Lockset management and control method based on maintenance equipment switching test and related equipment

By using a lock management system based on the opening and closing test of maintenance equipment, the system generates unlocking tasks using information processing models and topology algorithms, performs review and authorization, and manages locks. This solves the problems of low security and efficiency in lock management in existing technologies, achieves standardization and refinement of lock management, and improves the security and efficiency of maintenance sites.

CN116844262BActive Publication Date: 2026-05-29ZHUHAI UNITECH POWER TECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
ZHUHAI UNITECH POWER TECHNOLOGY CO LTD
Filing Date
2023-06-27
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

In existing equipment disassembly and assembly tests, the lock control methods lack security and efficiency, and there are problems such as unlocking authorization exceeding the scope of maintenance and lock management relying on human factors, resulting in security risks and low efficiency.

Method used

A lock management system based on the separation and combination test of maintenance equipment is adopted, including a management host, cloud server, maintenance management machine, smart key, verification terminal and lock management cabinet. The system generates unlocking tasks through information processing model and topology algorithm, performs verification and authorization and lock management, and realizes closed-loop control of lock information.

Benefits of technology

It improves the security and efficiency of lock management, avoids the risk of entering the wrong interval or accidentally opening the equipment lock, realizes the standardization and refinement of lock management, and solves the problems of lost locks and difficulty in finding them.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of power safety, and provides a lock control method based on switching test of maintenance equipment and related equipment, which is used for improving the efficiency of lock control while ensuring the safety of lock control. The lock control method based on switching test of maintenance equipment comprises the following steps: generating corresponding unlocking tasks based on the to-be-processed work orders and / or target equipment unlocking information of the switching test of maintenance equipment; after the unlocking tasks are audited and authorized, unlocking the equipment locks corresponding to the unlocking tasks through the unlocking tasks forwarded by the intelligent key based on the maintenance management machine; storing and locking the unlocked equipment locks through the lock management cabinet; generating a lock recovery task based on at least part of the unlocking tasks; removing the storage and locking of the equipment locks through the lock management cabinet based on the lock recovery task; unlocking the equipment locks after the storage and locking are removed through the intelligent key based on the lock recovery task, and locking the corresponding equipment through the unlocked equipment locks.
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Description

Technical Field

[0001] This invention relates to the field of power safety technology, and in particular to a lock control method and related equipment based on the opening and closing test of maintenance equipment. Background Technology

[0002] In electrical systems, padlocks are often used to forcibly lock electrical equipment. These padlocks, in conjunction with anti-misoperation software and computer keys, prevent wrong access and accidental equipment operation. During maintenance, to assess equipment performance and maintenance quality, it's necessary to remove the padlocks for a separation / locking test. Currently, these separation / locking tests largely lack "technical security" (referring to technical security measures within the public safety domain) control measures regarding "unlocking authorization and padlock management."

[0003] In existing security control methods, for unlocking authorization, the common methods are "reverse position ticketing authorization" (i.e., pre-setting the equipment status to a position, issuing an operation ticket for authorization, using a computer key to unlock the equipment under maintenance, and then conducting the equipment separation and connection test; after the equipment separation and connection test is conducted, the lock is removed and placed in the maintenance area; after the equipment separation and connection test is completed, the corresponding lock is used to restore the equipment to lock) or "master key unlocking" (i.e., using "human experience + mechanical key" to perform maintenance authorization operations and restore maintenance tasks) to unlock the anti-misoperation lock of the test-run equipment; for lock management, during the equipment separation and connection test period, the locks removed from the equipment are usually placed by maintenance personnel according to their habits.

[0004] Among the aforementioned methods, the "reverse position ticketing authorization" method has the problem of generating authorization tickets beyond the scope of maintenance, while the "master key unlocking" method poses security risks of entering the wrong interval or accidentally opening equipment locks. Lock management methods rely too heavily on human factors and suffer from difficulties in finding locks, lock loss, and lack of traceability, creating safety hazards for subsequent equipment operations and even leading to power grid collapse, personal injury, and equipment damage due to misoperation. Therefore, existing lock control methods for maintenance equipment opening and closing tests suffer from both a failure to guarantee the security of lock control and low efficiency. Summary of the Invention

[0005] This invention provides a lock control method and related equipment based on the opening and closing test of maintenance equipment, which can improve the efficiency of lock control while ensuring the security of lock control.

[0006] The first aspect of this invention provides a lock control method based on the opening and closing test of maintenance equipment, applied to a lock control system based on the opening and closing test of maintenance equipment. The lock control system includes a management host, a cloud server, a maintenance management machine, a smart key, at least one equipment lock, at least one verification terminal, and a lock management cabinet. The lock control method based on the opening and closing test of maintenance equipment includes:

[0007] The management host obtains pending work orders and / or target equipment unlocking information based on the equipment disassembly and assembly test, and generates corresponding unlocking tasks based on the pending work orders and / or target equipment unlocking information.

[0008] The unlocking task is reviewed and authorized by the management host and / or the at least one review terminal. After the review and authorization are completed, the smart key is used to unlock the device lock corresponding to the unlocking task in the at least one device lock based on the unlocking task forwarded by the maintenance management host.

[0009] The lock management cabinet identifies the unlocked device locks, stores and locks them, and provides feedback on the stored device locks.

[0010] A lock recovery task based on at least a portion of the unlocking task is generated via the cloud server;

[0011] The lock management cabinet releases the storage locks of the equipment corresponding to the lock recovery task based on the lock recovery task, and provides feedback on the current information of the equipment locks.

[0012] The smart key unlocks the device lock after it has been released from its locked state based on the lock recovery task, and then locks the corresponding device using the unlocked device lock.

[0013] Optionally, in a first implementation of the first aspect of the present invention, the step of obtaining the pending work order and / or target equipment unlocking information based on the maintenance equipment disassembly and assembly test through the management host, and generating a corresponding unlocking task based on the pending work order and / or the target equipment unlocking information, includes:

[0014] When the management host only obtains a work order to be processed based on the separation and combination test of the maintenance equipment, the cloud server calls the information processing model corresponding to the data type of the work order to be processed, identifies the information of the work order to be processed, obtains the information to be processed, analyzes the information to be processed through a preset topology algorithm, and generates a corresponding unlocking task based on the analysis results and the information to be processed.

[0015] Alternatively, when the management host only obtains the target device unlocking information based on the maintenance equipment opening and closing test sent by the maintenance management machine, the cloud server generates a corresponding unlocking task based on the target device unlocking information. The target device unlocking information includes device information based on the wiring diagram that meets preset conditions and an unlocking request.

[0016] Optionally, in a second implementation of the first aspect of the present invention, the step of calling an information processing model corresponding to the data type of the work order to be processed through the cloud server to perform information identification on the work order to be processed and obtain the information to be processed includes:

[0017] The data type of the work order to be processed is identified by the cloud server.

[0018] If both voice data and image data exist, the cloud server will call a preset voice recognition model to perform voice recognition and text conversion on the voice data in the work order to be processed, and a preset image processing model will call a preset image processing model to perform image recognition and text conversion on the image data in the work order to be processed, so as to obtain the work order text information.

[0019] The cloud server invokes a pre-set semantic analysis model to perform semantic analysis on the work order text information, and extracts information based on the results of the semantic analysis to obtain information to be processed. The information to be processed includes the area information and equipment information corresponding to the maintenance task.

[0020] Optionally, in a third implementation of the first aspect of the present invention, the step of analyzing the information to be processed using a preset topology algorithm and generating a corresponding unlocking task based on the analysis results and the information to be processed includes:

[0021] The cloud server retrieves the current equipment status information from the preset equipment status table, which corresponds to the maintenance task in the pending information;

[0022] The cloud server uses a preset topology algorithm, current device status information, and preset task rule information to determine whether the device information corresponding to the maintenance task meets preset conditions.

[0023] If the equipment information corresponding to the maintenance task meets the preset conditions, the cloud server generates the corresponding unlocking task based on the information to be processed.

[0024] Optionally, in a fourth implementation of the first aspect of the present invention, the step of obtaining the pending work order and / or target equipment unlocking information based on the maintenance equipment disassembly and assembly test through the management host, and generating a corresponding unlocking task based on the pending work order and / or the target equipment unlocking information, further includes:

[0025] When the management host obtains the pending work order based on the separation and reassembly test of the maintenance equipment and the target equipment unlocking information sent by the maintenance management machine based on the separation and reassembly test of the maintenance equipment, the cloud server calls the information processing model corresponding to the data type of the pending work order to identify the information of the pending work order and obtain the identified information.

[0026] The cloud server uses a preset topology algorithm to judge the identified information based on preset conditions. If the judgment result indicates that the information passes, the identified information is then verified using the unlocking information of the target device.

[0027] If the verification is successful, the cloud server will generate a corresponding unlocking task based on the identified information.

