect the work content that needs to be inspected during the inspection process.
[0079] In a possible manner, the actual inspection information includes the total actual inspection time, and the standard inspection information includes the total standard inspection time:
[0080] Based on the actual inspection information and standard inspection information, determine the inspection quality results for the target inspection scenario during the actual inspection process, including:
[0081] Determine the time difference information based on the actual inspection time and the standard inspection time;
[0082] Based on the time difference information, the inspection quality result of the target inspection scene during the actual inspection process is determined.
[0083] It should be understood that during the inspection process of the target inspection scene, if the actual inspection total time is not much different from the standard inspection total time, then the actual inspection process may be the process of actually inspecting the target inspection scene according to the preset inspection rules; if the actual inspection total time is significantly different from the standard inspection total time, then the actual inspection process may be the process of not inspecting the target inspection scene according to the inspection rules. Therefore, the duration difference information is determined based on the actual inspection total time and the standard inspection total time, and the inspection quality result of the target inspection scene during the actual inspection process is determined based on the duration difference information.
[0084] Among them, the actual total inspection time can be the sum of the actual route inspection time, the actual spot inspection time of a single device, and the actual fault handling time of individual devices in the target inspection scenario; the standard total inspection time can be the sum of the standard route inspection time, the standard spot inspection time of a single device, and the standard fault handling time of individual devices in the target inspection scenario according to the preset inspection rules.
[0085] For example, when the duration difference information is less than a first duration threshold, the inspection quality result of the target inspection scene during the actual inspection process may be a qualified result; when the duration difference information is greater than the first duration threshold and less than a second duration threshold, the inspection quality result of the target inspection scene during the actual inspection process may be a slightly unqualified result; when the duration difference information is greater than the second duration threshold, the inspection quality result of the target inspection scene during the actual inspection process may be a severely unqualified result. The first duration threshold may be a critical threshold between a qualified result and an unqualified result, and the second duration threshold may be a critical threshold between a slightly unqualified result and a severely unqualified result.
[0086] In a possible manner, the time difference information is determined based on the actual total inspection time and the standard total inspection time, including:
[0087] Determine the difference between the actual inspection time and the standard inspection time;
[0088] Divide the absolute value of the duration difference by the total duration of the standard inspection to obtain the duration difference information.
[0089] It should be understood that the duration difference is the difference between the actual inspection total duration and the standard inspection total duration. The duration difference information is obtained by dividing the absolute value of the duration difference by the standard inspection total duration. The duration difference information can be the information obtained by dividing the absolute value of the duration difference by the standard inspection total duration, or the information obtained by dividing the absolute value of the duration difference by the standard inspection total duration and multiplying it by a percentage. This is not specifically limited in the embodiments of the present disclosure.
[0090] Indicatively, the specific calculation formula for obtaining the duration difference information is as follows:
[0091] Δt=|Tt| / T*100%, Δt is the time difference information, T is the total time of the standard inspection, and t is the total time of the actual inspection.
[0092] Based on this, the inspection quality result can be determined by using the duration difference information:
[0093] When Δt<10%, the inspection quality result can be considered as qualified;
[0094] When 10%<Δt<20%, the inspection quality result may be slightly unqualified;
[0095] When Δt>20%, the inspection quality result is considered to be seriously unqualified;
[0096] The first duration threshold may be 10%, and the second duration threshold may be 20%.
[0097] In a possible manner, the duration difference information can be determined based on the actual total inspection duration and the standard total inspection duration. This can be done by calculating the difference between the actual total inspection duration and the standard total inspection duration, and the difference result obtained is the duration difference information.
[0098] The inspection quality result is determined based on the duration difference information. That is, when the duration difference information is greater than a third duration threshold, the inspection quality result is determined to be an unqualified inspection result; when the duration difference information is less than the third duration threshold, the inspection quality result is determined to be a qualified inspection result. The third duration threshold may be a critical duration threshold between a qualified and unqualified inspection result.
