Machine room management and control system and method

Through the multi-intelligent system, permission verification, monitoring data collection and secure configuration are solved, and the computer room control efficiency and poor accuracy are achieved, and the computer room is stable and efficient.

CN120430772APending Publication Date: 2025-08-05INSPUR TIANYUAN COMM INFORMATION SYST CO LTD
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Patent Information

Application Number
CN202510305992.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-14
Publication Date
2025-08-05

AI Technical Summary

Technical Problem

In the existing technology, computer room management and control relies on manual monitoring and auditing, resulting in low efficiency and poor accuracy, making it difficult to ensure the stable and efficient operation of computer room.

Method used

Multi-agent system is adopted, including the first agent for permission verification and assignment of job tasks, the second agent collects monitoring data, the third agent for abnormal status monitoring, and the fourth agent for safe configuration operations to realize closed-loop management throughout the process.

Benefits of technology

It improves the efficiency and accuracy of computer room management, reduces human interference, and ensures the stable and efficient operation of computer room.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention provides a machine room management and control system and method, and the system comprises a first intelligent agent which is used for carrying out the authority verification of a target object when a current authority application request of the target object is received, and distributing an operation task work order for the target object when the target object passes the authority verification; the second intelligent agent is used for collecting current monitoring data in the machine room according to operation area information and electronic fence information in the operation task work order; the third intelligent agent is used for monitoring the abnormal state of the machine room according to the current monitoring data and the operation task configuration information in the operation task work order to obtain the current abnormal state information of the machine room; and the fourth agent is used for performing safety configuration operation on the machine room according to the current abnormal state information and the current monitoring data. Full-process closed-loop management of machine room management and control is achieved through multi-agent optimization, the efficiency and accuracy of machine room management and control are improved, and stable and efficient operation of a machine room is guaranteed.
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Description

Technical Field

[0001] The present invention relates to the technical field of intelligent management of equipment, and particularly to a computer room control system and method. Background Art

[0002] Effective computer room control can not only ensure the stable operation of computer room equipment, prevent data loss and leakage, but also improve the operation efficiency of enterprises and reduce operation and maintenance costs. Therefore, how to implement efficient and accurate control of computer rooms is an important issue that needs to be studied urgently in the industry.

[0003] In the related art, it is usually necessary to rely on manual monitoring and auditing of the monitoring data inside the computer room collected by monitoring equipment to achieve one-by-one control of the computer room, resulting in low control efficiency of computer room control and being easily affected by manual experience, affecting the accuracy of computer room control, and thus it is difficult to ensure the stable and efficient operation of the computer room.

[0004] Therefore, there is an urgent need to provide a computer room control system and method to solve the above technical problems. Summary of the Invention

[0005] The present invention provides a computer room control system and method to solve the defects in the prior art that manual monitoring and auditing of the monitoring data inside the computer room collected by monitoring equipment are used to achieve one-by-one control of the computer room, resulting in low control efficiency and poor accuracy of computer room control and being difficult to ensure the stable and efficient operation of the computer room, and to achieve intelligent and accurate computer room control to ensure the stable and efficient operation of the computer room.

[0006] The present invention provides a computer room control system, including a first intelligent agent, a second intelligent agent, a third intelligent agent, and a fourth intelligent agent; The first intelligent agent is used to verify the permissions of the target object when receiving a current permission application request of the target object, and allocate a work task order to the target object when the target object passes the permission verification; The second intelligent agent is used to collect the current monitoring data in the computer room according to the work area information and electronic fence information in the work task order; The third intelligent agent is used to monitor the abnormal state of the computer room according to the current monitoring data and the work task configuration information in the work task order, and obtain the current abnormal state information of the computer room; The fourth intelligent agent is used to perform security configuration operations on the computer room according to the current abnormal state information and the current monitoring data.

[0007] According to a computer room control system provided by the present invention, the first intelligent agent is specifically used for: Obtain the identity information and role information of the target object according to the current permission application request; Authenticate the target object according to the identity information; When the target object passes the identity authentication, obtain the patrol inspection record of the target object in the computer room from the historical monitoring data collected by the second intelligent agent; Verify the permission of the target object according to the patrol inspection record and the role information.

[0008] According to a computer room control system provided by the present invention, the first intelligent agent is further configured to: Determine the maximum number of accesses of the target object in the computer room according to the access time period, access area and access transaction type corresponding to the current permission application request, and the role information; When the number of accesses in the patrol inspection record is less than the maximum number of accesses, determine that the target object passes the permission verification; When the number of accesses in the patrol inspection record is greater than or equal to the maximum number of accesses, determine that the target object fails the permission verification.

[0009] According to a computer room control system provided by the present invention, the second intelligent agent is specifically configured to: Determine at least one target monitoring point in the computer room according to the operation area information and electronic fence information in the operation task work order; Collect multi-modal video data in the computer room through the data collection devices configured on each target monitoring point; Perform data preprocessing on the video data of each modality; Perform multi-level information fusion on the preprocessed video data of each modality to obtain the current monitoring data; the multi-level includes a feature level and a decision level; Among them, the multi-modal video data includes multiple items of access control monitoring video data, environmental monitoring video data, safe operation video data, operation trajectory tracking video data, etc.; the data preprocessing includes at least one of frame extraction processing, data conversion processing, normalization processing and redundant data removal processing.

[0010] According to a computer room control system provided by the present invention, the third intelligent agent is specifically configured to: Identify target monitoring data associated with the operation task configuration information from the current monitoring data; Monitor the abnormal state of the computer room according to the target monitoring data to obtain the current abnormal state information of the computer room; Among them, the abnormal state monitoring includes at least one of abnormal behavior state monitoring, abnormal device state monitoring, and abnormal event state monitoring.

[0011] For a computer room control system provided by the present invention, the fourth intelligent agent is specifically used for: Determine the security configuration mode of the computer room according to the abnormal state type corresponding to the current abnormal state information; Generate a warning message for the computer room according to the security configuration mode and the current monitoring data, and push the warning message to the mobile application end; Receive the security operation instruction returned by the mobile application according to the warning message, and perform security configuration operations on the computer room according to the security operation instruction; Among them, the security configuration mode includes at least one of switching to the standby power supply, isolating the faulty device, device security protection, and issuing maintenance notifications.

