Process circulation control method and device, medium and program product

By adopting electronic communication methods in the production equipment maintenance process of mining enterprises, the automated flow of three brands is realized, which solves the problem of low process flow efficiency in existing technologies and improves the efficiency and safety of equipment maintenance.

CN120598505APending Publication Date: 2025-09-05SHOUGANG LUANNAN MACHENG MINING CO LTD
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Patent Information

Application Number
CN202510812462.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-18
Publication Date
2025-09-05

AI Technical Summary

Technical Problem

In the existing technology, physical power outage signs, operation signs and power supply signs are manually registered, collected and returned, resulting in low process efficiency, registration errors and excessive equipment downtime.

Method used

Electronic communication is adopted between the inspection terminal, maintenance terminal, electrician terminal, smart cabinet terminal and dispatching platform to realize the collection, recording and return of the three cards, reduce manual intervention and improve process flow efficiency.

Benefits of technology

Electronic communication has improved the efficiency of the three-plate circulation, reduced registration errors, shortened equipment downtime, and improved equipment maintenance efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a process circulation control method and device, a medium and a program product, and the method comprises the steps: a scheduling platform receives a maintenance task generated by a point inspection device, and forwards the maintenance task to a maintenance terminal corresponding to the maintenance task; the maintenance terminal generates a power failure application instruction of to-be-maintained equipment corresponding to the maintenance task, and sends the power failure application instruction to the scheduling platform; and after determining that the to-be-overhauled equipment stops running, the dispatching platform approves the power failure application instruction and sends an electronic power failure board to the electrician terminal or the intelligent cabinet terminal after approval is passed, so that the electrician terminal or the intelligent cabinet terminal executes power failure operation of the to-be-overhauled equipment. According to the invention, the method employs the electronic communication mode among the point inspection terminal, the maintenance terminal, the electrician terminal, the intelligent cabinet terminal and the scheduling platform to achieve the receiving, recording and returning of the three cards, avoids the queuing handling of the three entity cards, greatly improves the circulation efficiency of the three cards, and improves the equipment maintenance efficiency.
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Description

Technical Field

[0001] The present invention relates to the technical field of equipment maintenance processes, and in particular to a process flow control method, equipment, medium and program product. Background Art

[0002] Mining companies are entities engaged in mineral resource exploration, mining, beneficiation, and related business activities, forming a core link in the mining industry chain. Mining companies' production processes involve numerous production equipment, which are subject to processes such as power outages for maintenance and power supply continuity. Related technologies primarily use the collection and return of physical power outage signs, physical operation signs, and physical power supply signs to demarcate the start and end of these processes. However, this method primarily relies on manual registration, collection, and return of items, resulting in low process efficiency. Therefore, improving process efficiency is a pressing issue. Summary of the Invention

[0003] The embodiments of the present application solve the technical problem in the prior art of low process flow efficiency caused by manual registration, collection and return, by providing a process flow control method, equipment, medium and program product, thereby achieving the technical effect of improving process flow efficiency.

[0004] In a first aspect, the present application provides a process flow control method, which is applied to a dispatching system, wherein the dispatching system includes an inspection terminal, a maintenance terminal, an electrician terminal, an intelligent cabinet terminal, and a dispatching platform, wherein the inspection terminal, the maintenance terminal, the electrician terminal, and the intelligent cabinet terminal respectively communicate with the dispatching platform, and the method includes:

[0005] The scheduling platform receives the maintenance task generated by the inspection device and forwards it to the maintenance terminal corresponding to the maintenance task;

[0006] The maintenance terminal generates a power outage request instruction for the equipment to be maintained corresponding to the maintenance task and sends it to the scheduling platform;

[0007] After determining that the equipment to be repaired has stopped running, the scheduling platform approves the power outage application instruction, and after approval, sends an electronic power outage sign to the electrician terminal or the smart cabinet terminal, so that the electrician terminal or the smart cabinet terminal executes the power outage operation of the equipment to be repaired.