[0099] In a possible embodiment, the target inspection scene is provided with a positioning generator and at least one positioning receiver, the positioning generator is used to locate the position of the inspection personnel and generate a positioning signal to send to the positioning receiver, the positioning receiver is used to receive the positioning signal, the actual inspection information includes the total number of positioning signals during the actual inspection process, and the standard inspection information includes the total number of positioning signals during the standard inspection process;
[0100] Based on the actual inspection information and standard inspection information, determine the inspection quality results for the target inspection scenario during the actual inspection process, including:
[0101] Determine quantity difference information based on the total number of positioning signals during the actual inspection process and the total number of positioning signals during the standard inspection process;
[0102] Based on the quantity difference information, the inspection quality results of the target inspection scene during the actual inspection process are determined.
[0103] It should be understood that in a target inspection scenario, a positioning generator and multiple positioning receivers can be set up. The positioning generator can generate a positioning signal based on the inspector's location information and send the positioning signal to the positioning receiver. A positioning receiver can receive positioning signals within a certain area and send the received positioning signals to the server. When the positioning generator is not within the area, the positioning receiver will not receive the positioning signal. When the inspector inspects the target inspection scenario, when the inspector inspects different areas, the positioning receivers corresponding to each area will send positioning signals to the server.
[0104] It should be understood that during the inspection of a target inspection scenario, if the total number of positioning signals during the actual inspection process is not significantly different from the total number of positioning signals during the standard inspection process, then the actual inspection process may be a process of inspecting the target inspection scenario in accordance with preset inspection rules. If the total number of positioning signals during the actual inspection process is significantly different from the total number of positioning signals during the standard inspection process, then the actual inspection process may be a process of not inspecting the target inspection scenario in accordance with preset inspection rules. Therefore, quantity difference information can be determined based on the total number of positioning signals during the actual inspection process and the total number of positioning signals during the standard inspection process, and the inspection quality result can be determined based on the quantity difference information.
[0105] For example, when the quantity difference information is less than a first quantity threshold, the inspection quality result for the target inspection scene during the actual inspection process may be a qualified result; when the quantity difference information is greater than the first quantity threshold and less than a second quantity threshold, the inspection quality result for the target inspection scene during the actual inspection process may be a slightly unqualified result; and when the quantity difference information is greater than the second quantity threshold, the inspection quality result for the target inspection scene during the actual inspection process may be a severely unqualified result. The first quantity threshold may be a critical quantity threshold between a qualified result and an unqualified result, and the second quantity threshold may be a critical quantity threshold between a slightly unqualified result and a severely unqualified result.
[0106] In a possible manner, determining quantity difference information based on the total number of positioning signals during the actual inspection process and the total number of positioning signals during the standard inspection process includes:
[0107] Determine the difference between the total number of positioning signals during the actual inspection and the total number of positioning signals during the standard inspection;
[0108] The absolute value of the quantity difference is divided by the total number of positioning signals during the standard inspection process to obtain the quantity difference information.
[0109] It should be understood that the quantity difference is the difference between the total number of positioning signals during an actual inspection and the total number of positioning signals during a standard inspection. The quantity difference information is obtained by dividing the absolute value of the quantity difference by the total number of positioning signals during a standard inspection. The quantity difference information can be the information obtained by dividing the absolute value of the quantity difference by the total number of positioning signals during a standard inspection, or it can be the information obtained by dividing the absolute value of the quantity difference by the total number of positioning signals during a standard inspection and then multiplying the result by a percentage. This is not specifically limited in the embodiments of the present disclosure.
[0110] In an illustrative manner, the specific calculation formula for the quantity difference information obtained by dividing the absolute value of the quantity difference by the total number of positioning signals in the standard process and then multiplying by a percentage can be:
[0111] Δm=|Mm| / M*100%, Δm is the quantity difference information, M is the total number of positioning signals during the actual inspection process, and m is the total number of positioning signals during the standard inspection process.
[0112] Based on this, the inspection quality results can be determined by the quantity difference information:
[0113] When Δm<10%, the inspection quality result can be considered as qualified;
[0114] When 10%<Δm<20%, the inspection quality result may be slightly unqualified;
[0115] When Δm>20%, the inspection quality result is considered to be seriously unqualified;
[0116] The first quantity threshold may be 10%, and the second quantity threshold may be 20%.