[0012] For a computer room control system provided by the present invention, the fourth intelligent agent is further used for: In the case of receiving the maintenance instruction of the computer room, determine the maintenance cycle and maintenance mode according to the maintenance instruction; the maintenance mode includes system update and / or backup recovery; Generate a maintenance list according to the maintenance cycle and the maintenance mode, and perform regular maintenance on the computer room according to the maintenance list. ...

[0013] For a computer room control system provided by the present invention, the fourth intelligent agent includes multiple display interfaces; The fourth intelligent agent is further used for: Determine the target display interface and the display style of the target display interface among multiple display interfaces according to the identification information of the computer room; Generate a control report for the computer room according to at least one of the current monitoring data, current abnormal state information, and security configuration operation results of the computer room; Display the control report on the target display interface according to the display style.

[0014] The present invention also provides a computer room control method, which is applied to the computer room control system as described in any one of the above, and the method includes: Based on the first intelligent agent, in the case of receiving the current permission application request of the target object, perform permission verification on the target object, and in the case where the target object passes the permission verification, allocate a job task work order to the target object; Based on the second intelligent agent, collect the current monitoring data in the computer room according to the job area information and electronic fence information in the job task work order. Based on a third intelligent agent, according to the current monitoring data and the operation task configuration information in the operation task work order, perform abnormal state monitoring on the computer room to obtain the current abnormal state information of the computer room; Based on a fourth intelligent agent, according to the current abnormal state information and the current monitoring data, perform security configuration operations on the computer room.

[0015] The present invention also provides an electronic device, including a memory, a processor, and a computer program stored on the memory and executable on the processor. When the processor executes the program, it implements the computer room control method as described in any one of the above.

[0016] The present invention also provides a non-transitory computer-readable storage medium, on which a computer program is stored. When the computer program is executed by a processor, it implements the computer room control method as described in any one of the above.

[0017] The present invention also provides a computer program product, including a computer program. When the computer program is executed by a processor, it implements the computer room control method as described in any one of the above.

[0018] The computer room control system and method provided by the present invention, after the first intelligent agent receives a permission application from a target object, automatically performs permission verification and assigns an operation task work order to the target object that passes the verification, greatly reducing the manual review link and improving the efficiency and accuracy of task assignment; the second intelligent agent automatically collects monitoring data in the computer room according to the operation area and electronic fence information in the operation task work order, avoiding omissions and errors that may occur in manual data collection; the third intelligent agent performs abnormal state monitoring on the computer room based on this monitoring data and operation task configuration information, so as to quickly and accurately identify the abnormal state of the computer room without relying on manual experience; and, the fourth intelligent agent automatically performs security configuration operations on the computer room according to the abnormal state information and monitoring data, further improving the efficiency and accuracy of computer room control. Thus, through the optimization of multiple intelligent agents, the online, digital, and intelligent full-process closed-loop management of computer room control is realized, not only improving the overall efficiency of computer room control, but also reducing the interference of human factors, enhancing the accuracy and stability of computer room control, and thus ensuring the stable and efficient operation of the computer room. Description of the Drawings

[0019] In order to more clearly illustrate the technical solutions in the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0020] Figure 1 It is a schematic structural diagram of the computer room control system provided by the present invention.

[0021] Figure 2 It is one of the schematic flow diagrams of the computer room access management steps provided by the present invention.

[0022] Figure 3 It is another schematic flow diagram of the computer room access management steps provided by the present invention.

[0023] Figure 4 It is a schematic flow diagram of the computer room control method provided by the present invention.

[0024] Figure 5 It is a schematic structural diagram of the electronic device provided by the present invention.

[0025] Reference numerals: 100: Computer room control system; 110: First intelligent agent; 120: Second intelligent agent; 130: Third intelligent agent; 140: Fourth intelligent agent. Detailed implementation manners

[0026] To make the objectives, technical solutions and advantages of the present invention clearer, the technical solutions in the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the present invention. Obviously, the described embodiments are some but not all of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present invention without any creative efforts shall fall within the protection scope of the present invention.

[0027] In the related art, it is usually dependent on manual monitoring and auditing of the monitoring data inside the computer room collected by monitoring devices to achieve one-by-one control of the computer room. This leads to low control efficiency of the computer room management, and is easily affected by manual experience, which affects the accuracy of the computer room management. Furthermore, it is difficult to ensure the stable and efficient operation of the computer room, highlighting the urgency of weak management points and intelligent upgrading. It can be specifically explained from the following aspects: First, the management of personnel and permissions is complex: The management of personnel information and permissions in the computer room involves a large amount of details and data. However, due to the complexity of the management system and the huge amount of information, the workload of maintaining this information is large, the efficiency is low, and the problem of untimely data update is likely to occur. Second, the decentralized management of the system is inefficient: Due to the complex personnel information but decentralized management, more than 100 incoming and outgoing work orders need to be processed daily, and the average approval time-consuming exceeds 10 minutes, with low efficiency and slow response. Third, the work order and safety audits are not transparent: The various audits for entering and leaving the computer room are inconsistent, increasing the safety risks. Fourth, the efficiency of manual operations is low: The operation cycle of the computer room project is long, the manual workload of following the work is large, it is easy to omit, and the safety supervision risk is relatively high. Fifth, the monitoring and response capabilities are insufficient: The video monitoring coverage rate is less than 20%, and the equipment is aging, resulting in more than 45% of the hidden dangers that cannot be actively identified, and more than 50% of the hidden dangers rely on passive reports, seriously affecting the safety and stability of the computer room.

[0028] With the progress and development of technology, the Multi-Agent System (MAS) has been widely concerned because it can achieve the efficient operation and problem-solving of the system through the interaction, coordination and scheduling among agents, and has characteristics such as distribution, flexibility and robustness. It is widely used in many fields such as intelligent robots, traffic control, and flexible manufacturing.

[0029] In view of this, to solve the above technical problems, the present application provides a computer room control system and method. This system is a digital control system for a computer room based on multi-agents. By deploying multiple agents, using the characteristics that multi-agents can perceive the environment, make decisions, execute decisions, learn from experience, and cooperate with each other, and using the built-in rule engine and optimization algorithm in each agent, it guides the agents to make optimal decisions and scheduling for the computer room control tasks, so as to automatically and collaboratively complete functions such as the full process online of entering and leaving the computer room, precise control of the entering and leaving personnel, comprehensive monitoring of computer room data, real-time warning of abnormal events, and real-time security configuration. Thus, by combining the multi-agent cooperation technology with the computer room management technology, it optimizes and realizes the online, digital and intelligent full process of computer room control covering pre-approval, in-process monitoring and post-audit, so as to conduct computer room control intelligently and precisely, and change from passive control to active prevention, thereby ensuring the efficient and stable operation of the computer room and promoting the digital transformation of the computer room.