[0008] Furthermore, after determining that the equipment to be repaired has stopped operating, the dispatching platform approves the power outage application instruction, and after approval, sends an electronic power outage sign to the electrician terminal or the smart cabinet terminal, so that the electrician terminal or the smart cabinet terminal executes the power outage operation of the equipment to be repaired, including:

[0009] When the dispatching platform determines that the electric control device of the equipment to be repaired corresponding to the maintenance task is the smart cabinet terminal, and after determining that the equipment to be repaired has stopped running, the dispatching platform approves the power outage application instruction, and after approval, sends the electronic power outage sign to the smart cabinet terminal, so that the smart cabinet terminal executes the power outage operation of the equipment to be repaired;

[0010] When the scheduling platform determines that the electrical control device of the equipment to be repaired corresponding to the maintenance task is the electrician terminal, after determining that the equipment to be repaired has stopped running, it approves the power outage application instruction, and after approval, sends the electronic power outage sign to the electrician terminal, so that the electrician terminal executes the power outage operation of the equipment to be repaired.

[0011] Furthermore, after determining that the equipment to be repaired has stopped operating, the dispatching platform approves the power outage application instruction, and after approval, sends an electronic power outage sign to the electrician terminal or the smart cabinet terminal, so that the electrician terminal or the smart cabinet terminal executes the power outage operation of the equipment to be repaired, including:

[0012] After determining that the equipment to be repaired and the associated equipment linked to the equipment to be repaired have stopped running, the scheduling platform approves the power outage application instruction, and after approval, sends an electronic power outage sign to the electrician terminal or the smart cabinet terminal, so that the electrician terminal or the smart cabinet terminal executes the power outage operation of the equipment to be repaired and the associated equipment linked to the equipment to be repaired.

[0013] Furthermore, after the electrician terminal or the smart cabinet terminal performs a power-off operation on the equipment to be repaired, the method further includes:

[0014] The dispatching platform sends an electronic operation card and an electronic power supply card corresponding to the equipment to be repaired to the maintenance terminal to remind the holder of the maintenance terminal to perform maintenance operations on the equipment to be repaired.

[0015] Furthermore, after the electrician terminal or the smart cabinet terminal performs a power-off operation on the equipment to be repaired, the method further includes:

[0016] The dispatching platform receives the electronic operation card and the electronic power transmission card returned by the maintenance terminal to determine that the maintenance operation of the equipment to be maintained is completed, and sends the electronic power transmission card to the electrician terminal or the smart cabinet terminal;

[0017] After receiving the electronic power supply card, the electrician terminal or the smart cabinet terminal performs a power supply operation for the equipment to be repaired;

[0018] The electrician terminal or the smart cabinet terminal returns the electronic power outage sign to the dispatching platform.

[0019] Furthermore, after the electrician terminal or the smart cabinet terminal performs a power-off operation on the equipment to be repaired, the method further includes:

[0020] The maintenance terminal sends the image data of the equipment to be maintained after the maintenance operation is completed to the scheduling platform.

[0021] Furthermore, after the electrician terminal or the smart cabinet terminal performs a power-off operation on the equipment to be repaired, the method further includes:

[0022] If the electrician terminal performs a power-off operation on the equipment to be repaired, the electrician terminal sends image data of the equipment to be repaired and a power-off warning sign matching the equipment to be repaired to the dispatching platform;

[0023] If the smart cabinet terminal performs a power-off operation on the equipment to be repaired, the smart cabinet terminal sends power-off status information of the equipment to be repaired to the scheduling platform.

[0024] In a second aspect, the present application provides an electronic device, comprising:

[0025] processor;

[0026] a memory for storing instructions executable by the processor;

[0027] The processor is configured to execute to implement a process flow control method provided in the first aspect.

[0028] In a third aspect, the present application provides a non-temporary computer-readable storage medium. When the instructions in the storage medium are executed by a processor of an electronic device, the electronic device is enabled to execute a process flow control method as provided in the first aspect.

[0029] In a fourth aspect, the present application provides a computer program product, comprising computer instructions, which are executed by a processor to implement a process flow control method as provided in the first aspect.

[0030] One or more technical solutions provided in the embodiments of this application have at least the following technical effects or advantages:

