Management system and management method for power data center

By scanning equipment information in the power data center, identifying unattached equipment and determining its preset location, the problem of cumbersome access to new equipment in the power data center is solved, and the efficiency of equipment access is improved.

WO2025091916A1PCT designated stage expired Publication Date: 2025-05-08NANJING COLLEGE OF INFORMATION TECH +2
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Patent Information

Application Number
PCT/CN2024/098378
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-10-30
Filing Date
2024-06-11
Publication Date
2025-05-08

AI Technical Summary

Technical Problem

In power data centers, the access to new equipment requires operation and maintenance personnel to distinguish and search for equipment one by one, resulting in cumbersome operation and inefficient efficiency, especially when the equipment data is large.

Method used

By scanning to obtain the equipment information in the power center area, identify the unattached equipment, and determine its preset position based on the coordination attributes of the unattached equipment and the connected equipment, read the positioning information of the operation and maintenance terminal, and instruct the associated equipment information when the preset conditions are met.

Benefits of technology

The access process of new equipment is simplified, the search and inspection work of operation and maintenance personnel is reduced, the coordination and installation efficiency between connected equipment and unconnected equipment is improved, and the connection between new equipment and computer rooms and cabinets is quickly realized.

✦ Generated by Eureka AI based on patent content.

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Abstract

Provided are a management system and management method for a power data center. The method comprises: scanning and acquiring device information of a power center area, wherein the device information comprises a device identifier and an actual distribution image; querying a device worksheet of a power center, so as to identify an unconnected device in the device information; determining a first preset position of the unconnected device on the basis of a matching attribute between the unconnected device and at least one connected device in the device worksheet of the power center, wherein the first preset position is associated with the device information; and reading positioning information of an operation and maintenance terminal which conforms to the matching attribute. It is unnecessary to perform searching and inspection one by one, so that the efficiency of matching installation between the connected device and the unconnected device can be improved; a new device can be associated with a machine room, a cabinet, etc.; and related information of related devices can be added to a management platform of the power center.
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Description

A power data center management system and management method thereof Technical Field

[0001] The present invention belongs to the field of computers, and in particular relates to a power data center management system and a management method thereof. Background Art

[0002] A data center is a physical room, building, or facility that hosts the infrastructure used to build, run, and deliver applications and services, as well as store and manage data related to these applications and services. Therefore, as a type of data center, power data centers play a vital role in the power grid.

[0003] The access of new equipment to the power data center requires operation and maintenance personnel to identify and find specific equipment one by one in order to install the new equipment and associate the new equipment with the computer room, cabinets, etc. When the amount of new equipment data in the power data center is large, the operation is relatively cumbersome, requiring users to perform tedious equipment search operations to achieve the above goals, which is inefficient.

[0004] Summary of the Invention

[0005] The purpose of the embodiments of the present invention is to provide a power data center management system and a management method thereof, aiming to solve the problems raised in the above background technology.

[0006] The embodiment of the present invention is implemented as follows: on the one hand, a power data center management method, the method comprising the following steps:

[0007] Scan and obtain equipment information in the power center area, including equipment identification and actual distribution images;

[0008] Query the power center equipment worksheet to identify unconnected devices in the equipment information;

[0009] Determine a first preset position of the unconnected device based on the matching attributes of the unconnected device and at least one connected device in the power center device work table, wherein the first preset position is associated with the device information;

[0010] Reading the location information of the operation and maintenance terminal that meets the matching attributes;

[0011] When it is determined based on the positioning information that the operation and maintenance terminal meets the preset conditions, the device information associated with the first preset position is indicated based on the coordination attribute, and the preset conditions include determining based on the positioning information that the operation and maintenance terminal enters the power sub-area, and the power sub-area includes the first preset position.

[0012] As a further solution of the present invention, scanning and acquiring equipment information in the power center area includes:

[0013] Determining additional equipment in the power center area based on planar images of the power center area before and after the interval period, wherein the additional equipment includes unconnected equipment;

[0014] Determine the mobile scanning route covering all the additional equipment based on their image distribution positions in the plane image;

[0015] The device information of the additional device is scanned according to the moving scanning route.

[0016] As a further embodiment of the present invention, the method further comprises:

[0017] Identify the device identifier in the device information;

[0018] Searching in an identification appearance library according to the device identification to obtain a first appearance image corresponding to the device identification;

[0019] The first appearance image is matched in the plane image to obtain a second appearance image corresponding to the device identification, where the second appearance image is an actual distribution image.