[0030] Figure 1 It is a schematic structural diagram of the computer room control system provided by the present invention.

[0031] It should be noted that the computer room control system is a multi-agent digital control system for computer rooms, that is, a multi-agent system (Multi-Agent System, MAS). The computer room control system is a control system integrated by multiple agents. Agents can communicate and cooperate with each other to jointly complete complex tasks. Each agent has autonomy, goal orientation, distribution, and cooperation, and can perceive the environment, make decisions, and execute actions. By utilizing the autonomy, distribution, and collaboration capabilities of multiple agents, comprehensive monitoring and intelligent management of the computer room can be effectively achieved.

[0032] As Figure 1 shown, the computer room control system 100 at least includes a first agent 110, a second agent 120, a third agent 130, and a fourth agent 140; among them, the first agent 110, the second agent 120, the third agent 130, and the fourth agent 140 are agents pre-configured with different role information, task information, as well as interaction protocols and communication mechanisms. That is, when constructing the computer room control system, according to the requirements of computer room control, the computer room control tasks can be decomposed into multiple tasks, and corresponding agents can be configured according to different tasks to form the first agent, the second agent, the third agent, and the fourth agent.

[0033] Among them, the first agent has a personnel management role and is used to execute the computer room access management task, which specifically includes sub-tasks such as permission verification and job task work order allocation; the second agent has a job management role and is used to execute the job site monitoring task, which specifically includes but is not limited to sub-tasks such as data collection and data processing; the third agent has an abnormal monitoring role and is used to execute the abnormal monitoring task, which specifically includes but is not limited to sub-tasks such as key data identification and abnormal judgment; the fourth agent has a security configuration role and is used to execute the security configuration task, which includes but is not limited to sub-tasks such as warning, security configuration operation execution, and maintenance.

[0034] The first agent is used to verify the permission of the target object when receiving the current permission application request of the target object, and allocate a job task work order to the target object when the target object passes the permission verification.

[0035] The target object here is the operating personnel who need to enter the computer room.

[0036] Figure 2 is one of the flow schematic diagrams of the computer room access management steps provided by the present invention; Figure 3 is the second flow schematic diagram of the computer room access management steps provided by the present invention; As Figure 2 andFigure 3 As shown, when the current permission application request is for the target object to enter the computer room, after scanning the QR code of the applet for computer room maintenance through the terminal application (Application, APP), personal information can be filled in remotely on the QR code of the applet for computer room maintenance, such as face entry, identity information editing, etc., and then the request is initiated. This request can be directly sent from the terminal to the first intelligent agent, or can be sent from the terminal to the first intelligent agent after the demand department and the maintenance department have authenticated the identity of the target object and approved the permission. This embodiment does not make specific limitations on this.

[0037] Here, only by using the terminal application APP can intelligent permission verification be achieved. It can not only retain the full process information of permission verification, but also accurately control the incoming and outgoing personnel, simplify the process of entering the computer room, and improve the efficiency and convenience of permission verification.

[0038] It should be noted that in the case where it is determined that the target object fails the identity verification or the permission approval, the target object will be prompted to fill in personal information again to initiate a permission application request again.

[0039] The terminal here can be a mobile phone, a wearable device, etc. This embodiment does not make specific limitations on this.

[0040] Optionally, after obtaining the current permission application request, the first intelligent agent can perform permission verification based on the face image and identity information contained in the current permission application request. During the permission verification process, the first intelligent agent can use artificial intelligence (AI) models, such as face recognition models and natural language processing models, etc., to perform identification and verification based on the face image and identity information in the current permission application request, as well as the historical access information of the target object, to determine whether the target object has the permission to enter and exit the computer room; or, match the face image and identity information, etc. in the current permission application request with the sample face images and sample identity information, etc. pre-stored in the permission management library that have the permission to enter and exit the computer room to determine whether the target object has the permission to enter and exit the computer room, etc. This embodiment does not make specific limitations on this.

[0041] In the case where it is determined that the target object passes the permission verification, the first intelligent agent can allocate a job task work order for the target object to ensure that only the authorized target object can enter and exit the computer room, and intelligently control the target object to access and operate different areas in the computer room according to the job task work order, and send the job task work order to the second intelligent agent for the second intelligent agent to perform job monitoring accordingly.

[0042] When allocating job task work orders, it can be based on the role information of the target object, the engineering construction work order transmitted after verification and approval by the maintenance department, as well as the access area and access transaction type corresponding to the current permission application request (such as inspection, maintenance, etc.), to allocate corresponding job task work orders to the target object to ensure the accuracy of computer room control.

[0043] The job task work order here at least includes the authorized job area, electronic fence information (that is, setting a virtual boundary for the job area), and job task configuration information, such as task type, task priority, required tools or equipment, task description, monitoring metrics, job time, equipment to be worked on, etc. This embodiment does not make specific limitations on this.

[0044] The second intelligent agent is used to collect the current monitoring data in the computer room according to the job area information and electronic fence information in the job task work order.

[0045] Optionally, when the first intelligent agent completes the allocation of the job task work order for the target object, the second intelligent agent can obtain the job task work order of the target object through the multi-intelligent agent sharing mechanism, and parse the job task work order of the target object to obtain the job area information and electronic fence information in the job task work order. Then, according to the job area information and electronic fence information, call the corresponding data collection device to collect and obtain the current monitoring data in the computer room, so as to accurately capture and quickly respond to the abnormal state in the computer room subsequently.

[0046] The current monitoring data here can be monitoring data containing one or more modalities, including but not limited to access control status data, personnel entry and exit record data, temperature data, humidity data, smoke concentration data, job tool data, job scope data, equipment operation status, power status, personnel status, personnel job tracking data, such as inspection time, inspection frequency. This embodiment does not make specific limitations on this.

[0047] The third intelligent agent is used to monitor the abnormal state of the computer room according to the current monitoring data and the job task configuration information in the job task work order, and obtain the current abnormal state information of the computer room.

[0048] Optionally, when the second intelligent agent completes the collection of the current monitoring data in the computer room, the third intelligent agent can obtain the current monitoring data in the computer room and the job task work order of the target object through the multi-intelligent agent sharing mechanism, and parse the job task configuration information from the job task work order of the target object, so as to monitor the abnormal state of the computer room by selecting the target monitoring data associated with the job task configuration information in the current monitoring data, and thus obtain the current abnormal state information of the computer room.