[0031] An embodiment of the present application provides a process flow control method, which is applied to a scheduling system, wherein the scheduling system includes an inspection terminal, a maintenance terminal, an electrician terminal, an intelligent cabinet terminal and a scheduling platform, wherein the inspection terminal, the maintenance terminal, the electrician terminal and the intelligent cabinet terminal respectively communicate with the scheduling platform, and the method includes: the scheduling platform receives the maintenance task generated by the inspection equipment and forwards it to the maintenance terminal corresponding to the maintenance task; the maintenance terminal generates a power outage application instruction for the equipment to be repaired corresponding to the maintenance task and sends it to the scheduling platform; after determining that the equipment to be repaired has stopped running, the scheduling platform approves the power outage application instruction, and after approval, sends an electronic power outage sign to the electrician terminal or the intelligent cabinet terminal, so that the electrician terminal or the intelligent cabinet terminal performs the power outage operation of the equipment to be repaired. It can be seen that the embodiment of the present application circumvents the method of manually collecting, recording, and returning the three cards used in the related art, and instead uses electronic communication between the inspection terminal, maintenance terminal, electrician terminal, smart cabinet terminal, and dispatching platform to realize the collection, recording, and return of the three cards, avoiding the queueing for the physical three cards, which greatly improves the efficiency of the three-card circulation, and thus improves the efficiency of equipment maintenance. The collection, recording, and return of the three cards through electronic communication can reduce the degree of manual intervention in the three-card circulation process, reduce the probability of registration errors, and improve safety during the maintenance process. The dispatching platform can coordinate the status information of the inspection terminal, maintenance terminal, electrician terminal, smart cabinet terminal, and the equipment to be repaired, and thus can timely understand the on-site maintenance progress and maintenance status, reduce the length of equipment downtime, and improve the operating efficiency of production equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following is a brief introduction to the drawings required for use in the description of the embodiments. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0033] Figure 1 A flowchart of a process flow control method provided in an embodiment of the present application;

[0034] Figure 2 A schematic diagram of the structure of an electronic device provided in an embodiment of the present application. DETAILED DESCRIPTION

[0035] The embodiment of the present application solves the technical problem in the prior art of low process flow efficiency caused by manual registration, collection and return, by providing a process flow control method.

[0036] The technical solution of the embodiment of the present application is to solve the above technical problems, and the overall idea is as follows:

[0037] An embodiment of the present application provides a process flow control method, which is applied to a scheduling system, wherein the scheduling system includes an inspection terminal, a maintenance terminal, an electrician terminal, an intelligent cabinet terminal and a scheduling platform, wherein the inspection terminal, the maintenance terminal, the electrician terminal and the intelligent cabinet terminal respectively communicate with the scheduling platform, and the method includes: the scheduling platform receives the maintenance task generated by the inspection equipment and forwards it to the maintenance terminal corresponding to the maintenance task; the maintenance terminal generates a power outage application instruction for the equipment to be repaired corresponding to the maintenance task and sends it to the scheduling platform; after determining that the equipment to be repaired has stopped running, the scheduling platform approves the power outage application instruction, and after approval, sends an electronic power outage sign to the electrician terminal or the intelligent cabinet terminal, so that the electrician terminal or the intelligent cabinet terminal performs the power outage operation of the equipment to be repaired. It can be seen that the embodiment of the present application circumvents the method of manually collecting, recording, and returning the three cards used in the related art, and instead uses electronic communication between the inspection terminal, maintenance terminal, electrician terminal, smart cabinet terminal, and dispatching platform to realize the collection, recording, and return of the three cards, avoiding the queueing for the physical three cards, which greatly improves the efficiency of the three-card circulation, and thus improves the efficiency of equipment maintenance. The collection, recording, and return of the three cards through electronic communication can reduce the degree of manual intervention in the three-card circulation process, reduce the probability of registration errors, and improve safety during the maintenance process. The dispatching platform can coordinate the status information of the inspection terminal, maintenance terminal, electrician terminal, smart cabinet terminal, and the equipment to be repaired, and thus can timely understand the on-site maintenance progress and maintenance status, reduce the length of equipment downtime, and improve the operating efficiency of production equipment.

[0038] In order to better understand the above technical solution, the above technical solution will be described in detail below with reference to the accompanying drawings and specific implementation methods.

[0039] First, the term "and / or" as used herein simply describes a relationship between associated objects, indicating that three possible relationships exist. For example, "A and / or B" can represent: A alone, A and B together, or B alone. Furthermore, the character " / " in this document generally indicates an "or" relationship between the associated objects.

[0040] Mining companies are entities engaged in mineral resource exploration, mining, beneficiation, and related business activities, forming the core link in the mining industry chain. Mining companies' production processes involve numerous pieces of equipment, which are subject to processes such as power outages for maintenance and power-on for continued operation.