[0028] Optionally, in a fifth implementation of the first aspect of the present invention, the step of authorizing the unlocking task through the management host and / or the at least one auditing terminal includes:

[0029] The unlocking task is reviewed by the management host and the at least one review terminal. If the review results of the management host and the at least one review terminal both indicate that the task is approved, the review is deemed to be approved and the approval result is sent to the at least one review terminal. The authorization information is configured through the at least one review terminal. The number of at least one review terminal is one.

[0030] Alternatively, the unlocking task can be reviewed by the management host, and if the review result indicates that it passes, the authorization information can be configured.

[0031] Alternatively, the unlocking task can be authorized and reviewed through at least one review terminal. If the review is successful, the authorization is deemed complete. The number of at least one review terminal is one or more.

[0032] Optionally, in a sixth implementation of the first aspect of the present invention, the step of authorizing and reviewing the unlocking task through the at least one review terminal, and determining that the authorization is complete if the review is successful, includes:

[0033] The unlocking task is reviewed by the at least one review terminal. If the review results of the at least one review terminal all indicate that the task has passed, the review is deemed to have passed and the review result is sent to the target review terminal among the at least one review terminals.

[0034] The authorization information is configured through the target review terminal, and the authorization information configuration of the target review terminal is reviewed by the review terminal other than the target review terminal. If the review is successful, the review and authorization are deemed complete.

[0035] Optionally, in the seventh implementation of the first aspect of the present invention, the step of authorizing and reviewing the unlocking task through the at least one review terminal, and determining that the authorization is complete if the review is successful, includes:

[0036] The unlocking task is reviewed by the target review terminal among the at least one review terminal. If the review result indicates that it passes, the authorization information is configured through the target review terminal.

[0037] The review and authorization information configuration of the target review terminal is reviewed by the review terminal other than the target review terminal. If the review is successful, the review and authorization are deemed to be completed.

[0038] Optionally, in an eighth implementation of the first aspect of the present invention, the step of unlocking the device lock corresponding to the unlocking task among the at least one device locks via the smart key based on the unlocking task forwarded by the maintenance management machine includes:

[0039] The smart key is used to obtain the unlocking sequence in the unlocking task forwarded by the maintenance management machine, and to match the unlocking permissions and unlocking information corresponding to the unlocking task.

[0040] The smart key verifies the input unlocking verification information based on unlocking permissions;

[0041] If the verification is successful, the smart key is used to unlock the device lock corresponding to the unlocking task in at least one device lock according to the unlocking sequence and the corresponding unlocking information.

[0042] Optionally, in the ninth implementation of the first aspect of the present invention, the step of identifying the unlocked device lock and storing it in the lock management cabinet, as well as providing feedback on the stored device lock information, includes:

[0043] The lock management cabinet is used to match the maintenance task corresponding to the unlocking task, and the first cabinet opening permission corresponding to the maintenance task is matched.

[0044] The lock management cabinet verifies the input verification information based on the first cabinet opening permission. If the verification passes, it identifies whether there is an unlocked device lock in the target area.

[0045] If an unlocked device lock exists in the target area, the unlocked device lock is identified through the lock management cabinet. After identification, the cabinet door is forcibly locked. Once locked, the information of the stored device lock is sent to the cloud server or the maintenance management machine. The information of the stored device lock includes the device lock's identity information, current storage status, and storage time.

[0046] Optionally, in a tenth implementation of the first aspect of the present invention, generating a lock restoration task based on at least a portion of the unlocking task via the cloud server includes:

[0047] When the management host receives a recovery command based on the unlocking task sent by the maintenance management machine, the cloud server performs mirror mapping on at least a portion of the unlocking tasks and generates corresponding lock recovery tasks.

[0048] Alternatively, when the management host receives the target device lockout information sent by the maintenance management machine, the cloud server generates a corresponding lock recovery task based on the target device lockout information. The target device lockout information includes device information based on the wiring diagram that meets preset conditions and corresponds to at least part of the unlocking task, as well as a lockout request.

[0049] Optionally, in the eleventh implementation of the first aspect of the present invention, the step of releasing the storage lock of the device lock corresponding to the lock recovery task through the lock management cabinet based on the lock recovery task, and feeding back the current information of the device lock, includes:

[0050] When the lock management cabinet receives the lock restoration task, it matches the corresponding second cabinet opening permission based on the lock restoration task;

[0051] When the lock management cabinet obtains the unlocking verification information, it verifies the unlocking verification information based on the unlocking permission. If the verification is successful, the locked cabinet door is unlocked, and it identifies whether there is a device lock in the target area. The identification result and the associated information of the device lock are sent to the cloud server and the maintenance management machine.

[0052] A second aspect of the present invention provides a lock control system based on the opening and closing test of maintenance equipment. The lock control system includes a management host, a cloud server, a maintenance management machine, a smart key, at least one equipment lock, at least one verification terminal, and a lock management cabinet; wherein,

[0053] The management host is used to receive pending work orders and / or target equipment unlocking information based on the equipment disassembly and reassembly test, as well as to review and authorize unlocking tasks.

[0054] The cloud server is used to acquire pending work orders and / or target equipment unlocking information based on the equipment disassembly and assembly test, generate corresponding unlocking tasks based on the pending work orders and / or target equipment unlocking information, perform review and authorization operations based on the unlocking tasks, and generate lock restoration tasks based on at least part of the unlocking tasks.

[0055] The maintenance management machine is used to send target equipment unlocking information based on the maintenance equipment separation and combination test to the management host, and to issue the unlocking task to the smart key;

[0056] The smart key is used to unlock the device lock corresponding to the unlocking task among the at least one device locks based on the unlocking task forwarded by the maintenance management machine, and to unlock the device lock after the storage lock has been released based on the lock recovery task.

[0057] The at least one device lock is used to lock or unlock the device;

[0058] The at least one verification terminal is used to verify and authorize the unlocking task;

[0059] The lock management cabinet is used to identify and store unlocked device locks, provide feedback on the stored device locks, and release the storage locks corresponding to the lock recovery task based on the lock recovery task, and provide feedback on the current information of the device locks.

[0060] A third aspect of the present invention provides a lock control device based on a maintenance equipment opening and closing test, comprising: a memory and at least one processor, wherein the memory stores a computer program; the at least one processor calls the computer program in the memory to cause the lock control device based on the maintenance equipment opening and closing test to execute the above-described lock control method based on the maintenance equipment opening and closing test.

[0061] A fourth aspect of the present invention provides a computer-readable storage medium storing a computer program that, when run on a computer, causes the computer to execute the above-described lock control method based on the opening and closing test of maintenance equipment.

[0062] In the technical solution provided by this invention, the management host acquires pending work orders and / or target equipment unlocking information based on the equipment separation and merging test, and generates corresponding unlocking tasks based on the pending work orders and / or the target equipment unlocking information; the management host and / or at least one auditing terminal audit and authorize the unlocking tasks; after the audit and authorization are completed, the smart key unlocks the lock corresponding to the unlocking task among the at least one equipment locks based on the unlocking task forwarded by the maintenance management host; the lock management cabinet identifies the unlocked equipment locks and stores them in a locked position, and provides feedback on the stored equipment lock information; the cloud server generates lock recovery tasks based on at least some of the unlocking tasks; the lock management cabinet releases the storage lock corresponding to the lock recovery task based on the lock recovery task, and provides feedback on the current information of the equipment lock; the smart key unlocks the released storage lock based on the lock recovery task, and locks the corresponding equipment with the unlocked equipment lock. In this embodiment of the invention, closed-loop management of lock information is realized, which improves the efficiency and level of lock management at the maintenance site, avoids the safety risks of going to the wrong interval or accidentally opening equipment locks, realizes the standardization, mandatory and refined management of equipment lock management process, solves the problems of lost equipment locks and difficulty in finding them, ensures the accuracy of unlocking authorization, and achieves the effect of improving the efficiency of lock management while ensuring the security of lock management. Attached Figure Description

[0063] Figure 1 This is a schematic diagram of an embodiment of the lock control system based on the opening and closing test of maintenance equipment in this invention.

[0064] Figure 2 This is a schematic diagram of another embodiment of the lock control system based on the opening and closing test of maintenance equipment in this invention;

[0065] Figure 3 This is a schematic diagram of an embodiment of the business architecture of a lock control system based on the opening and closing test of maintenance equipment in this invention.

[0066] Figure 4 This is a schematic diagram of an embodiment of the lock control method based on the opening and closing test of maintenance equipment in the present invention.

[0067] Figure 5 This is a schematic diagram of another embodiment of the lock control method based on the opening and closing test of maintenance equipment in the present invention;

[0068] Figure 6 This is a schematic diagram of an embodiment of the present invention that generates a lock recovery task based on the image of the unlocking task;

[0069] Figure 7 This is a schematic diagram of an embodiment of a lock control device based on the opening and closing test of maintenance equipment, as described in this invention. Detailed Implementation

[0070] This invention provides a lock management method and related equipment based on the opening and closing test of maintenance equipment, which can improve the efficiency of lock management while ensuring the security of lock management.