[0049] In abnormal state monitoring, the third intelligent agent can use the AI model to identify the abnormal state of the target monitoring data to obtain the current abnormal state information of the computer room, or it can compare and judge the target monitoring data with the corresponding monitoring data threshold to obtain the current abnormal state information of the computer room. This embodiment does not make specific limitations on this.

[0050] The abnormal status monitoring here includes but is not limited to at least one of abnormal behavior status monitoring, abnormal equipment status monitoring and abnormal event status monitoring, among which abnormal behavior status monitoring specifically includes but is not limited to personnel fall monitoring, restricted area intrusion monitoring, and illegal smuggling of equipment monitoring; abnormal equipment status monitoring specifically includes but is not limited to equipment environment status monitoring and equipment working status monitoring; abnormal event status monitoring specifically includes but is not limited to smoke and fire monitoring and floor collapse monitoring.

[0051] The fourth intelligent agent is used to perform safety configuration operations on the computer room based on the current abnormal status information and the current monitoring data.

[0052] Optionally, when the third agent completes the collection of the current monitoring data of the computer room, the fourth agent can collect the current abnormal status information and current monitoring data of the computer room through the multi-agent sharing mechanism, so as to trigger the security configuration operation of the computer room based on the current abnormal status information and current monitoring data, so as to achieve security protection of the computer room.

[0053] The security configuration operation here can be triggered autonomously by the fourth agent; or it can also be triggered by interacting with the mobile application end. For example, the fourth agent here can be constructed through the cloud platform end, that is, the fourth agent can upload the current abnormal state information and current monitoring data of the computer room shared in real time by the second agent and the third agent to the cloud platform end, and upload the warning information generated based on the current abnormal state information and current monitoring data to the cloud platform end, and visualize the data so that the operation and maintenance personnel can access the cloud platform end in real time through the mobile application end, view the current abnormal state information and current monitoring data of the computer room in real time, and when there is a warning information, generate corresponding security operation instructions for the fourth agent based on the current abnormal state information and current monitoring data, so that the fourth agent can perform the corresponding security configuration operation according to the computer room security operation instructions. The security operation instructions here can be determined based on the complexity of the warning information. For example, when the complexity of the warning information is low, the security operation instructions are uploaded directly on the mobile application end. When the complexity of the warning information is high, the security operation instructions are uploaded after an on-site survey of the computer room environment.

[0054] The security configuration operation here refers to the operation of performing security configuration on the computer room, including but not limited to at least one of switching the backup power supply, isolating the faulty equipment, protecting the equipment safety, and issuing the maintenance notice.

[0055] In the system provided by this embodiment, after the first agent receives the permission application of the target object, it automatically performs permission verification and assigns a job task work order to the target object that passes the verification, greatly reducing the manual review link and improving the efficiency and accuracy of task allocation; the second agent automatically collects the monitoring data in the computer room according to the operation area and electronic fence information in the job task work order, avoiding the omissions and errors that may occur in manual data collection; the third agent monitors the abnormal state of the computer room based on this monitoring data and job task configuration information, so as to quickly and accurately identify the abnormal state of the computer room without relying on manual experience; and, the fourth agent automatically performs security configuration operations on the computer room according to the abnormal state information and monitoring data, further improving the efficiency and accuracy of computer room management and control. Thus, through the optimization of multiple agents, the online, digital, and intelligent full-process closed-loop management of computer room management and control is realized, which not only improves the overall efficiency of computer room management and control, but also reduces the interference of human factors, enhances the accuracy and stability of computer room management and control, and thus ensures the stable and efficient operation of the computer room.

[0056] In some embodiments, the first agent is specifically used for: Obtain the identity information and role information of the target object according to the current permission application request; Verify the identity of the target object according to the identity information; In the case where the target object passes the identity verification, obtain the patrol record of the target object in the computer room from the historical monitoring data collected by the second agent; Verify the permission of the target object according to the patrol record and the role information.

[0057] Optionally, when performing permission verification, the first agent can specifically execute the following steps to implement permission verification: Identify the identity information and role information of the target object for the current permission application request to obtain the identity information and role information of the target object. Immediately, match the identity information of the target object with the identity information of the authorized object to determine whether the identity information of the target object is legal, that is, whether it passes the identity verification. If it does not pass the identity verification, prompt the target object to resubmit the permission application request; if it passes the identity verification, further call the historical monitoring data collected by the second agent, which is the monitoring data of the computer room collected in the historical period. And extract the patrol record of the target object in the computer room from the historical monitoring data, including but not limited to the access times, access times, and access areas.

[0058] Subsequently, based on the patrol inspection records and the role information of the target object, permission verification is performed on the target object. For example, the number of permission times used in the patrol inspection records is compared with the permission times threshold corresponding to the role information to determine whether to authorize the target object to enter and exit the computer room again.

[0059] In the system provided by this embodiment, during the permission verification process, not only the identity and role of the target object are considered, but also its historical behavior records in the computer room are combined to improve the flexibility, intelligence and security of permission management through multi-level security verification. Compared with the traditional single identity verification method, this multi-dimensional verification mechanism can effectively prevent illegal intrusion and misoperation, improve the security factor of the computer room, effectively reduce the abnormal risk, and ensure the stable operation of the computer room.

[0060] In some embodiments, the first intelligent agent is further configured to: According to the access time period, access area and access transaction type corresponding to the current permission application request, and the role information, determine the maximum number of accesses of the target object in the computer room; In the case where the number of accesses in the patrol inspection records is less than the maximum number of accesses, determine that the target object passes the permission verification; In the case where the number of accesses in the patrol inspection records is greater than or equal to the maximum number of accesses, determine that the target object fails the permission verification.

[0061] Optionally, when performing permission verification, the first intelligent agent can also execute the following steps to implement permission verification: Based on the association relationships between the access time period, access area and access transaction type corresponding to the current permission application request, and the role information, respectively, and the access times threshold, obtain the access times threshold associated with the access time period, access area and access transaction type corresponding to the current permission application request, and the role information as the maximum number of accesses of the target object in the computer room. When the patrol inspection records of the target object show that its access times are lower than the maximum number of accesses, automatically determine that the target object passes the permission verification and allow access, thus ensuring that necessary operations can be carried out smoothly. On the contrary, if the access times have reached or exceeded the preset maximum value, it is determined that it fails the permission verification and further access is restricted, effectively preventing the security risks or resource abuse that may be brought by excessive access.