[0041] In the relevant technology, the collection and return of physical power-off signs, physical operation signs, and physical power-on signs are mainly used to define the start or end of processes such as power-off maintenance and power-on continuation. For example, when the equipment is running or on standby: the physical power-on sign is hung on the equipment switch in the distribution room, and the physical operation sign and physical power-off sign are hung on the equipment area corresponding to the three-sign circulation display board in the post room, and the record of taking and returning the sign is manually registered. When the equipment is in power-off maintenance status: the power-off sign is hung on the equipment switch in the distribution room, and the power-on sign is hung on the equipment area corresponding to the three-sign circulation display board in the post room, and the record of taking and returning the sign is manually registered. The operation sign represents the right to operate the equipment, and the operation sign must be held to start the operation of the equipment.

[0042] The above method has the following problems, including:

[0043] The efficiency of the three-card circulation is low. During maintenance periods, many devices need to be shut down, and manually obtaining physical power outage cards, physical operation cards, and physical power supply cards requires queuing, resulting in low collection efficiency and low equipment maintenance efficiency.

[0044] Manual registration of license plate pick-up and return records is required, which is prone to errors. Manual registration requires recording information such as the purpose and time of the person taking and returning the license plate. If there are cross-construction points, cross-registration is required, which is prone to registration errors.

[0045] Dispatching workers were unable to keep up with construction progress, resulting in prolonged equipment downtime and reduced production efficiency. After on-site construction was complete, licensed repair personnel had to walk from the production site to the dispatching room, a lengthy journey that prevented workers in the centralized control office from timely monitoring of construction progress, extending equipment maintenance time.

[0046] In order to solve the above problems, an embodiment of the present application provides a process flow control method, which is mainly used in a scheduling system. The scheduling system includes an inspection terminal, a maintenance terminal, an electrician terminal, an intelligent cabinet terminal and a scheduling platform. The inspection terminal, the maintenance terminal, the electrician terminal and the intelligent cabinet terminal communicate with the scheduling platform respectively.

[0047] Among them, the inspection terminal is used by inspection personnel. Its function is to input the inspection terminal into the inspection terminal to generate a maintenance task if they find equipment requiring maintenance during their inspections, and then send it to the dispatch platform. The maintenance terminal, primarily used by maintenance personnel, is used to query or receive maintenance tasks, send power outage request instructions to the dispatch platform, receive electronic power transmission and operation cards issued by the dispatch platform, and take photos of the maintenance site. The electrician terminal, primarily used by electricians, is used to receive electronic power outage and power transmission cards to perform power outage and power transmission operations, as well as to take photos of the power outage or power transmission operations. The smart cabinet terminal is used to receive electronic power outage and power transmission cards to perform power outage and power transmission operations. The dispatch platform communicates with the inspection terminal, maintenance terminal, electrician terminal, and smart cabinet terminal to maintain a timely understanding of the actual situation in each terminal's scenario.

[0048] There can be multiple inspection terminals, maintenance terminals, electrician terminals, and smart cabinet terminals. Each inspection device, maintenance terminal, electrician terminal, and smart cabinet terminal can correspond to one or more production equipment. For example, a factory area has 100 production equipment (of the same or different types), numbered 1-100. Production equipment numbered 1-15 is managed by inspection device A1, maintenance terminal A2, electrician terminal A3, and smart cabinet terminal A4.

[0049] The embodiment of the present application provides a process flow control method, which mainly includes steps S11 to S13. Figure 1 .

[0050] Step S11: the scheduling platform receives the maintenance task generated by the inspection device and forwards it to the maintenance terminal corresponding to the maintenance task;

[0051] Step S12: the maintenance terminal generates a power outage request instruction for the equipment to be maintained corresponding to the maintenance task, and sends it to the scheduling platform;

[0052] In step S13, after determining that the equipment to be repaired has stopped running, the dispatching platform approves the power outage application instruction, and after approval, sends an electronic power outage sign to the electrician terminal or the smart cabinet terminal, so that the electrician terminal or the smart cabinet terminal executes the power outage operation of the equipment to be repaired.

[0053] Regarding step S11, the scheduling platform receives the maintenance task generated by the inspection equipment and forwards it to the maintenance terminal corresponding to the maintenance task.

[0054] During the inspection process, if the inspection personnel find equipment that needs maintenance, they will edit the relevant information in the inspection equipment and then generate a maintenance task. Maintenance tasks can be divided into planned maintenance and unplanned maintenance. For planned maintenance, the inspection personnel can generate a maintenance plan from the maintenance work order, or they can import the maintenance plan into the scheduling platform in batches. Unplanned maintenance is entered into the scheduling platform by the scheduling item of the inspection equipment. The maintenance task can include the equipment to be repaired, the items to be repaired, the maintenance standards, the construction person in charge, the construction unit, the person in charge, whether a chain power outage is required, related equipment, the start and end time of the power outage, whether a test run is required, etc.