[0117] In a possible manner, the quantity difference information is determined based on the total number of positioning signals during the actual inspection process and the total number of positioning signals during the standard inspection process, which can be:
[0118] The difference between the total number of positioning signals during the actual inspection and the total number of positioning signals during the standard inspection is calculated, and the resulting difference is the quantity difference information. The inspection quality result is determined based on the quantity difference information. Specifically, when the quantity difference information is greater than a third quantity threshold, the inspection quality result is determined to be unqualified; when the quantity difference information is less than the third quantity threshold, the inspection quality result is determined to be qualified. The third duration threshold can be the critical quantity threshold between a qualified result and an unqualified result.
[0119] In a possible embodiment, a target inspection scene is provided with a positioning generator and at least one positioning receiver. The positioning generator is used to locate the position of the inspection personnel and generate a positioning signal to send to the positioning receiver. The positioning receiver is used to receive the positioning signal. There is a preset marked positioning receiver in the at least one positioning receiver. The method further includes:
[0120] When the actual inspection information does not include a positioning signal corresponding to the marker positioning receiver, determining the inspection quality result of the target inspection scene as a result used to indicate that the inspection is unqualified;
[0121] When the actual inspection information includes a positioning signal corresponding to the marked positioning receiver, the inspection quality result of the target inspection scene is determined to be a result used to indicate that the inspection is qualified.
[0122] It should be understood that the preset marker positioning receiver can be within the area where the marker positioning receiver can receive positioning signals, and there are devices that require long-term or temporary enhanced monitoring. When inspecting the target inspection scene, it is necessary to detect the devices within the area. Therefore, when the server does not receive the positioning signal sent by the marker positioning receiver, it can mean that the devices within the area have not been detected, and the inspection quality result can be an unqualified result; when the server receives the positioning signal sent by the positioning receiver, it can mean that the devices within the area have been detected, and the inspection quality result can be a qualified result.
[0123] The positioning generator and positioning receiver provided may be the same as the positioning generator and positioning receiver provided in the above example.
[0124] In a possible embodiment, the target inspection scene is provided with a positioning generator and at least one positioning receiver. The positioning generator is used to locate the position of the inspection personnel and generate a positioning signal to send to the positioning receiver. The positioning receiver is used to receive the positioning signal. The actual inspection information includes a reception duration, which is the duration for the positioning receiver to receive the positioning signal. The method further includes:
[0125] When the receiving time is longer than the preset time, the inspection status information is determined, and the inspection status information is the information obtained by the inspection equipment carried by the inspection personnel during the receiving time;
[0126] When the actual inspection information does not include the inspection status information, the inspection quality result of the target inspection scenario is determined to be a result indicating that the inspection is unqualified.
[0127] It should be understood that the preset duration can be the duration for detecting equipment within the area range, and the area range can be the area range in which a positioning receiver can receive positioning signals. When the reception duration is less than the preset duration, it can be considered that the inspection of the target inspection scene was not carried out seriously, and the inspection quality result is an unqualified result. When the reception duration is greater than the preset duration and the inspection status information is not uploaded to the actual inspection information, it can be considered that the quality result of the inspection of the target inspection scene is an unqualified result. Among them, the inspection status information can be information that characterizes the status characteristics of the equipment, such as the time information for detecting the equipment and the equipment operation status information. This embodiment of the present disclosure does not make specific limitations on this.
[0128] It should be understood that the positioning generator and positioning receiver provided may be the same as the positioning generator and positioning receiver provided in the above example.
[0129] In a possible manner, a database may be pre-set, and the database may be used to store actual inspection information during an actual inspection process, and the stored actual inspection information may be used for later data analysis.
[0130] In practical applications, such as Figure 2-Figure 4 The following figure shows an inspection route diagram for a production workshop with three floors. Each floor is used as a target inspection scenario area, and the equipment in the target inspection scenario is inspected. The three floors are divided into three areas: Area N1, Area N2, and Area N3.
[0131] Figure 2 FIG. 1 is a schematic diagram showing the layout of N1 area equipment and operation points according to an exemplary embodiment of the present disclosure. Figure 2 As can be seen, the devices requiring inspection include devices C, D, and E. The work points are located on both sides of the devices, around the perimeter, and between adjacent devices. An inspection process can be performed starting from work point 1 and continuing to work point 18. During this inspection process, the information obtained through inspections according to the pre-set inspection rules is called standard inspection information, while the information obtained through actual inspections is called actual inspection information.