[0020] As a further embodiment of the present invention, determining the first preset position of the unconnected device based on the matching attributes of the unconnected device and at least one connected device in the power center equipment work table includes:

[0021] Determine several possible distribution locations of the non-connected devices based on the connection relationship between the non-connected devices and the connected devices;

[0022] A first distribution position that meets the installation position attribute among several possible distribution positions is screened to obtain a first preset position where no device is connected.

[0023] As a further solution of the present invention, before reading the location information of the operation and maintenance terminal that meets the matching attributes, the method further includes:

[0024] Determine a plurality of regional identifiers in the power center area, and evenly arrange the plurality of regional identifiers in the power center area;

[0025] Determining a preset range of each of the regional identifiers, identifying all additional equipment included in each of the preset ranges, obtaining a first identification result, and associating the regional identifier with the first identification result;

[0026] A recommended travel route for the operation and maintenance personnel where the operation and maintenance terminal is located is planned according to the plurality of regional identifiers, and the recommended travel route is sent to at least one operation and maintenance terminal.

[0027] As a further solution of the present invention, when it is determined according to the positioning information that the operation and maintenance terminal meets the preset condition, indicating the device information associated with the first preset location according to the coordination attribute includes:

[0028] issuing an installation prompt, identifying additional equipment associated with all first preset locations in the power sub-area, obtaining a second identification result, searching for a target region identifier corresponding to the second identification result based on a regional location relationship, and displaying the target region identifier on the operation and maintenance terminal, wherein the region identifier includes the target region identifier;

[0029] When it is detected that the operation and maintenance terminal is close to the target area identifier, based on the first prompting method, additional equipment included in the preset range of the target area identifier is prompted in sequence according to a preset sorting rule.

[0030] As a further solution of the present invention, the preset sorting rule includes a progressive sorting within a preset range.

[0031] As a further embodiment of the present invention, the method further comprises:

[0032] When it is detected that the operation and maintenance terminal is close to the additional equipment corresponding to the second identification result, the corresponding additional equipment is prompted based on a second prompting method, and the prompt signal strength of the second prompting method is greater than that of the first prompting method.

[0033] As a further embodiment of the present invention, in another aspect, a power data center management system is provided, the system comprising:

[0034] Scanning module, used to scan and obtain equipment information in the power center area;

[0035] A device determination module, configured to determine device information corresponding to the device information, wherein the device information includes a device identification and an actual distribution image;

[0036] A query and identification module is used to query the power center equipment work table to identify unconnected devices in the equipment information;

[0037] A preset position determination module, configured to determine a first preset position of the unconnected device based on the matching attributes of the unconnected device and at least one connected device in the power center device work table, wherein the first preset position is associated with the device information;

[0038] A reading module, used to read the positioning information of the operation and maintenance terminal that meets the matching attributes;

[0039] An indication module is used to indicate device information associated with a first preset position according to the coordination attribute when it is determined that the operation and maintenance terminal meets a preset condition based on the positioning information, wherein the preset condition includes determining that the operation and maintenance terminal enters the power sub-area based on the positioning information, and the power sub-area includes the first preset position.

[0040] As a further solution of the present invention, the scanning module includes:

[0041] A first determining unit is configured to determine additional equipment in the power center area based on the planar images of the power center area before and after the interval period, wherein the additional equipment includes unconnected equipment;

[0042] A second determining unit is configured to determine a moving scanning route covering all the additional equipment according to the image distribution positions of the additional equipment in the plane image;

[0043] The scanning unit is used to scan the device information of the additional device according to the moving scanning route.

[0044] An embodiment of the present invention provides a power data center management system and a management method thereof, which scans and obtains equipment information of a power center area to identify unconnected equipment in the equipment information; determines a first preset position of the unconnected equipment based on the coordination attributes of the unconnected equipment and at least one connected equipment in a power center equipment work table; reads the positioning information of an operation and maintenance terminal that meets the coordination attributes; when it is judged according to the positioning information that the operation and maintenance terminal meets a preset condition, the device information associated with the first preset position is indicated according to the coordination attribute, and the preset condition includes judging according to the positioning information that the operation and maintenance terminal enters the power sub-area. When operation and maintenance personnel install and connect unconnected equipment, they do not need to search and check one by one when facing multiple unconnected equipment, which can improve the efficiency of coordinated installation between connected equipment and unconnected equipment, facilitate the rapid association of new equipment with computer rooms, cabinets, etc., and add relevant information of related equipment to the management platform of the power center. BRIEF DESCRIPTION OF THE DRAWINGS

[0045] FIG1 is a main flow chart of a power data center management method.