[0071] The terms “first,” “second,” “third,” “fourth,” etc. (if present) in the specification, claims, and accompanying drawings of this invention are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments described herein can be implemented in orders other than those illustrated or described herein. Furthermore, the terms “comprising” or “having,” and any variations thereof, are intended to cover a non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.

[0072] For easier understanding, please refer to Figure 1 , Figure 1 This is a schematic diagram of a lock control system based on the separation and reassembly test of maintenance equipment, provided by an embodiment of the present invention. The lock control system includes a management host, a cloud server, a maintenance management machine, a smart key, at least one equipment lock, at least one verification terminal, and a lock management cabinet; wherein,

[0073] The management host is used to receive pending work orders based on the separation and combination tests of maintenance equipment and / or target equipment unlocking information, as well as to review and authorize unlocking tasks. Optionally, the management host also receives and forwards information sent by the cloud server, maintenance management machine, at least one review terminal, and lock management cabinet, and connects to the cloud server for data configuration and querying. Data configuration may include, but is not limited to, configuring personnel permissions, equipment attributes, equipment models, data interfaces, etc. Data querying includes, but is not limited to, querying equipment information and lock status information, and also supports the compilation of information required for unlocking tasks and lock restoration tasks. Optionally, the management host can log in to the cloud server via browser / server (B / S) mode.

[0074] The cloud server is used to acquire pending work orders and / or target device unlocking information based on the equipment separation and merging test, generate corresponding unlocking tasks based on the pending work orders and / or target device unlocking information, perform review and authorization operations based on the unlocking tasks, and generate lock restoration tasks based on at least some of the unlocking tasks; optionally, the cloud server is equipped with various management software, multiple information processing models and topology algorithms, which can process and manage data from the lock control system based on the equipment separation and merging test, and build a secure network channel with at least one review terminal.

[0075] Optionally, the cloud server includes a work order recognition module, an intelligent analysis module, a lock status management module, an unlocking task module, and a lock recovery task module. The work order recognition module receives pending work orders from other management systems (e.g., PMS, ERP, etc.), calls the information processing model corresponding to the data type of the pending work order, identifies the information in the pending work order, and obtains the information to be processed. The intelligent analysis module stores wiring diagrams, equipment status tables, and task rule bases. The wiring diagrams include multiple diagrams providing electrical equipment connection relationships. The equipment status table summarizes the open / closed states of equipment (i.e., the state of equipment after being unlocked by a lock, and the state of equipment being locked by a lock). The task rule base is used to define rules for work tasks. The intelligent analysis module is used for... The system generates corresponding unlocking tasks based on the unlocking information of the target equipment sent by the maintenance management unit; the lock status management module is used to acquire and store the identity identifier, name, and locking status of the equipment locks sent by the lock management cabinet, and automatically match maintenance tasks, maintenance personnel, and other information; the unlocking task module is used to analyze the information to be processed through a preset topology algorithm, and generate corresponding unlocking tasks based on the analysis results and the information to be processed, and to apply for authorization from the management host and / or at least one auditing terminal. After the authorization is approved, the unlocking task is sent to the maintenance management unit; the lock recovery task module is used to mirror the unlocking task and generate corresponding lock recovery tasks, or to generate corresponding lock recovery tasks based on the locking information of the target equipment sent by the maintenance management unit.

[0076] The maintenance management unit is used to send the target equipment unlocking information based on the opening and closing test of the maintenance equipment to the management host, and to issue unlocking tasks to the smart key; optionally, the maintenance management unit also supports the compilation of the information required for unlocking tasks and lock restoration tasks, supports the charging of smart keys, and issues lock restoration tasks to the smart key.

[0077] Optionally, the maintenance management unit includes an unlocking task creation module, an unlocking task distribution module, a lock restoration task module, and a lock status acquisition module. The unlocking task creation module is used to synchronously acquire data from the intelligent analysis module and send device information based on the wiring diagram that meets preset conditions, as well as unlocking requests, to the management host or cloud server. Devices that do not meet the maintenance conditions are prohibited from being selected. The unlocking task distribution module is used to distribute unlocking tasks to the smart key. The lock restoration task module is used to provide a display button for the "unlocking task" and forward the locking request triggered by the display button of the "unlocking task" to the management host or cloud server. It also displays the data of the synchronous wiring diagram model from the intelligent analysis module and sends the device information corresponding to the unlocking task based on the wiring diagram that meets preset conditions to the cloud server. The lock status acquisition module is used to obtain the storage status of at least one device lock based on the lock management cabinet from the lock management cabinet or cloud server, and supports the statistics and query of real-time status data of at least one device lock.

[0078] The smart key is used to unlock at least one device lock corresponding to the unlocking task based on the unlocking task forwarded by the maintenance management machine, and to unlock the device lock after it has been released from storage lock based on the lock restoration task; the smart key is also used to receive unlocking tasks and lock restoration tasks, and to perform unlocking operations on the device lock according to the permission settings.

[0079] At least one device lock is provided for locking or unlocking the device. By way of example and not limitation, the device may be an electrical device.

[0080] At least one verification terminal is provided for verifying and authorizing unlocking tasks; each verification terminal supports unlocking task approval and authorization as well as data querying, and includes an approval and authorization module and a data query module. As an example, and not a limitation, each verification terminal can be a mobile terminal or a handheld device.

[0081] The lock management cabinet is used to identify and lock unlocked equipment locks, provide feedback on the information of the stored equipment locks, and release the storage locks corresponding to lock recovery tasks, providing feedback on the current information of the equipment locks. Optionally, the lock management cabinet is equipped with at least one identification device. Each identification device is used to identify whether an unlocked equipment lock is placed inside the lock management cabinet. This identification device can be an infrared identification device, a camera device, or a pressure sensor; the specific method is not limited here.

[0082] Optionally, the lock management cabinet includes a storage and retrieval management module, an access control module, a lock identification module, a forced locking module, a status feedback module, and a data query module. The storage and retrieval management module receives unlocking and lock restoration tasks from the cloud server, stores corresponding locks based on unlocking tasks, and retrieves corresponding locks based on lock restoration tasks. The access control module verifies the input verification information based on the first opening permission of the maintenance task corresponding to the unlocking task. The lock identification module identifies the unlocked locks and checks if unlocked locks exist in the target area. The forced locking module forcibly locks the cabinet door after identifying the unlocked locks. The status feedback module sends the information of the stored locks to the cloud server or maintenance management machine after the cabinet door is forcibly locked. The data query module matches the maintenance task corresponding to the unlocking task with the first opening permission corresponding to the maintenance task.

[0083] The lock management system based on the separation and combination test of maintenance equipment uses a cloud server as the data processing center. It achieves data sharing with the management host, at least one audit terminal, maintenance management machine, smart key, at least one equipment lock and lock management cabinet through wireless / wired network, and realizes business functions such as "unlocking task creation and approval authorization, unlocking and equipment lock storage management, lock recovery management, etc".

[0084] For ease of further understanding, and not as a limitation, the lock control system based on the opening and closing test of maintenance equipment, such as... Figure 2 As shown, at least one audit terminal is exemplified by a mobile phone. This is intended as an example, not a limitation, of the business architecture of a lock control system based on the inspection and maintenance equipment opening and closing test, as follows: Figure 3 As shown, at least one audit terminal and at least one device lock are used, with one audit terminal and one device lock being used as an example.

[0085] The lock management system based on the separation and combination test of maintenance equipment is used to implement lock management methods based on the separation and combination test of maintenance equipment. Through data interaction and processing between the management host, cloud server, maintenance management machine, smart key, at least one equipment lock, at least one audit terminal and lock management cabinet, it realizes business functions such as "unlocking task creation and approval authorization, unlocking and equipment lock storage management, and lock recovery management". It avoids the security risks of going to the wrong interval or accidentally opening equipment locks, realizes the standardization, mandatory and refined management of equipment lock management process, solves the problems of lost equipment locks and difficulty in finding them, improves the efficiency and level of lock management at the maintenance site, and achieves the effect of improving the efficiency of lock management while ensuring the security of lock management.

[0086] It is understood that the lock control method based on the opening and closing test of maintenance equipment provided in this embodiment of the invention is applied to the above-mentioned lock control system based on the opening and closing test of maintenance equipment, that is, the executing subject of this invention is the above-mentioned lock control system based on the opening and closing test of maintenance equipment.

[0087] For ease of understanding, the specific process of the embodiments of the present invention is described below. Please refer to [link / reference]. Figure 4 One embodiment of the lock control method based on the opening and closing test of maintenance equipment in this invention includes:

[0088] 401. Obtain pending work orders and / or target equipment unlocking information based on the equipment disassembly and reassembly test through the management host, and generate corresponding unlocking tasks based on the pending work orders and / or target equipment unlocking information.