[0132] Figure 3 FIG. 1 is a schematic diagram showing the layout of N2 area equipment and operation points according to an exemplary embodiment of the present disclosure. Figure 3 As can be seen, the devices requiring inspection include devices F, G, H, I, J, and K. Inspection points are located on both sides of the devices, around the perimeter, and between adjacent devices. An inspection process can start at point 20 and end at point 36. During this inspection process, the information obtained through inspections performed according to pre-set inspection rules is called standard inspection information, while the information obtained through actual inspections is called actual inspection information.
[0133] Figure 4 FIG. 1 is a schematic diagram showing the layout of N3 area equipment and operation points according to an exemplary embodiment of the present disclosure. Figure 4 As can be seen, the devices to be inspected include Device A and Device B, with work points located on both sides of the devices and between them. An inspection process can start at Work Point 50 and end at Work Point 56. During this inspection process, the information obtained by performing inspections according to the preset inspection rules is called standard inspection information, while the information obtained during actual inspections is called actual inspection information.
[0134] Figure 5 1 is a block diagram of an inspection result prompting device according to an exemplary embodiment. Figure 5 , including a first information acquisition module, a second information acquisition module and a determination module;
[0135] The first information acquisition module is used to obtain actual inspection information for the target inspection scene during the actual inspection process;
[0136] The second information acquisition module is used to obtain standard inspection information, which is inspection information obtained by inspecting the target inspection scene according to preset inspection rules;
[0137] The determination module is used to determine the inspection quality result of the target inspection scene during the actual inspection process based on the actual inspection information and the standard inspection information, and output the inspection result prompt information according to the inspection quality result.
[0138] Optionally, the determination module includes:
[0139] The first determination submodule is used to determine the time difference information based on the actual inspection total time and the standard inspection total time;
[0140] The second determination submodule is used to determine the inspection quality result of the target inspection scene during the actual inspection process according to the time difference information.
[0141] Optionally, the first determining submodule includes:
[0142] The first calculation module is used to determine the difference between the actual inspection total time and the standard inspection total time;
[0143] The second calculation module is used to divide the absolute value of the duration difference by the total duration of the standard inspection to obtain duration difference information.
[0144] Optionally, the target inspection scene is provided with a positioning generator and at least one positioning receiver, the positioning generator is used to locate the position of the inspection personnel and generate a positioning signal to send to the positioning receiver, the positioning receiver is used to receive the positioning signal, the actual inspection information includes the total number of positioning signals during the actual inspection process, and the standard inspection information includes the total number of positioning signals during the standard inspection process;
[0145] The determination module also includes:
[0146] A third determining submodule is configured to determine quantity difference information based on the total number of positioning signals during the actual inspection process and the total number of positioning signals during the standard inspection process;
[0147] The fourth determination submodule is used to determine the inspection quality result of the target inspection scene during the actual inspection process according to the quantity difference information.
[0148] Optionally, the third determining submodule includes:
[0149] A third calculation module is used to determine the difference between the total number of positioning signals during the actual inspection process and the total number of positioning signals during the standard inspection process;
[0150] The fourth calculation module is used to divide the absolute value of the quantity difference by the total number of positioning signals in the standard inspection process to obtain quantity difference information.
[0151] Optionally, the target inspection scene is provided with a positioning generator and at least one positioning receiver, the positioning generator is used to locate the position of the inspection personnel and generate a positioning signal to send to the positioning receiver, the positioning receiver is used to receive the positioning signal, and there is a preset marked positioning receiver in the at least one positioning receiver, and the device further includes:
[0152] A fifth determining submodule, configured to determine, when the actual inspection information does not include a positioning signal corresponding to the marker positioning receiver, that the inspection quality result of the target inspection scene is a result indicating that the inspection is unqualified;
[0153] The sixth determining submodule is configured to determine, when the actual inspection information includes a positioning signal corresponding to the marking positioning receiver, that the inspection quality result of the target inspection scene is a result used to indicate that the inspection is qualified.