[0055] After the inspection equipment generates a maintenance task, it is sent to the scheduling platform. The scheduling platform stores the maintenance task locally and forwards it to the maintenance terminal corresponding to the maintenance task for query by the maintenance personnel at the maintenance terminal.

[0056] Regarding step S12, the maintenance terminal generates a power outage request instruction for the equipment to be maintained corresponding to the maintenance task, and sends it to the scheduling platform.

[0057] When the maintenance personnel at the maintenance terminal determine that the maintenance task needs to be performed, they can generate a power outage request instruction through the maintenance terminal. Specifically, when the maintenance terminal receives the trigger signal of the power outage request instruction triggered by the maintenance personnel, a password input box can pop up on the maintenance terminal interface; the maintenance terminal receives and enters the password of the maintenance personnel. If the password is verified, the maintenance terminal generates a power outage request instruction and sends it to the dispatch platform.

[0058] The power outage application instruction may include the number of the maintenance terminal that generates the instruction, the account of the person who triggers the generation of the instruction, the start time and end time of the power outage, the reason for the power outage, the number of the equipment to be repaired, the number and status of the associated equipment linked to the equipment to be repaired, etc.

[0059] Regarding step S13, after determining that the equipment to be repaired has stopped running, the scheduling platform approves the power outage application instruction, and after approval, sends an electronic power outage sign to the electrician terminal or the smart cabinet terminal, so that the electrician terminal or the smart cabinet terminal executes the power outage operation of the equipment to be repaired.

[0060] If the equipment to be repaired needs to be repaired, a power outage is required. Before the power outage, it is also necessary to ensure that the equipment to be repaired has stopped running, so as to minimize the probability of damage to the equipment due to sudden power outage, so as to minimize the risk of equipment damage.

[0061] After determining that the equipment to be repaired has stopped running, the dispatching platform reviews the power outage application instruction for the equipment to be repaired. If approved, an electronic power outage sign is sent to the electrician terminal or the smart cabinet terminal, so that the electrician terminal or the smart cabinet terminal executes the power outage operation of the equipment to be repaired.

[0062] Specifically, both the electrician terminal and the smart cabinet terminal can perform power outage operations. The electrician terminal is suitable for ordinary distribution cabinets that require manual power outage and power supply, while the smart cabinet terminal can automatically operate power outage and power supply.

[0063] When the scheduling platform determines that the electrical control device of the equipment to be repaired corresponding to the maintenance task is the smart cabinet terminal, after determining that the equipment to be repaired has stopped running, it approves the power outage application instruction, and after approval, sends the electronic power outage sign to the smart cabinet terminal, so that the smart cabinet terminal executes the power outage operation of the equipment to be repaired.

[0064] When the dispatching platform determines that the electrical control device of the equipment to be repaired corresponding to the maintenance task is the electrician terminal, and after determining that the equipment to be repaired has stopped operating, it approves the power outage application instruction and, after approval, sends the electronic power outage sign to the electrician terminal, causing the electrician terminal to execute the power outage operation of the equipment to be repaired. Specifically, the electrician terminal executes the power outage operation of the equipment to be repaired, which specifically means that after the holder of the electrician terminal receives the prompt from the electrician terminal that allows the power outage, the holder of the electrician terminal manually performs the power outage operation, and then edits the power outage result in the electrician terminal, which then sends the power outage result to the dispatching platform.

[0065] Furthermore, a maintenance task can involve more than one device to be repaired, as well as other associated devices that may be operationally linked to the device to be repaired. Although the associated devices may not require maintenance, they must still be shut down and powered off to minimize their negative impact on the device to be repaired and ensure its safety during the maintenance process.

[0066] Therefore, step S13 can also specifically include: after the scheduling platform determines that the equipment to be repaired and the associated equipment linked to the equipment to be repaired have stopped running, the scheduling platform approves the power outage application instruction, and after approval, sends an electronic power outage sign to the electrician terminal or the smart cabinet terminal, so that the electrician terminal or the smart cabinet terminal executes the power outage operation of the equipment to be repaired and the associated equipment linked to the equipment to be repaired.