[0089] The pending work orders are those containing maintenance task information. Target equipment unlocking information includes equipment information based on wiring diagrams that meet preset conditions, as well as unlocking requests. The wiring diagrams provide the connection relationships between electrical devices.

[0090] As an example, and not a limitation, other management systems (e.g., PMS, ERP, etc.) send pending work orders to the lock control system based on the maintenance equipment opening and closing test. The lock control system based on the maintenance equipment opening and closing test logs into the management host and receives pending work orders from other management systems. When only pending work orders are obtained through the management host, the intelligent analysis module in the cloud server performs AI-based information recognition on the pending work orders to obtain the pending information. It then analyzes the pending information using a pre-set topology algorithm and generates corresponding unlocking tasks based on the analysis results and the pending information. The unlocking task includes, but is not limited to, information about the device to be unlocked, the unlocking sequence and unlocking permissions, and information about the lock corresponding to the device to be unlocked. The information about the device to be unlocked includes, but is not limited to, the device name, device number, device attributes, device code, and device location of the electrical equipment to be unlocked. Unlocking permissions indicate the permissions of the maintenance personnel corresponding to the maintenance task. The information about the lock corresponding to the device to be unlocked includes, but is not limited to, the shape, unique identifier, and identity information of the lock.

[0091] Optionally, the operator logs into the maintenance management machine and enters or selects a maintenance area. The maintenance management machine then matches the wiring diagrams synchronized from the cloud server with the corresponding wiring diagrams for the maintenance area. The corresponding wiring diagrams are displayed on the maintenance management machine's interface. The operator touches the corresponding components of the electrical equipment on the marked wiring diagrams on the maintenance management machine's interface. The maintenance management machine obtains the corresponding equipment information and generates a corresponding unlocking request to obtain the unlocking information of the target equipment. The unlocking information of the target equipment is then sent to the cloud server through the maintenance management machine. The cloud server stores electrical equipment that does not meet preset conditions in each wiring diagram. The preset conditions are used to indicate whether the equipment can be locked, can be unlocked, is in a safe state, or is not in operation.

[0092] In one feasible implementation, step 401 further includes: when the management host obtains the work order to be processed based on the equipment separation and combination test and the target equipment unlocking information based on the equipment separation and combination test sent by the maintenance management machine, the cloud server calls the information processing model corresponding to the data type of the work order to be processed, performs information recognition on the work order to be processed, and obtains the recognized information; the cloud server judges the recognized information based on preset conditions using a preset topology algorithm, and if the judgment result indicates that it passes, the target equipment unlocking information is used to verify the recognized information; if the verification passes, the cloud server generates the corresponding unlocking task based on the recognized information.

[0093] The execution process of obtaining the pending work order and the target device unlocking information sent by the maintenance management machine through the management host is similar to the execution process described above, which only obtains the pending work order through the management host and the execution process described above, which only obtains the target device unlocking information sent by the maintenance management machine through the management host, and will not be described again here. The execution process of calling the information processing model corresponding to the data type of the pending work order through the cloud server to identify the information of the pending work order and obtain the identified information is similar to the execution process described above, which analyzes the pending information through a preset topology algorithm, and will not be described again here.

[0094] If the judgment result indicates failure, the corresponding judgment result is fed back to the sending end of the pending work order (i.e., other management systems). Verification of the identified information using the target device's unlocking information can be performed by: determining whether the information of the electrical device to be unlocked in the identified information (i.e., the equipment information corresponding to the maintenance task) matches the information of the electrical device to be unlocked in the target device's unlocking information. If they match, the verification is deemed successful; otherwise, it is deemed unsuccessful. If the verification fails, the corresponding information is sent to the sending end of the pending work order (i.e., other management systems).

[0095] Artificial intelligence recognition through information processing models improves automation and recognition accuracy. By verifying the identified information using the unlocking information of the target device, the accuracy of the identified information is improved, thereby increasing the accuracy of the unlocking task and ultimately improving the efficiency of lock management.

[0096] 402. Authorize the unlocking task through the management host and / or at least one auditing terminal. After the authorization is completed, unlock the device lock corresponding to the unlocking task in at least one device lock through the smart key based on the unlocking task forwarded by the maintenance management machine.

[0097] The process involves generating an unlocking task via a cloud server, prompting the management host to approve and authorize the task, and / or sending the unlocking task to at least one verification terminal via the cloud server, and requesting approval and authorization from at least one verification terminal. Optionally, the approval of the unlocking task via the management host and / or at least one verification terminal can be manual or intelligent based on a preset approval strategy. The authorized content includes unlocking permissions for the lock management cabinet door and unlocking permissions for the smart key.

[0098] Optionally, at least one verification terminal is used. The unlocking task is verified by both the management host and the verification terminal. If both verifications are successful, the authorization information is configured through the management host if the authorization level of the management host is higher than that of the verification terminal, and vice versa. After the authorization information is configured, the smart key is used to unlock the lock corresponding to the unlocking task in at least one device lock based on the unlocking task forwarded by the maintenance management machine.

[0099] If the audit of the management host fails and / or the audit of the audit terminal fails, the audit result will be sent back to the cloud server.

[0100] Optionally, at least one verification terminal is used to verify the unlocking task. If the verification is successful, authorization information is configured through the verification terminal. After the authorization information is configured, the smart key unlocks the lock corresponding to the unlocking task in at least one device lock based on the unlocking task forwarded by the maintenance management machine. If the verification fails, the verification result is sent back to the cloud server.

[0101] Optionally, the above-mentioned unlocking of at least one device lock corresponding to the unlocking task via a smart key forwarded by the maintenance management unit includes: obtaining the unlocking information corresponding to the device lock corresponding to the unlocking task via the smart key based on the unlocking permission of the smart key, wherein the unlocking information may be an unlocking key or a unique identifier of the corresponding device lock, which is not specifically limited here; and unlocking the device lock corresponding to the unlocking task via the unlocking information corresponding to the device lock.

[0102] 403. The lock management cabinet identifies the unlocked equipment locks, stores and locks them, and provides feedback on the stored equipment locks.

[0103] Optionally, the lock management cabinet verifies the unlocking permissions of the cabinet door based on the approved unlocking permissions. If the verification is successful, the unlocked device lock placed in the lock management cabinet is identified to obtain identification information. It is then determined whether the identification information matches the identification information of the device lock in the unlocking task. If they match, the cabinet door is forcibly locked, the information of the stored device lock is obtained, and the information of the stored device lock is fed back to the cloud server or maintenance management machine. If they do not match, the corresponding information (including but not limited to the judgment result and identification information) is sent to the cloud server. The information of the stored device lock includes, but is not limited to, the identification information of the device lock, the current storage status, and the storage time.

[0104] It should be noted that the unlocked device lock refers to the device lock after the device has been unlocked to a specified state. When the device lock is stored in the lock management cabinet, it is in a locked state.

[0105] 404. Generate a lock recovery task based on at least part of the unlocking task via a cloud server.

[0106] Among them, "at least part of the unlocking task" is used to indicate a part or all of the unlocking task, such as 50% of the task content or 100% of the task content in the unlocking task.

[0107] Optionally, the maintenance personnel responsible for the unlocking task select equipment from at least a portion of the wiring diagram displayed on the maintenance management machine. The maintenance management machine obtains the selected equipment information (i.e., equipment information corresponding to the unlocking task based on the wiring diagram that meets preset conditions) and generates a corresponding locking request. The target equipment locking information, which includes the locking request and the equipment information corresponding to the unlocking task based on the wiring diagram that meets preset conditions, is sent to the management host. The personnel log in to the management host to connect to the cloud server, and the cloud server generates a corresponding lock recovery task based on the target equipment locking information.

[0108] 405. Based on the lock recovery task, the lock management cabinet releases the storage locks of the equipment corresponding to the lock recovery task and provides feedback on the current information of the equipment locks.

[0109] When the lock management cabinet receives a lock restoration task, it matches the cabinet opening permission corresponding to the task. Based on this permission, it verifies the input verification information. If the verification passes, it unlocks the locked cabinet door, obtains the current information of the device lock, and sends this information back to the cloud server and maintenance management machine. This information, as an example and not a limitation, includes, but is not limited to, the time the device lock was removed from the lock management cabinet, as well as the device lock's status, shape, unique identifier, and identity information.

[0110] 406. Unlock the device lock after it has been released from storage using the smart key based on the lock recovery task, and then lock the corresponding device using the unlocked device lock.

[0111] The process of unlocking the device locks retrieved from the lock management cabinet after unlocking using the smart key based on the lock restoration task in step 406 is similar to the process of unlocking the device lock corresponding to the unlocking task forwarded by the maintenance management machine using the smart key in step 402 above, and will not be described again here. The unlocked device lock is then used to lock the corresponding device, thus restoring the device to its locked state.

[0112] In this embodiment of the invention, closed-loop management of lock information is realized, which improves the efficiency and level of lock management at the maintenance site, avoids the safety risks of going to the wrong interval or accidentally opening equipment locks, realizes the standardization, mandatory and refined management of equipment lock management process, solves the problems of lost equipment locks and difficulty in finding them, ensures the accuracy of unlocking authorization, and achieves the effect of improving the efficiency of lock management while ensuring the security of lock management.