[0062] The system provided by this embodiment not only improves the intelligent level of computer room management, but also significantly enhances the security and operation and maintenance efficiency of the computer room by dynamically adjusting the access permission policy according to the access time period, access area and access transaction type corresponding to the current permission application request, and the role information.

[0063] In some embodiments, the second intelligent agent is specifically configured to: Determine at least one target monitoring point in the computer room according to the operation area information and electronic fence information in the operation task work order; Collect multi-modal video data in the computer room through the data acquisition devices configured on each of the target monitoring points; Perform data preprocessing on the video data of each modality; Perform multi-level information fusion on the preprocessed video data of each modality to obtain the current monitoring data; the multi-level includes the feature level and the decision level; Among them, the multi-modal video data includes multiple items such as access control monitoring video data, environmental monitoring video data, safety operation video data, and operation trajectory tracking video data; the data preprocessing includes at least one of frame extraction processing, data conversion processing, normalization processing, and redundant data removal processing.

[0064] Optionally, the second intelligent agent can execute the following steps to implement on-site operation monitoring: Associate the operation area information and electronic fence information of the operation task work order, and determine at least one target monitoring point associated with the operation area information and electronic fence information among the multiple monitoring points configured in the computer room. And retrieve different data acquisition devices at each target monitoring point to collect multi-modal video data in the computer room to form a comprehensive view of the computer room status.

[0065] The data acquisition devices therein include multiple items as follows: Access control monitoring device, which is used to receive and process the video data uploaded by the access control system to form access control monitoring video data, including but not limited to access control status data and / or personnel entry and exit record data; Environmental monitoring device, which is used to collect environmental parameters to form monitoring video data, including but not limited to at least one of temperature data, humidity data, and smoke concentration data; Safety operation monitoring device, which is used to collect safety operation video data, including but not limited to operation tool data (used to judge whether a device outside the rules is carried) and operation range data (used to judge whether an unauthorized area is entered); Operation trajectory monitoring device, which is used to collect operation trajectory tracking video data, including but not limited to patrol time, patrol frequency, and patrol personnel information to prevent false patrols.

[0066] After obtaining the multi-modal video data in the computer room, it is possible to use the time-lapse dynamic monitoring technology for data processing and real-time analysis to obtain the current monitoring data. Specifically, perform preprocessing on the collected video data of each modality, such as at least one of frame extraction processing, data conversion processing, normalization processing, and redundant data removal processing, to obtain high-quality video data.

[0067] The frame extraction process extracts key frames from the changing frames of the video by setting a specific frame extraction interval or a dynamic frame extraction strategy based on a time interval. This not only reduces the data volume but also retains the core information of the video. The data conversion process can convert image data into numerical data. The normalization process is used to eliminate data differences between different video sources and ensure data consistency. The redundant data removal process is used to remove redundant data, such as removing frames with similar colors, shapes, or duplicates, to further optimize the data quality.

[0068] Subsequently, feature extraction and feature decision-making are performed on the preprocessed video data of each modality to achieve information fusion at the feature level and decision level, and the current monitoring data is obtained.

[0069] The system provided in this embodiment determines target monitoring points in the computer room and uses a variety of data collection devices to collect multi-modal video data. After data preprocessing and multi-level information fusion, it ensures the comprehensiveness, accuracy, and real-time nature of the data to comprehensively, real-timely, and high-quality monitor the state of the computer room, thereby improving the efficiency and accuracy of computer room management and control.

[0070] In some embodiments, the third intelligent agent is specifically used for: Identifying target monitoring data associated with the job task configuration information from the current monitoring data; Based on the target monitoring data, monitoring the abnormal state of the computer room to obtain the current abnormal state information of the computer room; Among them, the abnormal state monitoring includes at least one of abnormal behavior state monitoring, abnormal device state monitoring, and abnormal event state monitoring.

[0071] Optionally, the third intelligent agent can specifically perform the following steps to achieve abnormal state monitoring: Using the time-lapse dynamic monitoring technology and AI real-time analysis algorithm, identifying target monitoring data associated with the job task configuration information from the current monitoring data. And based on the target monitoring data, monitoring the abnormal state of the computer room to obtain the current abnormal state information of the computer room. The abnormal state monitoring includes at least one of abnormal behavior state monitoring, abnormal device state monitoring, and abnormal event state monitoring. The specific implementation is as follows: Abnormal behavior state monitoring: Using AI technology to perform real-time analysis on the target monitoring data to identify abnormal behaviors of personnel in the computer room, such as personnel falling, unauthorized entry into restricted areas, illegal carrying of equipment, illegal operation of equipment, personnel wandering, or abnormal gatherings. For example, using the YOLOv5 algorithm to accurately identify personnel behaviors to ensure the accurate detection of abnormal behaviors; Abnormal device state monitoring: Evaluating the health status and predicting risks of equipment through the operation data of equipment in the computer room and the target monitoring data; Abnormal event status monitoring: Combining various sensor data in the computer room (such as smoke sensors, water leakage detection) and target monitoring data, it monitors abnormal events in the computer room in real time, such as fires, water leakage, or floor collapses.

[0072] The system provided in this embodiment can comprehensively, real-time, and intelligently monitor various abnormal situations in the computer room through multi-dimensional abnormal status monitoring, ensuring the safe and stable operation of the computer room.

[0073] In some embodiments, the fourth intelligent agent is specifically used for: Determine the security configuration mode of the computer room according to the abnormal status type corresponding to the current abnormal status information; Generate a warning message for the computer room according to the security configuration mode and the current monitoring data, and push the warning message to the mobile application; Receive the security operation instructions returned by the mobile application according to the warning message, and perform security configuration operations on the computer room according to the security operation instructions; Among them, the security configuration mode includes at least one of switching to the standby power supply, isolating the faulty equipment, protecting the equipment security, and issuing maintenance notifications.

[0074] Optionally, the fourth intelligent agent can specifically execute the following steps to implement the security configuration of the computer room: According to the association relationship between the abnormal status type corresponding to the current abnormal status information and the security configuration mode, obtain the security configuration mode of the computer room by association. The security configuration mode includes but is not limited to at least one of switching to the standby power supply, isolating the faulty equipment, protecting the equipment security, and issuing maintenance notifications.