[0046] FIG2 is a flow chart of scanning and acquiring equipment information in a power center area in a power data center management method.

[0047] FIG3 is a flow chart of determining device information corresponding to the device information in a power data center management method.

[0048] FIG4 is a flow chart of determining a first preset location of an unconnected device in a power data center management method.

[0049] FIG5 is a flow chart of a power data center management method before reading the location information of an operation and maintenance terminal that meets the coordination attributes.

[0050] FIG6 is a flow chart indicating device information associated with a first preset location in a power data center management method.

[0051] FIG7 is a main structure diagram of a power data center management system. DETAILED DESCRIPTION

[0052] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0053] The specific implementation of the present invention is described in detail below with reference to specific embodiments.

[0054] The present invention provides a power data center management system and a management method thereof, which solve the technical problems in the background technology.

[0055] In this application, the unconnected devices and connected devices are applied to power data centers, which include one or more of data center switch machines, network products, data energy equipment, power equipment, etc., without limitation here;

[0056] FIG1 is a main flow chart of a power data center management method provided by an embodiment of the present invention. The power data center management method includes:

[0057] Step S10: Scan and obtain equipment information in the power center area, the equipment information including equipment identification and actual distribution image;

[0058] When new devices are added to the power center area, the device information of these devices can be obtained by scanning. The device information includes at least a device identifier for distinguishing the device and an image of the device's actual distribution status in the power center area.

[0059] Step S11: querying the power center equipment work table to identify unconnected equipment in the equipment information;

[0060] For unconnected and connected devices in the power center area, there may be unconnected devices that are close to connected devices, resulting in mis-scanning. Therefore, the device information may include the device information of connected devices. Querying the device worksheet is actually to exclude the device information of connected devices. Since the device worksheet contains records of device identification and operating parameters, it can be used to exclude connected devices from the device information.

[0061] Step S12: determining a first preset position of the unconnected device based on the matching attributes of the unconnected device and at least one connected device in the power center device work table, wherein the first preset position is associated with the device information;

[0062] The coordination attribute is mainly achieved by considering the coordination in principle and installation. The connection relationship includes the physical connection relationship and the communication connection relationship. The first preset position of the unconnected device is determined, that is, the theoretically appropriate working position of the unconnected device is automatically determined based on the coordination in principle and actual installation.

[0063] Step S13: reading the location information of the operation and maintenance terminal that meets the matching attributes;

[0064] An operation and maintenance terminal that meets the aforementioned coordination attributes indicates that the operation and maintenance personnel of the operation and maintenance terminal are familiar with the coordination relationship between the connected devices and the unconnected devices, or in other words, the operation and maintenance personnel of the operation and maintenance terminal are used to connect the unconnected devices;

[0065] Step S14: When it is determined based on the positioning information that the operation and maintenance terminal meets the preset conditions, the device information associated with the first preset position is indicated based on the coordination attributes. The preset conditions include determining based on the positioning information that the operation and maintenance terminal enters the power sub-area, and the power sub-area includes the first preset position.

[0066] When the preset conditions are met, the operation and maintenance personnel including the operation and maintenance terminal arrive at the power sub-area where the first preset position is located, and the power center area includes multiple power center areas.

[0067] Therefore, in this embodiment, for the operation and maintenance personnel, the equipment information associated with the first preset position is indicated according to the coordination attributes. When the operation and maintenance personnel install and connect the unconnected equipment, they do not need to search and check one by one when faced with multiple unconnected devices. This can improve the efficiency of the coordinated installation between the connected equipment and the unconnected equipment, facilitate the rapid association of new equipment with computer rooms, cabinets, etc., and add relevant information of the relevant equipment to the management platform of the power center.