[0067] Among them, the electronic power-off sign is associated with the equipment to be repaired. The maintenance terminal that receives the electronic power-off sign and other maintenance terminals can query the equipment to be repaired and its corresponding electronic power-off sign, so that the holders corresponding to each maintenance terminal can know the power-off status of the equipment to be repaired.

[0068] After the electrician terminal or the smart cabinet terminal performs a power-off operation on the equipment to be repaired, the method further includes: the dispatching platform sends an electronic operation card and an electronic power supply card corresponding to the equipment to be repaired to the maintenance terminal to remind the holder of the maintenance terminal to perform maintenance operations on the equipment to be repaired.

[0069] The electronic operation card is the holder of the maintenance terminal's qualification certificate to perform maintenance on the equipment under maintenance. Only maintenance personnel holding the electronic operation card can perform maintenance on the equipment under maintenance. The electronic power supply card is used by maintenance personnel to supply power to the equipment after completing the maintenance operation.

[0070] After the electrician terminal or the smart cabinet terminal performs the power outage operation of the equipment to be repaired, the method further includes: the dispatching platform receives the electronic operation card and the electronic power transmission card returned by the maintenance terminal to determine that the maintenance operation of the equipment to be repaired is completed, and sends the electronic power transmission card to the electrician terminal or the smart cabinet terminal. Specifically, when the maintenance terminal receives the trigger signal of the power transmission instruction triggered by the maintenance personnel, a password input box can pop up on the interface of the maintenance terminal; the maintenance terminal receives and enters the password of the maintenance personnel. If the password is verified, the maintenance terminal generates a power transmission instruction and sends the power transmission application instruction to the dispatching platform. It can be seen that in the embodiment of the present application, the circulation records of the electronic operation card and the electronic power transmission card are chained to ensure that they cannot be tampered with. A two-way confirmation mechanism (return of the card by the maintenance terminal and platform verification) is used to avoid unfinished forced power transmission. Electronic records provide audit basis to meet the requirements of production safety supervision. The state machine automatically triggers subsequent processes (such as the issuance of power transmission instructions) to reduce manual intervention delays.

[0071] After receiving the electronic power-on sign, the electrician terminal or the smart cabinet terminal performs a power-on operation for the equipment to be repaired. The electrician terminal or the smart cabinet terminal returns the electronic power-off sign to the dispatching platform. The maintenance terminal transmits image data of the equipment to be repaired after the maintenance operation is completed to the dispatching platform.

[0072] After the electrician terminal or the smart cabinet terminal performs a power-off operation on the equipment to be repaired, the method further includes:

[0073] If the electrician terminal performs a power-off operation on the equipment to be repaired, the electrician terminal sends image data of the equipment to be repaired and the power-off warning sign matching the equipment to be repaired to the scheduling platform; the image data can be used by the staff of the scheduling platform for query and archiving to ensure the safety of on-site construction.

[0074] If the smart cabinet terminal performs a power-off operation on the equipment to be repaired, the smart cabinet terminal sends power-off status information of the equipment to be repaired to the scheduling platform.

[0075] To sum up, the embodiment of the present application provides a process flow control method, which is applied to a scheduling system, wherein the scheduling system includes an inspection terminal, a maintenance terminal, an electrician terminal, a smart cabinet terminal and a scheduling platform, and the inspection terminal, the maintenance terminal, the electrician terminal and the smart cabinet terminal communicate with the scheduling platform respectively. The method includes: the scheduling platform receives the maintenance task generated by the inspection equipment and forwards it to the maintenance terminal corresponding to the maintenance task; the maintenance terminal generates a power outage application instruction for the equipment to be repaired corresponding to the maintenance task, and sends it to the scheduling platform; after determining that the equipment to be repaired has stopped running, the scheduling platform approves the power outage application instruction, and after approval, sends an electronic power outage sign to the electrician terminal or the smart cabinet terminal, so that the electrician terminal or the smart cabinet terminal performs the power outage operation of the equipment to be repaired. It can be seen that the embodiment of the present application avoids the manual collection, recording, and return of the three cards used in the relevant technology, and instead uses electronic communication between the inspection terminal, maintenance terminal, electrician terminal, smart cabinet terminal and scheduling platform to realize the collection, recording, and return of the three cards, avoiding the queue for the physical three cards, which greatly improves the efficiency of the three-card circulation, and thus improves the efficiency of equipment maintenance. The collection, recording, and return of the three cards through electronic communication can reduce the degree of manual intervention in the three-card circulation process, reduce the probability of registration errors, and improve the safety of the maintenance process. The scheduling platform can coordinate the status information of the inspection terminal, maintenance terminal, electrician terminal, smart cabinet terminal and the equipment to be repaired, and thus can timely understand the maintenance progress and maintenance status on site, reduce the length of equipment downtime, and improve the operating efficiency of production equipment. The embodiment of the present application realizes the collection, recording, and return of the three cards through electronic communication. Compared with the manual collection, recording, and return of the three cards, it saves more than 96% of time, greatly improving the efficiency of the three-card process flow.