[0154] Optionally, the target inspection scene is provided with a positioning generator and at least one positioning receiver, the positioning generator is used to locate the position of the inspection personnel and generate a positioning signal to send to the positioning receiver, the positioning receiver is used to receive the positioning signal, the actual inspection information includes a reception duration, and the reception duration is the duration for the positioning receiver to receive the positioning signal. The device further includes:
[0155] A seventh determination submodule is configured to determine inspection status information when the reception time is greater than a preset time, where the inspection status information is information obtained by the inspection equipment carried by the inspection personnel during the reception time;
[0156] The eighth determining submodule is configured to determine, when the actual inspection information does not include the inspection status information, that the inspection quality result of the target inspection scenario is a result indicating that the inspection is unqualified.
[0157] Regarding the apparatus in the above embodiment, the specific manner in which each module performs operations has been described in detail in the embodiment of the method, and will not be elaborated here.
[0158] The present disclosure also provides a non-transitory computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the steps of the inspection result prompting method provided by the present disclosure.
[0159] The present disclosure also provides an electronic device, comprising:
[0160] a memory having a computer program stored thereon;
[0161] The processor is used to execute the computer program in the memory to implement the steps of the inspection result prompt method provided by the present disclosure.
[0162] Figure 6 6 is a block diagram of an electronic device 600 according to an exemplary embodiment. For example, the electronic device 600 can be provided as a server. Figure 6 The electronic device 600 includes a processor 622, which may be one or more, and a memory 632 for storing a computer program executable by the processor 622. The computer program stored in the memory 632 may include one or more modules, each corresponding to a set of instructions. In addition, the processor 622 may be configured to execute the computer program to perform the above-mentioned inspection result notification method.
[0163] In addition, the electronic device 600 may further include a power supply component 626 and a communication component 650. The power supply component 626 may be configured to perform power management of the electronic device 600, and the communication component 650 may be configured to implement communication, such as wired or wireless communication, of the electronic device 600. In addition, the electronic device 600 may further include an input / output (I / O) interface 658. The electronic device 600 may operate based on an operating system stored in the memory 632.
[0164] In another exemplary embodiment, a computer-readable storage medium including program instructions is further provided. When executed by a processor, the program instructions implement the steps of the above-described inspection result notification method. For example, the non-transitory computer-readable storage medium may be the aforementioned memory 632 including the program instructions. The program instructions may be executed by the processor 622 of the electronic device 600 to implement the above-described inspection result notification method.
[0165] In another exemplary embodiment, a computer program product is further provided. The computer program product includes a computer program that can be executed by a programmable device. The computer program has a code portion for executing the above inspection result prompting method when executed by the programmable device.
[0166] The preferred embodiments of the present disclosure are described in detail above in conjunction with the accompanying drawings. However, the present disclosure is not limited to the specific details of the above embodiments. Within the technical concept of the present disclosure, various simple modifications can be made to the technical solutions of the present disclosure, and these simple modifications all fall within the scope of protection of the present disclosure.
[0167] In addition, the various embodiments of the present disclosure may be arbitrarily combined, and as long as they do not violate the concept of the present disclosure, they should also be regarded as the contents disclosed by the present disclosure.
Claims
1. A method for prompting inspection results, characterized in that: The method comprises: Obtain actual inspection information for the target inspection scenario during the actual inspection process; Obtaining standard inspection information, where the standard inspection information is inspection information obtained by inspecting the target inspection scene according to preset inspection rules; Determine, based on the actual inspection information and the standard inspection information, an inspection quality result of the target inspection scene during the actual inspection process, and output inspection result prompt information based on the inspection quality result; The target inspection scene is provided with a positioning generator and at least one positioning receiver, the positioning generator is used to locate the position of the inspection personnel and generate a positioning signal to send to the positioning receiver, the positioning receiver is used to receive the positioning signal, the actual inspection information includes the total number of the positioning signals during the actual inspection process, and the standard inspection information includes the total number of the positioning signals during the standard inspection process; The determining, according to the actual inspection information and the standard inspection information, an inspection quality result of the target inspection scene during the actual inspection process includes: Determining quantity difference information based on the total number of positioning signals during the actual inspection process and the total number of positioning signals during the standard inspection process; An inspection quality result of the target inspection scene during the actual inspection process is determined according to the quantity difference information.