[0113] Please see Figure 5 Another embodiment of the lock control method based on the opening and closing test of maintenance equipment in this invention includes:

[0114] 501. When only a work order for the maintenance equipment splitting and joining test is obtained through the management host, the information processing model corresponding to the data type of the work order is called through the cloud server to identify the information of the work order, obtain the information to be processed, and analyze the information to be processed through a preset topology algorithm. Based on the analysis results and the information to be processed, the corresponding unlocking task is generated.

[0115] The work order to be processed is a work order containing maintenance task information. The work order to be processed can be entirely text data, or it can include text and voice data, or it can include text and image data, or it can include text, voice, and image data. When the work order to be processed only contains text data, a pre-defined semantic analysis model is invoked to perform semantic analysis on the maintenance work order and extract key information to obtain the information to be processed. When the work order to be processed only contains voice data (or image data), the corresponding voice recognition model is invoked to perform voice recognition and text conversion on the work order to obtain recognized text information (or the corresponding image processing model is invoked to perform image recognition and text conversion on the work order to obtain recognized text information). The pre-defined semantic analysis model is then invoked to perform semantic analysis on the recognized text information and extract key information to obtain the information to be processed.

[0116] As an example, and not a limitation, other management systems (e.g., PMS, ERP, etc.) send pending work orders to the lock control system based on the equipment maintenance and disassembly test. The lock control system based on the equipment maintenance and disassembly test logs into the management host and receives pending work orders from other management systems. When only the pending work order is obtained through the management host, the intelligent analysis module in the cloud server matches the information processing model corresponding to the data type of the pending work order from the pre-set model library (which stores models composed of various algorithms or network frameworks, such as models corresponding to image processing (e.g., image semantic analysis algorithms, which perform image recognition and semantic analysis on image data), and models corresponding to speech recognition). Based on the pre-set interface, the system calls the information processing model corresponding to the data type of the pending work order to perform artificial intelligence-based information recognition on the pending work order, obtain the pending information, analyze the pending information using a pre-set topology algorithm, and generate the corresponding unlocking task based on the analysis results and the pending information.

[0117] Optionally, the information to be processed can be analyzed using a preset topology algorithm: The algorithm analyzes whether the information meets the rule requirements corresponding to the maintenance task; if the analysis indicates compliance, a corresponding unlocking task is generated based on the information to be processed. The unlocking task includes, but is not limited to, information about the device to be unlocked, the unlocking sequence and unlocking permissions, and information about the device lock corresponding to the device to be unlocked. The information about the device to be unlocked includes, but is not limited to, the device name, device number, device attributes, device code, and device location of the electrical device to be unlocked. Unlocking permissions indicate the permissions of the maintenance personnel corresponding to the maintenance task. Information about the device lock corresponding to the device to be unlocked includes, but is not limited to, the shape, unique identifier, and identity information of the device lock.

[0118] In one feasible implementation, step 501, which involves calling an information processing model corresponding to the data type of the work order to be processed via a cloud server to identify information in the work order and obtain the information to be processed, specifically includes: identifying the data type of the work order to be processed via the cloud server; if there is voice data and image data, calling a pre-set voice recognition model via the cloud server to perform voice recognition and text conversion on the voice data in the work order, and calling a pre-set image processing model to perform image recognition and text conversion on the image data in the work order to obtain the work order text information; and calling a pre-set semantic analysis model via the cloud server to perform semantic analysis on the work order text information, and extracting information based on the results of the semantic analysis to obtain the information to be processed, which includes the area information and equipment information corresponding to the maintenance task.

[0119] The work orders to be processed contain both voice and image data; that is, they include text, voice, and image data. The voice recognition model can be a combination of one or more voice recognition networks after adjustments and modifications. It can also be an existing single voice recognition network or a hybrid voice recognition algorithm, or a self-developed voice recognition algorithm. No specific limitations are imposed here, but algorithms or networks with high recognition efficiency and accuracy are preferred. The same applies to image recognition models.

[0120] As an example, and not a limitation, the process of calling a pre-defined speech recognition model to perform speech recognition and text conversion on the speech data in the work order to be processed, and calling a pre-defined image processing model to perform image recognition and text conversion on the image data in the work order to obtain the work order text information, specifically includes: the speech recognition model comprising a first model and a second model. The first model is an Artificial Neural Network / Hidden Markov Model (ANN / HMM) hybrid model, and the second model is a deep learning neural network. The ANN / HMM hybrid model (i.e., the first model) performs speech recognition and text conversion on the speech data in the work order to obtain the first text information, and the deep learning neural network (i.e., the second model) performs speech recognition and text conversion on the speech data in the work order to be processed. The first and second text information are fused to obtain speech recognition information. The image processing model includes a third model and a fourth model. The third model is an image recognition algorithm based on a genetic algorithm, and the fourth model is an object detection algorithm. The image recognition algorithm based on a genetic algorithm (i.e., the third model) performs image recognition and text conversion on the image data in the work order to be processed to obtain the third text information. The object detection algorithm (i.e., the fourth model) performs image recognition and text conversion on the image data in the work order to be processed to obtain the fourth text information. The third and fourth text information are fused to obtain image recognition information. The speech recognition information, image recognition information, and text data in the work order to be processed are determined as the work order text information.

[0121] The cloud server calls a pre-set speech recognition model to perform speech recognition and text conversion on the speech data in the work order to be processed, and calls a pre-set image processing model to perform image recognition and text conversion on the image data in the work order to be processed. The resulting work order text information is full text data containing the original text data in the work order to be processed.

[0122] The semantic analysis model can be a model composed of one or more semantic analysis networks after adjustment and modification. The semantic analysis model can also be an existing single semantic analysis network or a hybrid semantic analysis algorithm. The semantic analysis model can also be a self-developed semantic analysis algorithm. No specific limitation is made here, but algorithms or networks with high recognition efficiency and high recognition accuracy are preferred.

[0123] The process involves traversing the work order text information based on semantic analysis results and a pre-set dictionary to extract corresponding key information, thereby obtaining the information to be processed. This pre-set dictionary is a dictionary generated based on the maintenance task information in the field of electrical operations. The information to be processed includes the area information and equipment information corresponding to the maintenance task. For example, if the maintenance task is a maintenance task, the information to be processed includes maintenance area information and maintenance equipment information.

[0124] By employing speech recognition and text conversion models, image processing models, and semantic analysis models for information extraction, automated programming and intelligent processing have been achieved. This has improved the efficiency and accuracy of information recognition, thereby enhancing the efficiency and level of lock management at the maintenance site and ensuring the accuracy of unlocking authorization.

[0125] In one feasible implementation, step 501, which involves analyzing the information to be processed using a preset topology algorithm and generating a corresponding unlocking task based on the analysis results and the information to be processed, specifically includes: retrieving the current device status information of the device information corresponding to the maintenance task in the information to be processed from a preset device status table via a cloud server; determining whether the device information corresponding to the maintenance task meets preset conditions via a cloud server based on the preset topology algorithm, the current device status information, and preset task rule information; and generating a corresponding unlocking task via a cloud server based on the information to be processed if the device information corresponding to the maintenance task meets the preset conditions.

[0126] The system includes a pre-set equipment status table that stores the status information of each device up to the current moment. This status information is stored using a specific data storage structure to alleviate storage pressure and improve retrieval efficiency, such as an indexed storage structure. By retrieving the pre-set equipment status table from the cloud server based on the equipment information corresponding to the maintenance tasks in the pending information, the system can obtain the corresponding current equipment status information. This current equipment status information includes, but is not limited to, information indicating whether the device is in a locked state, a safe state, an operating state, or a fault state.

[0127] The preset topology algorithm can be a depth-first search algorithm, a breadth-first search algorithm, an adjoining matrix algorithm, an incidence matrix algorithm, or a topology sorting algorithm. No specific limitation is made here, but the one with higher efficiency and accuracy is preferred. The specific implementation principle is existing and will not be elaborated here.

[0128] The cloud server uses a pre-set topology algorithm to perform topology analysis on the equipment information, current equipment status information and pre-set task rules information corresponding to the maintenance task, in order to determine whether the equipment information corresponding to the maintenance task meets the preset conditions. The preset conditions can be that the equipment is in a locked state, can be unlocked, is in a safe state or a non-working state.

[0129] If the equipment information corresponding to the maintenance task meets the preset conditions, the cloud server will generate the corresponding unlocking task based on the information to be processed; if the equipment information corresponding to the maintenance task does not meet the preset conditions, the corresponding judgment result will be fed back to the sending end of the work order to be processed.

[0130] 502. When the management host only obtains the target equipment unlocking information based on the maintenance equipment opening and closing test sent by the maintenance management machine, the cloud server generates a corresponding unlocking task based on the target equipment unlocking information. The target equipment unlocking information includes equipment information based on the wiring diagram that meets the preset conditions and the unlocking request.