[0076] Based on the same inventive concept, the present application provides the following embodiments: Figure 2 An electronic device as shown includes:

[0077] Processor 21;

[0078] a memory 22 for storing instructions executable by the processor 21;

[0079] The processor 21 is configured to execute to implement a process flow control method as provided above.

[0080] Based on the same inventive concept, an embodiment of the present application provides a non-temporary computer-readable storage medium. When the instructions in the storage medium are executed by the processor 21 of the electronic device, the electronic device can execute a process flow control method as provided above.

[0081] Based on the same inventive concept, an embodiment of the present application provides a computer program product, including computer instructions, which are executed by the processor 21 to implement a process flow control method as provided above.

[0082] Since the electronic device described in this embodiment is an electronic device used to implement the information processing method in the embodiment of this application, based on the information processing method described in the embodiment of this application, those skilled in the art will be able to understand the specific implementation of the electronic device of this embodiment and its various variations, so how the electronic device implements the method in the embodiment of this application will not be described in detail here. As long as those skilled in the art implement the electronic device used by the information processing method in the embodiment of this application, it falls within the scope of protection to be provided by this application.

[0083] It will be understood by those skilled in the art that embodiments of the present invention may be provided as methods, systems, or computer program products. Thus, the present invention may take the form of an entirely hardware embodiment, an entirely software embodiment, or an embodiment combining software and hardware. Furthermore, the present invention may take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to magnetic disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.

[0084] The present invention is described with reference to flowcharts and / or block diagrams of methods, devices (systems), and computer program products according to embodiments of the present invention. It should be understood that each process and / or block in the flowcharts and / or block diagrams, as well as combinations of processes and / or blocks in the flowcharts and / or block diagrams, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing device to produce a machine, so that the instructions executed by the processor of the computer or other programmable data processing device generate instructions for implementing the processes in the flowcharts and / or block diagrams. Figure 1 a process or multiple processes and / or boxes Figure 1 A device that provides the functions specified in a block or multiple blocks.

[0085] These computer program instructions may also be stored in a computer readable memory that can direct a computer or other programmable data processing device to work in a specific manner, so that the instructions stored in the computer readable memory produce an article of manufacture comprising an instruction device, which implements the process Figure 1 a process or multiple processes and / or boxes Figure 1 The function specified in one or more boxes.

[0086] These computer program instructions can also be loaded onto a computer or other programmable data processing device so that a series of operational steps are executed on the computer or other programmable device to produce a computer-implemented process, thereby providing the instructions executed on the computer or other programmable device for implementing the process. Figure 1 a process or multiple processes and / or boxes Figure 1 A step that specifies a function in one or more boxes.

[0087] Although the preferred embodiments of the present invention have been described, those skilled in the art may make additional changes and modifications to these embodiments once they have learned the basic creative concept. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments and all changes and modifications that fall within the scope of the present invention.

[0088] Obviously, those skilled in the art may make various changes and modifications to the present invention without departing from the spirit and scope of the present invention. Thus, if such changes and modifications fall within the scope of the claims and their equivalents, the present invention is intended to include such changes and modifications.

Claims

1. A process flow control method, characterized in that: Applied to a dispatching system, the dispatching system includes a spot inspection terminal, a maintenance terminal, an electrician terminal, an intelligent cabinet terminal, and a dispatching platform, the spot inspection terminal, the maintenance terminal, the electrician terminal, and the intelligent cabinet terminal respectively communicating with the dispatching platform, the method includes: The scheduling platform receives the maintenance task generated by the inspection equipment and forwards it to the maintenance terminal corresponding to the maintenance task; The maintenance terminal generates a power outage request instruction for the equipment to be maintained corresponding to the maintenance task and sends it to the scheduling platform; After determining that the equipment to be repaired has stopped running, the scheduling platform approves the power outage application instruction, and after approval, sends an electronic power outage sign to the electrician terminal or the smart cabinet terminal, so that the electrician terminal or the smart cabinet terminal executes the power outage operation of the equipment to be repaired.