[0068] As shown in FIG2 , as a preferred embodiment of the present invention, scanning and acquiring equipment information in the power center area includes:

[0069] Step S101: determining additional equipment in the power center area based on target images of the power center area before and after the interval period, wherein the additional equipment includes unconnected equipment; the target images include planar images;

[0070] If the plane image is of an interval time period, it includes at least two time periods before and after the additional equipment enters the power center area; the plane image obtained in the relatively later time period is compared with the information of the relatively earlier time period to obtain the sub-image added to the plane image, and the additional equipment can be obtained by preliminarily identifying the sub-image;

[0071] Step S102: determining a moving scanning route covering all the additional equipment according to the image distribution positions of the additional equipment in the plane image;

[0072] Based on the planar image, the locations of the additional equipment are sequentially delineated to obtain the image distribution. Based on the initial feasible route of the power center area, when the distance between multiple image distributions is within a set distance, a (shared) branch route leading to the initial feasible route is selected. Otherwise, a branch route is delineated for the equipment location of each image distribution. This can reduce the number of repeated movements from the initial feasible route to the location of the additional equipment and ensure that the scanning route is short. Based on a (shared) branch route, scanning between multiple image distribution locations within the set distance can be achieved, and the number of round trips between multiple image distribution locations and the initial feasible route can be reduced. The initial feasible route includes the delineated route to the power center area.

[0073] Step S103: Scanning device information of the additional device according to the moving scanning route.

[0074] When scanning the device information of the additional equipment, one method is to directly scan the nameplate information or label information of the additional equipment itself. The nameplate or label information can be an RFID nameplate or RFID tag. Radio Frequency Identification (RFID), also known as wireless radio frequency identification, is a communication technology that can identify specific targets and read and write related data through radio signals.

[0075] It can be understood that through the establishment of a mobile scanning route and the scanning of equipment information based on the mobile scanning route, when scanning the equipment information of additional equipment, when obtaining equipment information through nameplate information or label information, it is necessary to read the equipment identification and scan to obtain the actual image of the additional equipment; mobile scanning generally uses a robot with an imaging device and a scanning device.

[0076] As shown in FIG3 , as a preferred embodiment of the present invention, the method further includes:

[0077] Step S111: Identify the device identifier in the device information;

[0078] Step S112: Searching the identification and appearance library based on the device identification to obtain a first appearance image corresponding to the device identification; the identification and appearance library contains pre-established identification-appearance correspondences, and the appearance images in the identification and appearance library are generally standard appearance images provided by the manufacturer (consistent with the appearance between unconnected devices and connected devices); the appearance images generally include at least one from several different viewing angles;

[0079] Step S113: Match the first appearance image with the plane image to obtain a second appearance image corresponding to the device identification. The second appearance image is the actual distribution image. When it comes to devices of the same type, they should be distinguished by the nameplate in the appearance image; that is, it is necessary to identify the nameplate in the appearance image to determine whether it meets the device identification. If it does, the appearance image where the nameplate is located is the second appearance image.

[0080] The device identification and the appearance image have a corresponding relationship. Therefore, after obtaining the first appearance image, it can be identified and matched in the plane image based on the first appearance image. Among them, when the set similarity threshold between the plane image and the first appearance image is met, the second appearance image can be obtained.

[0081] As shown in FIG4 , as a preferred embodiment of the present invention, determining the first preset position of the unconnected device based on the matching attributes of the unconnected device and at least one connected device in the power center equipment work table includes:

[0082] Step S131: determining several possible distribution locations of the non-connected devices based on the connection relationship between the non-connected devices and the connected devices;

[0083] The connection relationship includes a physical connection relationship and a communication connection relationship; both the physical connection relationship and the communication connection relationship can be reflected in a given new device wiring diagram, a communication connection relationship diagram, or an electrical schematic diagram; the connection relationship can be identified by importing the corresponding relationship, and the several possible distribution positions include the vacant positions between connected devices; since the first appearance image has been determined above, the vacant positions between connected devices can be determined based on the first appearance image, and the images of the unconnected devices can be moved into the vacant positions in equal proportion (and equal proportion between the connected devices) to perform a judgment; when the vacant positions can accommodate the images of the unconnected devices, several possible distribution positions of the unconnected devices are obtained;

[0084] Step S132: Filtering a first distribution location that meets the installation location attribute from a plurality of possible distribution locations to obtain a first preset location where no device is connected;

[0085] The installation location attributes include a safety distance attribute and an EMC (Electromagnetic Compatibility) attribute. The safety distance attribute indicates that the first required distance for installation and fixation must be met, and the EMC attribute indicates that the second required distance must be met (increasing the distance can effectively reduce the magnetic field strength. The relative measurement unit between the unconnected device and the connected device, the logarithmic unit decibel dB, is known after simulation measurement). Therefore, at least the larger value between the first required distance and the second required distance needs to be selected. Therefore, the distance between the distributed position and the connected device may be no less than the larger value, so that the first distribution position, that is, the part in the installation interval, can be obtained, and the first preset position of the unconnected device can be obtained.