[0131] Wiring diagrams are used to show the connection relationships between electrical devices.

[0132] Optionally, the operator logs into the maintenance management machine and inputs maintenance requirements or tasks. The maintenance management machine sends the requirements or tasks to the cloud server. The intelligent analysis module on the cloud server matches the corresponding wiring diagrams and maintenance rules based on the requirements or tasks. A preset topology algorithm analyzes the matched wiring diagrams according to preset conditions based on the maintenance rules and requirements or tasks, and marks the equipment (marking electrical equipment that does not meet the preset conditions). The cloud server then sends the marked wiring diagrams back to the maintenance management machine. Once the maintenance management machine receives the markings from the cloud server... When the wiring diagram (i.e., the data from the intelligent analysis module) is generated, the marked wiring diagram is displayed on the display interface of the maintenance management machine. The operator touches the corresponding buttons of the electrical equipment in the marked wiring diagram on the display interface of the maintenance management machine. The maintenance management machine obtains the corresponding equipment information and generates a corresponding unlocking request to obtain the unlocking information of the target equipment. The unlocking information of the target equipment is then sent to the cloud server through the maintenance management machine. The buttons corresponding to the marked electrical equipment cannot be touched. The cloud server generates a corresponding unlocking task based on the unlocking information of the target equipment, and preset conditions are used to indicate that it can be in the unlocked state.

[0133] Optionally, the operator logs into the maintenance management machine and enters or selects a maintenance area. The maintenance management machine then matches the wiring diagrams synchronized from the cloud server with the corresponding wiring diagrams for the maintenance area. The corresponding wiring diagrams are displayed on the maintenance management machine's interface. The operator touches the corresponding components of the electrical equipment on the marked wiring diagrams on the maintenance management machine's interface. The maintenance management machine obtains the corresponding equipment information and generates a corresponding unlocking request to obtain the unlocking information of the target equipment. The unlocking information of the target equipment is then sent to the cloud server through the maintenance management machine. The cloud server stores electrical equipment that does not meet preset conditions in each wiring diagram. The preset conditions are used to indicate whether the equipment can be locked, can be unlocked, is in a safe state, or is not in operation.

[0134] 503. Authorize the unlocking task through the management host and / or at least one auditing terminal. After the authorization is completed, unlock the device lock corresponding to the unlocking task in at least one device lock through the smart key based on the unlocking task forwarded by the maintenance management unit.

[0135] In one feasible implementation, the steps of authorizing and approving the unlocking task through a management host and / or at least one auditing terminal specifically include: approving the unlocking task through the management host and at least one auditing terminal respectively; if the approval results from both the management host and at least one auditing terminal indicate approval, the approval is deemed successful, and the approval result is sent to at least one auditing terminal; and configuring authorization information through at least one auditing terminal, wherein the number of at least one auditing terminal is one or more. Alternatively, the unlocking task is approved through the management host; if the approval result indicates approval, authorization information is configured. Alternatively, the unlocking task is approved and authorized through at least one auditing terminal and then reviewed; if the review is successful, the approval and authorization are deemed complete, wherein the number of at least one auditing terminal is one or more.

[0136] The unlocking task is reviewed by a management host and at least one verification terminal. If at least one verification result from either the management host or the verification terminal indicates failure, the task is deemed unsuccessful and the corresponding result is sent to the cloud server. The unlocking task is also reviewed and authorized by at least one verification terminal. If either the initial review or the subsequent verification fails, the corresponding review result or verification result is returned.

[0137] By enabling single-end or multi-end review and authorization, the review methods have been enriched and the adaptability has been enhanced.

[0138] In one feasible implementation, the above-mentioned step of authorizing and reviewing the unlocking task through at least one review terminal, and determining that the authorization is completed if the review is successful, includes: reviewing the unlocking task through at least one review terminal; if the review results of at least one review terminal all indicate that the task is successful, the task is determined to be successful; and sending the successful review results to the target review terminal among the at least one review terminals; configuring authorization information through the target review terminal; and reviewing the authorization information configuration of the target review terminal through the review terminals other than the target review terminal among the at least one review terminals; if the review is successful, the authorization is determined to be successful.

[0139] Specifically, if at least one audit result from at least one audit terminal indicates failure, the audit is deemed unsuccessful, and the corresponding audit result is sent to the cloud server. If all review results from at least one audit terminal other than the target audit terminal indicate success, the review is deemed successful. If at least one review result from at least one audit terminal other than the target audit terminal indicates failure, the review is deemed unsuccessful. If the review fails, the review content is fed back to the cloud server.

[0140] By employing multiple review and authorization methods and verification processes, the security and accuracy of review and authorization have been improved.

[0141] In one feasible implementation, the above-mentioned authorization and verification of the unlocking task through at least one verification terminal, and the determination that the authorization is completed if the verification is successful, includes: verifying the unlocking task through the target verification terminal among at least one verification terminal; if the verification result indicates that the task is successful, configuring the authorization information through the target verification terminal; and verifying the verification and authorization information configuration of the target verification terminal through at least one verification terminal other than the target verification terminal; if the verification is successful, the determination that the authorization is successful.

[0142] If the review result indicates failure, the review result will be sent back to the cloud server. If the review results from at least one review terminal (excluding the target review terminal) all indicate success, the review is considered successful. If at least one review result from at least one review terminal (excluding the target review terminal) indicates failure, the review is considered unsuccessful. If the review fails, the review content will be sent back to the cloud server.

[0143] The single-end review and authorization method simplifies the process, while the multi-end review method improves the security and accuracy of the review and authorization.

[0144] In one feasible implementation, the steps of unlocking at least one device lock corresponding to an unlocking task based on an unlocking task forwarded by a maintenance management machine using a smart key specifically include: obtaining the unlocking sequence in the unlocking task forwarded by the maintenance management machine using a smart key, and matching the unlocking permissions and unlocking information corresponding to the unlocking task; verifying the input unlocking verification information based on the unlocking permissions using a smart key; and if the verification is successful, unlocking at least one device lock corresponding to the unlocking task using a smart key according to the unlocking sequence and the corresponding unlocking information.

[0145] The unlocking information can be the unlocking key or the unique identifier of the corresponding device lock. Unlocking permissions can be the access rights of the maintenance personnel involved in the unlocking task to the smart key and the unlocking rights of the corresponding device lock. Unlocking verification information can be the identity verification information entered by the maintenance personnel involved in the unlocking task. If verification fails, a prompt will be displayed, and feedback will be sent to the maintenance management machine and the cloud server.

[0146] By authorizing unlocking based on permission settings, the security and efficiency of unlocking are improved.

[0147] 504. The lock management cabinet identifies the unlocked equipment locks, stores and locks them, and provides feedback on the stored equipment locks.

[0148] In one feasible implementation, step 504 specifically includes: matching the maintenance task corresponding to the unlocking task with the lock management cabinet, and matching the first cabinet opening permission corresponding to the maintenance task; verifying the input verification information based on the first cabinet opening permission through the lock management cabinet; if the verification passes, identifying whether there is an unlocked device lock in the target area; if there is an unlocked device lock in the target area, identifying the unlocked device lock through the lock management cabinet, forcibly locking the cabinet door after identification, and sending the stored device lock information to the cloud server or maintenance management machine after locking. The stored device lock information includes the device lock's identity information, current storage status, and storage time.

[0149] The maintenance task can be based on the testing of the equipment's opening and closing mechanism. The first access permission refers to the operation permission of the maintenance personnel corresponding to the maintenance task for the lock management cabinet. The information to be verified is the identity verification information of the maintenance personnel corresponding to the maintenance task. If verification fails, a prompt will be displayed, prompting the user to re-enter new verification information. The target area is the area within the lock management cabinet where the equipment locks are stored.

[0150] Optionally, the lock management cabinet's identification device can be used to identify the target area to determine whether an unlocked equipment lock exists in the target area. If no unlocked equipment lock exists in the target area, a prompt will be given so that the maintenance personnel corresponding to the maintenance task can place the unlocked equipment lock in the target area of ​​the lock management cabinet.

[0151] It should be noted that the unlocked device lock refers to the device lock after the device has been unlocked to a specified state. When the device lock is stored in the lock management cabinet, it is in a locked state.

[0152] By verifying the first opening permission of the lock management cabinet, identifying the identity of the equipment locks, and forcibly locking them, the security and effectiveness of the operation are improved. Through information feedback, real-time updates and sharing of information are achieved.

[0153] 505. Generate a lock recovery task based on at least part of the unlocking task via a cloud server.

[0154] In one feasible implementation, step 505 specifically includes: when the management host receives a recovery instruction based on an unlocking task sent by the maintenance management machine, the cloud server performs mirror mapping on at least some of the unlocking tasks and generates corresponding lock recovery tasks; or, when the management host receives target device locking information sent by the maintenance management machine, the cloud server generates corresponding lock recovery tasks based on the target device locking information, wherein the target device locking information includes device information corresponding to at least some of the unlocking tasks based on the wiring diagram and a locking request that meet preset conditions.