2. A process flow control method according to claim 1, characterized in that: After determining that the equipment to be repaired has stopped running, the dispatching platform approves the power outage application instruction, and after approval, sends an electronic power outage sign to the electrician terminal or the smart cabinet terminal, so that the electrician terminal or the smart cabinet terminal executes the power outage operation of the equipment to be repaired, including: When the dispatching platform determines that the electric control device of the equipment to be repaired corresponding to the maintenance task is the smart cabinet terminal, and after determining that the equipment to be repaired has stopped running, the dispatching platform approves the power outage application instruction, and after approval, sends the electronic power outage sign to the smart cabinet terminal, so that the smart cabinet terminal executes the power outage operation of the equipment to be repaired; When the scheduling platform determines that the electrical control device of the equipment to be repaired corresponding to the maintenance task is the electrician terminal, after determining that the equipment to be repaired has stopped running, it approves the power outage application instruction, and after approval, sends the electronic power outage sign to the electrician terminal, so that the electrician terminal executes the power outage operation of the equipment to be repaired.

3. A process flow control method according to claim 1, characterized in that: After determining that the equipment to be repaired has stopped running, the dispatching platform approves the power outage application instruction, and after approval, sends an electronic power outage sign to the electrician terminal or the smart cabinet terminal, so that the electrician terminal or the smart cabinet terminal executes the power outage operation of the equipment to be repaired, including: After determining that the equipment to be repaired and the associated equipment linked to the equipment to be repaired have stopped running, the scheduling platform approves the power outage application instruction, and after approval, sends an electronic power outage sign to the electrician terminal or the smart cabinet terminal, so that the electrician terminal or the smart cabinet terminal executes the power outage operation of the equipment to be repaired and the associated equipment linked to the equipment to be repaired.

4. A process flow control method according to claim 1, characterized in that: After the electrician terminal or the smart cabinet terminal performs a power-off operation on the equipment to be repaired, the method further includes: The dispatching platform sends an electronic operation card and an electronic power supply card corresponding to the equipment to be repaired to the maintenance terminal to remind the holder of the maintenance terminal to perform maintenance operations on the equipment to be repaired.

5. A process flow control method according to claim 1, characterized in that: After the electrician terminal or the smart cabinet terminal performs a power-off operation on the equipment to be repaired, the method further includes: The dispatching platform receives the electronic operation card and the electronic power transmission card returned by the maintenance terminal to determine that the maintenance operation of the equipment to be maintained is completed, and sends the electronic power transmission card to the electrician terminal or the smart cabinet terminal; After receiving the electronic power supply card, the electrician terminal or the smart cabinet terminal performs a power supply operation for the equipment to be repaired; The electrician terminal or the smart cabinet terminal returns the electronic power outage sign to the dispatching platform.

6. A process flow control method according to claim 5, characterized in that: After the electrician terminal or the smart cabinet terminal performs a power-off operation on the equipment to be repaired, the method further includes: The maintenance terminal sends the image data of the equipment to be maintained after the maintenance operation is completed to the scheduling platform.

7. A process flow control method according to claim 1, characterized in that: After the electrician terminal or the smart cabinet terminal performs a power-off operation on the equipment to be repaired, the method further includes: If the electrician terminal performs a power-off operation on the equipment to be repaired, the electrician terminal sends image data of the equipment to be repaired and a power-off warning sign matching the equipment to be repaired to the dispatching platform; If the smart cabinet terminal performs a power-off operation on the equipment to be repaired, the smart cabinet terminal sends power-off status information of the equipment to be repaired to the scheduling platform.

8. An electronic device, characterized in that: include: processor; a memory for storing instructions executable by the processor; The processor is configured to execute to implement a process flow control method as claimed in any one of claims 1 to 7.

9. A non-transitory computer-readable storage medium, which, when instructions in the storage medium are executed by a processor of an electronic device, enables the electronic device to implement a process flow control method as described in any one of claims 1 to 7.

10. A computer program product, characterized in that The method comprises computer instructions, wherein the computer instructions are executed by a processor to implement a process flow control method as claimed in any one of claims 1 to 7.

Citation Information

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