[0075] Immediately, based on the determined security configuration mode and the current monitoring data, generate a warning message for the computer room, and push the warning message to the mobile application. After the mobile application receives the warning message, the operation and maintenance personnel can return security operation instructions according to the warning message. The warning message here can include the abnormal type, severity, affected area, and recommended treatment measures. <s

[0076] After receiving these instructions, the fourth intelligent agent performs corresponding security configuration operations on the computer room. For example, if the warning message indicates a device failure, and the operation and maintenance personnel issue a faulty equipment isolation instruction through the mobile application, the fourth intelligent agent can perform the security configuration operation of isolating the faulty equipment on the computer room based on this, thereby realizing the intelligent security management of the computer room, ensuring the rapid response and effective handling of abnormal states, improving the operation and maintenance efficiency and reducing the failure risk, so as to reduce the necessary losses.

[0077] In some embodiments, the fourth intelligent agent is further used for: In the case of receiving the maintenance instruction for the computer room, determine the maintenance cycle and maintenance mode according to the maintenance instruction; the maintenance mode includes system update and / or backup restoration; Generate a maintenance list according to the maintenance cycle and the maintenance mode, and perform regular maintenance on the computer room according to the maintenance list.

[0078] The maintenance instruction here is an instruction for maintaining the computer room, which can be issued by the computer room maintenance platform.

[0079] Optionally, the fourth intelligent agent can also execute the following steps to achieve intelligent operation and maintenance of the computer room, so as to reduce manual intervention and improve operation and maintenance efficiency: When receiving the maintenance instruction for the computer room, it can either parse the maintenance instruction to obtain the corresponding maintenance cycle and maintenance mode, or associate and obtain the corresponding maintenance cycle and maintenance mode based on the identifier of the maintenance instruction.

[0080] After obtaining the maintenance cycle and maintenance mode, combine the maintenance cycle and maintenance mode to form a detailed maintenance list, so as to perform regular maintenance on the computer room according to the maintenance list subsequently. Thus, through an intelligent maintenance process, the reliability and stability of the equipment are improved, the service life of the equipment is extended, the downtime caused by equipment failures is reduced, and at the same time, manual intervention is reduced and operation and maintenance efficiency is improved.

[0081] In some embodiments, the fourth intelligent agent includes multiple display interfaces; The fourth intelligent agent is further configured to: Determine a target display interface and the display style of the target display interface among the multiple display interfaces according to the identification information of the computer room; Generate a control report for the computer room according to at least one of the current monitoring data, current abnormal status information, and security configuration operation results of the computer room; Display the control report on the target display interface according to the display style.

[0082] Optionally, in order to provide real-time and intuitive control information for computer room management personnel and improve the efficiency and accuracy of computer room management, the fourth intelligent agent can display the control information of the computer room through multiple display interfaces, and the specific implementation is as follows: Select a target display interface that matches the current computer room among the multiple display interfaces according to the identification information of the computer room (such as computer room name, number or area division). At the same time, determine the display style of the target display interface according to the association relationship between the identification information of the computer room and the display style.

[0083] Generate a comprehensive management and control report based on at least one of the current monitoring data, current abnormal status information, and security configuration operation results of the computer room, and display the management and control report on the target display interface according to the determined display style to provide strong decision-making support for the management level. For example, the management and control report can display key indicators (such as temperature and humidity, equipment status) through a graphical interface, and intuitively present the status of the computer room through color coding (such as green for normal and red for abnormal).

[0084] The content displayed on the target display interface here supports access from each terminal, so that management, operation and maintenance, and production personnel can keep track of the dynamics of the computer room in real time.

[0085] In summary, the computer room management and control system provided by the embodiments of this application has the following specific advantages in the digital and intelligent management of the computer room: First, distributed characteristics and modular design: The computer room management and control system adopts a multi-agent system, which has good distributed characteristics and modularity. The system decomposes complex problems into multiple sub-problems through decentralized control, and each sub-problem is solved by multiple agents respectively. It can adapt to the expansion of the computer room scale and the increase in complexity, and makes the system more flexible, easier to design and maintain through the distributed structure, reduces the overall cost, realizes the refinement and parallel processing of tasks, and improves the overall management efficiency; Second, collaborative operation and problem handling: Multiple agents can jointly solve complex management problems through communication and collaboration, and each agent can independently handle sub-problems and share and coordinate information when necessary to achieve the efficient solution of problems. This mechanism improves the response speed and fault handling ability of computer room management; Third, real-time monitoring and data analysis: The computer room management and control system adopts a multi-agent system, which can obtain various parameters and equipment status of the computer room in real time, keep track of the operation of the computer room in real time, and ensure the timely discovery of potential problems. In terms of data analysis, the agent has the ability to process and analyze data, can identify the collected data, detect potential risks and hidden dangers, and provide a scientific basis and decision-making support for computer room management; Fourth, intelligent decision-making and automatic regulation: Based on the data analysis results, the computer room management and control system adopting a multi-agent system can make intelligent decisions, provide the best solution for computer room management, and the agent can automatically execute regulation tasks according to the decision results, such as adjusting equipment parameters, starting or stopping equipment, etc. This automatic regulation mechanism improves the automation level of computer room management and reduces the unknown risks of human intervention; Fifth, high availability and reliability: The computer room management and control system adopts a multi-agent system. Through redundant design and fault tolerance mechanisms, it ensures high availability and reliability in computer room management. Even if some agents fail or malfunction, other agents can still continue to execute tasks, ensuring the normal operation of the computer room. The communication and cooperation mechanisms between agents make the system more reliable. In case of abnormal situations, agents can quickly respond and cooperate to handle them, reducing the impact of faults on the operation of the computer room.

[0086] Therefore, the adoption of a multi-agent system in the computer room management and control system demonstrates significant technical advantages in the digital and intelligent management of computer rooms. These advantages contribute to improving the efficiency, security, and reliability of computer room management, providing strong support for the enterprise's informatization construction.

[0087] In addition, in practical applications, through case verification, it can be seen that the computer room management and control system provided in this embodiment can enhance the digital and intelligent management of computer rooms. The multi-agents enable more intelligent, efficient, and secure computer room management and control through multiple dimensions such as distributed collaborative monitoring, intelligent access control, automated fault detection and response, remote monitoring and operation and maintenance. Real-time monitoring and early warning reduce potential safety hazards. The AI can identify abnormal states with over 90% accuracy, the video monitoring system has a coverage rate increased to 80%, automated management reduces manual intervention by 90%, and the efficiency and accuracy are respectively increased by 80% and 95%, effectively ensuring the efficient, safe, and stable operation of the computer room, providing strong guarantee for the enterprise's digital transformation.