2. The method according to claim 1, characterized in that The actual inspection information includes the total actual inspection duration, and the standard inspection information includes the total standard inspection duration: The determining, according to the actual inspection information and the standard inspection information, an inspection quality result of the target inspection scene during the actual inspection process includes: Determine the time difference information based on the actual inspection time and the standard inspection time; An inspection quality result of the target inspection scene during the actual inspection process is determined according to the duration difference information.
3. The method according to claim 2, characterized in that The determining of the time difference information based on the actual inspection total time and the standard inspection total time includes: Determine the difference between the actual inspection total time and the standard inspection total time; The absolute value of the duration difference is divided by the total duration of the standard inspection to obtain duration difference information.
4. The method according to claim 1, wherein The determining of quantity difference information according to the total number of positioning signals during the actual inspection process and the total number of positioning signals during the standard inspection process includes: Determine the difference between the total number of positioning signals during the actual inspection process and the total number of positioning signals during the standard inspection process; The absolute value of the quantity difference is divided by the total number of positioning signals during the standard inspection process to obtain quantity difference information.
5. The method according to any one of claims 1 to 3, characterized in that: The target inspection scene is provided with a positioning generator and at least one positioning receiver, wherein the positioning generator is used to locate the position of the inspection personnel and generate a positioning signal to be sent to the positioning receiver, and the positioning receiver is used to receive the positioning signal, and a preset marked positioning receiver is included in the at least one positioning receiver. The method further includes: When the actual inspection information does not include the positioning signal corresponding to the marker positioning receiver, determining that the inspection quality result of the target inspection scene is a result used to indicate that the inspection is unqualified; When the actual inspection information includes the positioning signal corresponding to the marker positioning receiver, it is determined that the inspection quality result of the target inspection scene is a result used to indicate that the inspection is qualified.
6. The method according to any one of claims 1 to 3, characterized in that: The target inspection scene is provided with a positioning generator and at least one positioning receiver, the positioning generator is used to locate the position of the inspection personnel and generate a positioning signal to send to the positioning receiver, the positioning receiver is used to receive the positioning signal, the actual inspection information includes a reception duration, and the reception duration is the duration for the positioning receiver to receive the positioning signal. The method further includes: When the receiving time is longer than a preset time, determining inspection status information, the inspection status information being information obtained by the inspection equipment carried by the inspection personnel during the receiving time; When the actual inspection information does not include the inspection status information, it is determined that the inspection quality result of the target inspection scenario is a result used to indicate that the inspection is unqualified.
7. A patrol inspection result prompting device, characterized in that: It includes a first information acquisition module, a second information acquisition module and a determination module; The first information acquisition module is used to obtain actual inspection information for the target inspection scene during the actual inspection process; The second information acquisition module is used to acquire standard inspection information, where the standard inspection information is inspection information acquired by inspecting the target inspection scene according to preset inspection rules; The determination module is configured to determine an inspection quality result of the target inspection scene during the actual inspection process based on the actual inspection information and the standard inspection information, and output inspection result prompt information based on the inspection quality result; The target inspection scene is provided with a positioning generator and at least one positioning receiver, the positioning generator is used to locate the position of the inspection personnel and generate a positioning signal to send to the positioning receiver, the positioning receiver is used to receive the positioning signal, the actual inspection information includes the total number of the positioning signals during the actual inspection process, and the standard inspection information includes the total number of the positioning signals during the standard inspection process; The determination module includes: A third determining submodule is configured to determine quantity difference information based on the total number of positioning signals during the actual inspection process and the total number of positioning signals during the standard inspection process; The fourth determining submodule is configured to determine an inspection quality result of the target inspection scene during the actual inspection process according to the quantity difference information.
8. A non-transitory computer-readable storage medium having a computer program stored thereon, characterized in that: When the program is executed by a processor, the steps of the method according to any one of claims 1 to 6 are implemented.
9. An electronic device, characterized in that: include: a memory having a computer program stored thereon; A processor, configured to execute the computer program in the memory to implement the steps of the method according to any one of claims 1 to 6.
Citation Information
Patent Citations
Forest inspection personnel management method, intelligent terminal and storage medium
CN115759868A