[0155] Optionally, taking the mirror mapping of all unlocking tasks and the generation of corresponding lock restoration tasks via a cloud server as an example, the maintenance personnel corresponding to the unlocking task touch the corresponding button on the maintenance management machine. The maintenance management machine detects that the button corresponding to the unlocking task has been touched, and triggers a restoration command based on the unlocking task to the management host. By logging into the management host to connect to the cloud server, the unlocking tasks are mirrored and the corresponding lock restoration tasks are generated via the cloud server. Figure 6 As shown, Figure 6 The following explanation uses the example of a lock-picking task that includes the device name, device number, device attributes, and device code.

[0156] By generating lock recovery tasks in multiple ways, the operational diversity of the lock control system based on the maintenance equipment opening and closing test is enhanced, the convenience of lock control based on the maintenance equipment opening and closing test is improved, and the efficiency and level of lock control based on the maintenance equipment opening and closing test are also improved.

[0157] 506. Based on the lock recovery task, the lock management cabinet releases the storage locks of the equipment corresponding to the lock recovery task and provides feedback on the current information of the equipment locks.

[0158] In one feasible implementation, step 506 specifically includes: when the lock management cabinet receives a lock restoration task, matching the corresponding second cabinet opening permission based on the lock restoration task; when the lock management cabinet obtains the cabinet opening verification information, verifying the cabinet opening verification information based on the unlocking permission; if the verification is successful, unlocking the locked cabinet door, identifying whether there is a device lock in the target area, and sending the identification result and the associated information of the device lock to the cloud server and the maintenance management machine.

[0159] The second cabinet opening permission refers to the operation permission of the maintenance personnel corresponding to the lock restoration task for the lock management cabinet. Optionally, the second cabinet opening permission can be the same as the first cabinet opening permission, i.e., the maintenance personnel corresponding to both the maintenance task and the lock restoration task are the same; alternatively, the second cabinet opening permission can be different from the first cabinet opening permission, i.e., the maintenance personnel corresponding to both the maintenance task and the lock restoration task are different. The associated information of the equipment lock includes, but is not limited to, the time when the equipment lock was removed from the lock management cabinet, as well as the status, shape, unique identifier, and identity information of the equipment lock. The verification information based on the cabinet opening is the identity verification information of the maintenance personnel corresponding to the lock restoration task. If the verification fails, the verification information is fed back to the cloud server through the lock management cabinet.

[0160] By verifying the first access permission of the lock management cabinet, the security and effectiveness of the operation are improved, and real-time information updates and sharing are achieved through information feedback.

[0161] 507. Unlock the device lock after it has been released from storage using the smart key based on the lock recovery task, and then lock the corresponding device using the unlocked device lock.

[0162] The process of unlocking the device locks retrieved from the lock management cabinet after unlocking via a lock recovery task using a smart key in step 507 is similar to the process of unlocking the device lock corresponding to the unlocking task forwarded by the maintenance management machine via a smart key in step 503, and the process of unlocking the device lock corresponding to the unlocking task forwarded by the maintenance management machine via a smart key in step 402. Therefore, it will not be described in detail here. The unlocked device lock is then used to lock the corresponding device, thus restoring the device to its locked state.

[0163] In this embodiment of the invention, a closed-loop management system for lock unlocking and restoration is achieved, improving the efficiency and level of lock management at the maintenance site. This avoids security risks such as entering the wrong lock bay or accidentally opening equipment locks. It also achieves standardized, mandatory, and refined management of the equipment lock process, solving problems such as lost or difficult-to-find equipment locks. Through artificial intelligence recognition and topology algorithm analysis in the information processing model, the accuracy of automated programming and processing is improved, ensuring the accuracy of unlocking authorization. This achieves the effect of improving the efficiency of lock management while ensuring its security.

[0164] Figure 7This is a schematic diagram of a lock control device 700 based on a maintenance equipment opening and closing test, provided by an embodiment of the present invention. The lock control device 700 can vary significantly due to different configurations or performance characteristics. It may include one or more central processing units (CPUs) 710 (e.g., one or more processors) and a memory 720, and one or more storage media 730 (e.g., one or more mass storage devices) storing application programs 733 or data 732. The memory 720 and storage media 730 can be temporary or persistent storage. The program stored in the storage media 730 may include one or more modules (not shown in the diagram), each module including a series of computer program operations on the lock control device 700 based on the maintenance equipment opening and closing test. Furthermore, the processor 710 may be configured to communicate with the storage media 730 and execute the series of computer program operations in the storage media 730 on the lock control device 700 based on the maintenance equipment opening and closing test.

[0165] The lock control device 700 based on the equipment opening and closing test during maintenance may also include one or more power supplies 740, one or more wired or wireless network interfaces 750, one or more input / output interfaces 760, and / or one or more operating systems 731, such as Windows Server, Mac OS X, Unix, Linux, FreeBSD, etc. Those skilled in the art will understand that... Figure 7 The lock control device structure shown is not intended to limit the lock control device based on the maintenance equipment opening and closing test. It may include more or fewer components than shown, or combine certain components, or have different component arrangements.

[0166] The present invention also provides a lock control device based on maintenance equipment opening and closing test, comprising: a memory and at least one processor, wherein the memory stores a computer program, and the memory and the at least one processor are interconnected by a line; the at least one processor calls the computer program in the memory to cause the lock control device based on maintenance equipment opening and closing test to perform the steps in the above-described lock control method based on maintenance equipment opening and closing test.

[0167] The present invention also provides a computer-readable storage medium, which can be a non-volatile computer-readable storage medium or a volatile computer-readable storage medium, wherein a computer program is stored in the computer program, and when the computer program is run on a computer, the computer performs the steps of a lock control method based on a maintenance equipment opening and closing test.

[0168] Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the specific working processes of the systems, devices, and units described above can be referred to the corresponding processes in the foregoing method embodiments, and will not be repeated here.

[0169] If the integrated unit is implemented as a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present invention, in essence, or the part that contributes to the prior art, or all or part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several computer programs to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the methods of the various embodiments of the present invention. The aforementioned storage medium includes various media capable of storing program code, such as USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), magnetic disks, or optical disks.

[0170] The above embodiments are only used to illustrate the technical solutions of the present invention, and are not intended to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A lock control method based on the opening and closing test of maintenance equipment, characterized in that, A lock control system based on the opening and closing test of maintenance equipment is provided. The system includes a management host, a cloud server, a maintenance management machine, a smart key, at least one equipment lock, at least one verification terminal, and a lock management cabinet. The lock control method based on the opening and closing test of maintenance equipment includes: The management host obtains pending work orders and / or target equipment unlocking information based on the equipment disassembly and assembly test, and generates corresponding unlocking tasks based on the pending work orders and / or target equipment unlocking information. The unlocking task is authorized and verified by the management host and / or at least one verification terminal. After authorization, the smart key unlocks the device lock corresponding to the unlocking task among the at least one device locks based on the unlocking task forwarded by the maintenance management unit. Specifically, if the authorization is verified by both the management host and the verification terminal, the authorization is completed by the one with the higher authorization level. If the authorization is verified by the management host, the authorization is completed by the management host. If the authorization is verified by the verification terminal, the authorization is completed by the verification terminal. The lock management cabinet identifies the unlocked device locks, stores and locks them, and provides feedback on the stored device locks. A lock recovery task based on at least a portion of the unlocking task is generated via the cloud server; The lock management cabinet releases the storage locks of the equipment corresponding to the lock recovery task based on the lock recovery task, and provides feedback on the current information of the equipment locks. The smart key unlocks the device lock after it has been released from its locked state based on the lock recovery task, and then locks the corresponding device using the unlocked device lock.

2. The lock control method based on the opening and closing test of maintenance equipment according to claim 1, characterized in that, The step of obtaining pending work orders and / or target equipment unlocking information based on the equipment disassembly and reassembly test through the management host, and generating corresponding unlocking tasks based on the pending work orders and / or the target equipment unlocking information, includes: When the management host only obtains a work order to be processed based on the separation and combination test of the maintenance equipment, the cloud server calls the information processing model corresponding to the data type of the work order to be processed, identifies the information of the work order to be processed, obtains the information to be processed, analyzes the information to be processed through a preset topology algorithm, and generates a corresponding unlocking task based on the analysis results and the information to be processed. Alternatively, when the management host only obtains the target device unlocking information based on the maintenance equipment opening and closing test sent by the maintenance management machine, the cloud server generates a corresponding unlocking task based on the target device unlocking information. The target device unlocking information includes device information based on the wiring diagram that meets preset conditions and an unlocking request.