[0088] Next, the computer room management and control method provided by the present invention will be described. The computer room management and control method described below can be mutually referred to in correspondence with the computer room management and control system described above.

[0089] Figure 4 is a schematic flowchart of the computer room management and control method provided by the present invention; as Figure 4 shown, this method is implemented based on the computer room management and control system, and specifically includes steps 410, step 420, step 430, and step 440.

[0090] Step 410, based on the first agent, when receiving a current permission application request of a target object, perform permission verification on the target object, and when the target object passes the permission verification, allocate a job task work order to the target object; Step 420, based on the second agent, collect the current monitoring data in the computer room according to the job area information and electronic fence information in the job task work order; Step 430, based on the third agent, perform abnormal state monitoring on the computer room according to the current monitoring data and the job task configuration information in the job task work order, and obtain the current abnormal state information of the computer room; Step 440: Based on the fourth intelligent agent, perform security configuration operations on the computer room according to the current abnormal status information and the current monitoring data.

[0091] Optionally, after the first intelligent agent obtains the current permission application request, it can perform permission verification based on the face image and identity information included in the current permission application request. When it is determined that the target object passes the permission verification, the first intelligent agent can assign a job task work order to the target object to ensure that only authorized target objects can enter and exit the computer room, and intelligently control the target object to access and operate different areas in the computer room according to the job task work order, and send the job task work order to the second intelligent agent for the second intelligent agent to perform job monitoring accordingly.

[0092] When the first intelligent agent finishes assigning the job task work order for the target object, the second intelligent agent can obtain the job task work order of the target object through the multi-intelligent agent sharing mechanism, and parse the job task work order of the target object to obtain the job area information and the electronic fence information in the job task work order, and call the corresponding data collection device according to the job area information and the electronic fence information to collect and obtain the current monitoring data in the computer room for subsequent accurate capture and rapid response to the abnormal status in the computer room.

[0093] When the second intelligent agent finishes collecting the current monitoring data of the computer room, the third intelligent agent can obtain the current monitoring data of the computer room and the job task work order of the target object through the multi-intelligent agent sharing mechanism, and parse the job task configuration information from the job task work order of the target object to monitor the abnormal status of the computer room by selecting the target monitoring data associated with the job task configuration information from the current monitoring data, thereby obtaining the current abnormal status information of the computer room.

[0094] When the third intelligent agent finishes collecting the current monitoring data of the computer room, the fourth intelligent agent can collect the current abnormal status information and the current monitoring data of the computer room through the multi-intelligent agent sharing mechanism to trigger the security configuration operation of the computer room according to the current abnormal status information and the current monitoring data, so as to achieve the security protection of the computer room.

[0095] The method provided in this embodiment automatically performs permission verification after the first intelligent agent receives a permission application from a target object, and assigns a job task work order to the target object that passes the verification, greatly reducing the manual review process and improving the efficiency and accuracy of task assignment. The second intelligent agent automatically collects the monitoring data in the computer room according to the work area and electronic fence information in the job task work order, avoiding the omissions and errors that may occur in manual data collection. The third intelligent agent monitors the abnormal state of the computer room based on this monitoring data and job task configuration information, so as to quickly and accurately identify the abnormal state of the computer room without relying on manual experience. Moreover, the fourth intelligent agent automatically performs security configuration operations on the computer room according to the abnormal state information and monitoring data, further improving the efficiency and accuracy of computer room management and control. Thus, through the optimization of multiple intelligent agents, the online, digital, and intelligent full-process closed-loop management of computer room management and control is realized. This not only improves the overall efficiency of computer room management and control, but also reduces the interference of human factors, enhances the accuracy and stability of computer room management and control, and thus ensures the stable and efficient operation of the computer room.

[0096] The method provided by the present invention is implemented based on the computer room management and control system provided in the above system embodiments. For the specific process and detailed content, please refer to the above embodiments and will not be elaborated here.

[0097] Figure 5 An entity structure diagram of an electronic device is illustrated, as Figure 5 shown. The electronic device may include: a processor (processor) 510, a communication interface (Communications Interface) 520, a memory (memory) 530, and a communication bus 540. Among them, the processor 510, the communication interface 520, and the memory 530 communicate with each other through the communication bus 540. The processor 510 may call the logical instructions in the memory 530 to execute the computer room management and control method, which includes: based on the first intelligent agent, when receiving a current permission application request from a target object, performing permission verification on the target object, and when the target object passes the permission verification, assigning a job task work order to the target object; based on the second intelligent agent, collecting the current monitoring data in the computer room according to the work area information and electronic fence information in the job task work order; based on the third intelligent agent, monitoring the abnormal state of the computer room according to the current monitoring data and the job task configuration information in the job task work order to obtain the current abnormal state information of the computer room; based on the fourth intelligent agent, performing a security configuration operation on the computer room according to the current abnormal state information and the current monitoring data.

[0098] In addition, when the logical instructions in the above-mentioned memory 530 are implemented in the form of software functional units and sold or used as independent products, they can be stored in a computer-readable storage medium. Based on such an understanding, the technical solution of the present invention, in essence, or the part that contributes to the prior art, or a part of this 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 instructions for causing a computer device (which may be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the methods described in various embodiments of the present invention. The aforementioned storage medium includes: various media that can store program codes such as USB flash drives, mobile hard disks, read-only memories (ROM, Read-Only Memory), random access memories (RAM, Random Access Memory), magnetic disks, or optical discs.

[0099] On the other hand, the present invention also provides a computer program product. The computer program product includes a computer program that can be stored on a non-transitory computer-readable storage medium. When the computer program is executed by a processor, the computer can execute the computer room management and control method provided by each of the above methods. The method includes: based on the first intelligent agent, when receiving a current permission application request of a target object, performing permission verification on the target object, and when the target object passes the permission verification, allocating a job task work order to the target object; based on the second intelligent agent, collecting the current monitoring data in the computer room according to the job area information and the electronic fence information in the job task work order; based on the third intelligent agent, performing abnormal state monitoring on the computer room according to the current monitoring data and the job task configuration information in the job task work order to obtain the current abnormal state information of the computer room; based on the fourth intelligent agent, performing security configuration operations on the computer room according to the current abnormal state information and the current monitoring data.