3. The lock control method based on the opening and closing test of maintenance equipment according to claim 2, characterized in that, The process involves calling an information processing model corresponding to the data type of the work order to be processed via the cloud server to identify information in the work order and obtain the information to be processed, including: The data type of the work order to be processed is identified by the cloud server. If both voice data and image data exist, the cloud server will call a preset voice recognition model to perform voice recognition and text conversion on the voice data in the work order to be processed, and a preset image processing model will call a preset image processing model to perform image recognition and text conversion on the image data in the work order to be processed, so as to obtain the work order text information. The cloud server invokes a pre-set semantic analysis model to perform semantic analysis on the work order text information, and extracts information based on the results of the semantic analysis to obtain information to be processed. The information to be processed includes the area information and equipment information corresponding to the maintenance task.

4. The lock control method based on the opening and closing test of maintenance equipment according to claim 2, characterized in that, The step of analyzing the information to be processed using a preset topology algorithm and generating a corresponding unlocking task based on the analysis results and the information to be processed includes: The cloud server retrieves the current equipment status information from the preset equipment status table, which corresponds to the maintenance task in the pending information; The cloud server uses a preset topology algorithm, current device status information, and preset task rule information to determine whether the device information corresponding to the maintenance task meets preset conditions. If the equipment information corresponding to the maintenance task meets the preset conditions, the cloud server generates the corresponding unlocking task based on the information to be processed.

5. The lock control method based on the opening and closing test of maintenance equipment according to claim 2, characterized in that, The step of obtaining pending work orders and / or target equipment unlocking information based on the maintenance equipment disassembly and assembly test through the management host, and generating corresponding unlocking tasks based on the pending work orders and / or the target equipment unlocking information, further includes: When the management host obtains the pending work order based on the separation and reassembly test of the maintenance equipment and the target equipment unlocking information sent by the maintenance management machine based on the separation and reassembly test of the maintenance equipment, the cloud server calls the information processing model corresponding to the data type of the pending work order to identify the information of the pending work order and obtain the identified information. The cloud server uses a preset topology algorithm to judge the identified information based on preset conditions. If the judgment result indicates that the information passes, the identified information is then verified using the unlocking information of the target device. If the verification is successful, the cloud server will generate a corresponding unlocking task based on the identified information.

6. The lock control method based on the opening and closing test of maintenance equipment according to claim 1, characterized in that, The step of authorizing and approving the unlocking task through the management host and / or the at least one auditing terminal includes: The unlocking task is reviewed by the management host and the at least one review terminal. If the review results of the management host and the at least one review terminal both indicate that the task is approved, the review is deemed to be approved and the approval result is sent to the at least one review terminal. The authorization information is configured through the at least one review terminal. The number of at least one review terminal is one. Alternatively, the unlocking task can be reviewed by the management host, and if the review result indicates that it passes, the authorization information can be configured. Alternatively, the unlocking task can be authorized and reviewed through at least one review terminal. If the review is successful, the authorization is deemed complete. The number of at least one review terminal is one or more.

7. The lock control method based on the opening and closing test of maintenance equipment according to claim 6, characterized in that, The step of authorizing and verifying the unlocking task through at least one verification terminal, and determining that the authorization is complete if the verification is successful, includes: The unlocking task is reviewed by the at least one review terminal. If the review results of the at least one review terminal all indicate that the task has passed, the review is deemed to have passed and the review result is sent to the target review terminal among the at least one review terminals. The authorization information is configured through the target review terminal, and the authorization information configuration of the target review terminal is reviewed by the review terminal other than the target review terminal. If the review is successful, the review and authorization are deemed complete.

8. The lock control method based on the opening and closing test of maintenance equipment according to claim 6, characterized in that, The step of authorizing and verifying the unlocking task through at least one verification terminal, and determining that the authorization is complete if the verification is successful, includes: The unlocking task is reviewed by the target review terminal among the at least one review terminal. If the review result indicates that it passes, the authorization information is configured through the target review terminal. The review and authorization information configuration of the target review terminal is reviewed by the review terminal other than the target review terminal. If the review is successful, the review and authorization are deemed to be completed.

9. The lock control method based on the opening and closing test of maintenance equipment according to claim 1, characterized in that, The step of unlocking the device lock corresponding to the unlocking task among at least one device locks using the smart key based on the unlocking task forwarded by the maintenance management machine includes: The smart key is used to obtain the unlocking sequence in the unlocking task forwarded by the maintenance management machine, and to match the unlocking permissions and unlocking information corresponding to the unlocking task. The smart key verifies the input unlocking verification information based on unlocking permissions; If the verification is successful, the smart key is used to unlock the device lock corresponding to the unlocking task in at least one device lock according to the unlocking sequence and the corresponding unlocking information.

10. The lock control method based on the opening and closing test of maintenance equipment according to claim 1, characterized in that, The process of identifying and storing unlocked device locks through the lock management cabinet, and providing feedback on the stored device locks, includes: The lock management cabinet is used to match the maintenance task corresponding to the unlocking task, and the first cabinet opening permission corresponding to the maintenance task is matched. The lock management cabinet verifies the input verification information based on the first cabinet opening permission. If the verification passes, it identifies whether there is an unlocked device lock in the target area. If an unlocked device lock exists in the target area, the unlocked device lock is identified through the lock management cabinet. After identification, the cabinet door is forcibly locked. Once locked, the information of the stored device lock is sent to the cloud server or the maintenance management machine. The information of the stored device lock includes the device lock's identity information, current storage status, and storage time.

11. The lock control method based on the opening and closing test of maintenance equipment according to claim 1, characterized in that, The generation of a lock restoration task based on at least a portion of the unlocking task via the cloud server includes: When the management host receives a recovery command based on the unlocking task sent by the maintenance management machine, the cloud server performs mirror mapping on at least a portion of the unlocking tasks and generates corresponding lock recovery tasks. Alternatively, when the management host receives the target device lockout information sent by the maintenance management machine, the cloud server generates a corresponding lock recovery task based on the target device lockout information. The target device lockout information includes device information based on the wiring diagram that meets preset conditions and corresponds to at least part of the unlocking task, as well as a lockout request.

12. The lock control method based on the opening and closing test of maintenance equipment according to claim 1, characterized in that, The step of releasing the storage lock of the equipment lock corresponding to the lock recovery task through the lock management cabinet based on the lock recovery task, and feeding back the current information of the equipment lock, includes: When the lock management cabinet receives the lock restoration task, it matches the corresponding second cabinet opening permission based on the lock restoration task; When the lock management cabinet obtains the verification information based on opening the cabinet, it verifies the verification information based on the second opening permission. If the verification is successful, the locked cabinet door is unlocked, and it identifies whether there is a device lock in the target area. The identification result and the associated information of the device lock are sent to the cloud server and the maintenance management machine.

13. A lock control system based on the opening and closing test of maintenance equipment, characterized in that, The lock control system based on the opening and closing test of maintenance equipment includes a management host, a cloud server, a maintenance management machine, a smart key, at least one equipment lock, at least one verification terminal, and a lock management cabinet; wherein... The management host is used to receive pending work orders and / or target equipment unlocking information based on the equipment disassembly and reassembly test, as well as to review and authorize unlocking tasks. The cloud server is used to acquire pending work orders and / or target equipment unlocking information based on the equipment disassembly and assembly test, generate corresponding unlocking tasks based on the pending work orders and / or target equipment unlocking information, perform review and authorization operations based on the unlocking tasks, and generate lock restoration tasks based on at least part of the unlocking tasks. The maintenance management machine is used to send target equipment unlocking information based on the maintenance equipment separation and combination test to the management host, and to issue the unlocking task to the smart key; The smart key is used to unlock the device lock corresponding to the unlocking task among the at least one device locks based on the unlocking task forwarded by the maintenance management machine, and to unlock the device lock after the storage lock has been released based on the lock recovery task. The at least one device lock is used to lock or unlock the device; The at least one verification terminal is used to verify and authorize the unlocking task; The lock management cabinet is used to identify and store unlocked device locks, and to provide feedback on the information of the stored device locks. It is also used to unlock the device locks corresponding to the lock recovery task based on the lock recovery task, and to provide feedback on the current information of the device locks. Specifically, if the review is conducted through both the management host and the review terminal, the authorization is completed by selecting the one with the higher authorization level between the management host and the review terminal; if the review is conducted through the management host, the authorization is completed by the management host; if the review is conducted through the review terminal, the authorization is completed by the review terminal.

14. A lock control device based on the opening and closing test of maintenance equipment, characterized in that, The lock control device based on the opening and closing test of the maintenance equipment includes: a memory and at least one processor, wherein the memory stores a computer program; The at least one processor invokes the computer program in the memory to cause the lock control device based on the maintenance equipment opening and closing test to perform the lock control method based on the maintenance equipment opening and closing test as described in any one of claims 1-12.

15. A computer-readable storage medium storing a computer program thereon, characterized in that, When the computer program is executed by the processor, it implements the lock control method based on the opening and closing test of maintenance equipment as described in any one of claims 1-12.