[0100] In another aspect, the present invention also provides a non-transitory computer-readable storage medium, on which a computer program is stored. When the computer program is executed by a processor, it realizes the computer room management and control method provided by the above-mentioned various methods. The method includes: based on a first intelligent agent, when receiving a current permission application request of a target object, performing permission verification on the target object, and when the target object passes the permission verification, allocating a job task work order to the target object; based on a second intelligent agent, collecting current monitoring data in the computer room according to the job area information and electronic fence information in the job task work order; based on a third intelligent agent, performing abnormal state monitoring on the computer room according to the current monitoring data and the job task configuration information in the job task work order to obtain the current abnormal state information of the computer room; based on a fourth intelligent agent, performing security configuration operations on the computer room according to the current abnormal state information and the current monitoring data.

[0101] The device embodiments described above are merely illustrative. The units described as separate components may or may not be physically separated, and the components shown as units may or may not be physical units, that is, they may be located in one place or distributed to multiple network units. Some or all of the modules can be selected according to actual needs to achieve the purpose of the solution of this embodiment. Those of ordinary skill in the art can understand and implement it without creative efforts.

[0102] Through the description of the above embodiments, those skilled in the art can clearly understand that each embodiment can be implemented by means of software plus a necessary general hardware platform, and of course, it can also be implemented by hardware. Based on such an understanding, the above technical solutions, in essence, or the part that contributes to the prior art can be embodied in the form of a software product. The computer software product can be stored in a computer-readable storage medium, such as ROM / RAM, magnetic disk, optical disc, etc., and includes several instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute the methods described in each embodiment or some parts of the embodiments.

[0103] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A computer room management and control system, characterized in that: including a first intelligent agent, a second intelligent agent, a third intelligent agent and a fourth intelligent agent; The first agent is configured to perform permission verification on the target object upon receiving the current permission application request of the target object, and to assign a work order to the target object if the target object passes the permission verification; The second agent is configured to collect current monitoring data in the computer room based on the operation area information and electronic fence information in the operation task work order; The third agent is configured to monitor the abnormal state of the computer room based on the current monitoring data and the job task configuration information in the job task work order, and obtain current abnormal state information of the computer room; The fourth intelligent agent is used to perform safety configuration operations on the computer room based on the current abnormal status information and the current monitoring data.

2. The computer room management and control system according to claim 1, characterized in that: The first intelligent agent is specifically used to: Obtaining the target object's identity information and role information based on the current permission application request; authenticating the target object according to the identity information; When the target object passes the identity authentication, obtaining an inspection record of the target object in the computer room from the historical monitoring data collected by the second agent; Perform authority verification on the target object based on the inspection record and the role information.

3. The computer room management and control system according to claim 2, characterized in that: The first intelligent agent is further configured to: Determine the maximum number of times the target object can access the computer room according to the access time period, access area, and access transaction type corresponding to the current permission application request, as well as the role information; If the number of accesses in the inspection record is less than the maximum number of accesses, determining that the target object passes the authority verification; If the number of accesses in the inspection record is greater than or equal to the maximum number of accesses, it is determined that the target object has failed the authority verification.

4. The computer room management and control system according to any one of claims 1 to 3, characterized in that: The second intelligent agent is specifically used to: Determine at least one target monitoring point in the computer room according to the operation area information and electronic fence information in the operation task work order; Collecting multimodal video data in the computer room through data acquisition equipment configured at each target monitoring point; performing data preprocessing on the video data of each modality; Performing multi-level information fusion on the pre-processed video data of each modality to obtain the current monitoring data; the multi-level information fusion includes a feature level and a decision level; Among them, the multimodal video data includes multiple items of access control monitoring video data, environmental monitoring video data, safe operation video data, and operation trajectory tracking video data; the data preprocessing includes at least one of frame extraction processing, data conversion processing, standardization processing and redundant data removal processing.

5. The computer room management and control system according to any one of claims 1 to 3, characterized in that: The third agent is specifically used to: identifying target monitoring data associated with the job task configuration information from the current monitoring data; Monitoring the abnormal state of the computer room according to the target monitoring data to obtain current abnormal state information of the computer room; The abnormal state monitoring includes at least one of abnormal behavior state monitoring, abnormal device state monitoring and abnormal event state monitoring.

6. The computer room management and control system according to any one of claims 1 to 3, characterized in that: The fourth agent is specifically used to: Determining a safety configuration mode of the computer room according to the abnormal state type corresponding to the current abnormal state information; Generate warning information of the computer room according to the security configuration mode and the current monitoring data, and push the warning information to the mobile application end; receiving a security operation instruction returned by the mobile application according to the warning information, and performing a security configuration operation on the computer room according to the security operation instruction; The safety configuration mode includes at least one of switching to a backup power supply, isolating faulty equipment, protecting equipment safety, and issuing a maintenance notification.

7. The computer room management and control system according to any one of claims 1 to 3, characterized in that: The fourth agent is further configured to: Upon receiving a maintenance instruction from the computer room, determining a maintenance cycle and a maintenance mode according to the maintenance instruction; the maintenance mode includes system update and / or backup and recovery; A maintenance checklist is generated according to the maintenance cycle and the maintenance mode, and regular maintenance is performed on the machine room according to the maintenance checklist.

8. The computer room management and control system according to any one of claims 1 to 3, characterized in that: The fourth intelligent body includes multiple display interfaces; The fourth agent is further configured to: Determining a target display interface and a display style of the target display interface among the plurality of display interfaces according to the identification information of the computer room; Generate a management and control report for the computer room based on at least one of the current monitoring data, current abnormal status information, and security configuration operation results of the computer room; The control report is displayed on the target display interface according to the display style.

9. A computer room management and control method, characterized in that: The method is applied to the computer room management and control system according to any one of claims 1 to 8, and the method includes: Based on the first agent, upon receiving a current permission application request from a target object, performing permission verification on the target object, and assigning a work order to the target object if the target object passes the permission verification; Based on the second agent, current monitoring data in the computer room is collected according to the operation area information and electronic fence information in the operation task work order; Based on the third agent, the abnormal state of the computer room is monitored according to the current monitoring data and the job task configuration information in the job task work order to obtain the current abnormal state information of the computer room; Based on the fourth agent, security configuration operations are performed on the computer room according to the current abnormal status information and the current monitoring data.

10. An electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein: When the processor executes the computer program, the computer room control method according to claim 9 is implemented.

11. A non-transitory computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by a processor, the computer room control method according to claim 9 is implemented.

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