[0086] It should be understood that by verifying the connection relationship and installation location attributes respectively as described above, the location of the unconnected device that meets the actual installation requirements and theoretical non-interference requirements can be obtained without the need for actual repeated installation and testing, and can meet the actual precise installation location reference.

[0087] As shown in FIG5 , as a preferred embodiment of the present invention, before reading the location information of the operation and maintenance terminal that meets the matching attributes, the method further includes:

[0088] Step S20: determining a plurality of regional identifiers in the power center area, wherein the plurality of regional identifiers are evenly distributed in the power center area;

[0089] The power center area can have many regional identifications, including nameplates with actual regional text, such as primary equipment area, secondary equipment area, equipment maintenance area, quality inspection area, etc.

[0090] Step S21: determining a preset range of each of the regional identifiers, identifying all additional devices included in each of the preset ranges, obtaining a first identification result, and associating the regional identifier with the first identification result;

[0091] Each of the regional identifiers has a corresponding preset range, and multiple regional identifiers can correspond to one preset range, and this range is the regional range; all the additional equipment included in each of the preset ranges can be identified based on the appearance image of the preset range, and all the additional equipment included can be obtained, or based on the positioning information of the additional equipment, the positioning information indicates that all the additional equipment within the preset range is included in the preset range; associating the regional identifier with the first recognition result indicates establishing a correspondence between the preset range and all the corresponding additional equipment, that is, the preset range includes all the additional equipment that actually exists.

[0092] Step S22: planning a recommended travel route for the operation and maintenance personnel where the operation and maintenance terminal is located according to the plurality of regional identifiers, and sending the recommended travel route to at least one operation and maintenance terminal.

[0093] For example, a recommended travel route is generated based on a connection line of at least one area identifier within all preset ranges.

[0094] Therefore, in this embodiment, after the recommended route is sent to the operation and maintenance terminal, the operation and maintenance personnel can travel along the recommended route, thereby becoming familiar with the corresponding relationship between the preset range and the additional equipment.

[0095] As shown in FIG6 , as a preferred embodiment of the present invention, when it is determined according to the positioning information that the operation and maintenance terminal meets the preset conditions, indicating the device information associated with the first preset location according to the coordination attribute includes:

[0096] Step S141: issuing an installation prompt, identifying additional equipment associated with all first preset positions in the power sub-area, obtaining a second identification result, searching for a target region identifier corresponding to the second identification result based on a regional location relationship, and displaying the target region identifier on the operation and maintenance terminal, wherein the region identifier includes the target region identifier; after issuing the installation prompt, obtaining at least one target first preset position input by the operation and maintenance personnel, and the at least one target first preset position as a content item of the second identification result;

[0097] The power sub-area is associated with all first preset locations, that is, one power sub-area corresponds to at least one first preset location. The second identification result is the correspondence between the theoretical installation location and the identifier of the additional device. After obtaining the second identification result, a search is performed to identify the region identifier corresponding to the identifier of the additional device (according to the above, a correspondence has been established between the preset range and all corresponding additional devices; the additional device is located within the preset range, and the preset range is included in the target region).

[0098] After the operation and maintenance terminal issues the installation prompt, since each first preset position should correspond to additional equipment, the purpose of searching for the target area identifier in the second identification result is to link the second identification result with the target area identifier. Since the target area identifier is the identifier of a fixed and known place, it should be familiar to the operation and maintenance personnel. Therefore, based on the first preset position, it is easy to quickly find the corresponding additional equipment within the preset range; thereby establishing a connection between the first preset position and the area identifier.

[0099] Step S142: When it is detected that the operation and maintenance terminal is close to the target area identifier, based on the first prompting method, additional equipment included in the preset range of the target area identifier is prompted in sequence according to a preset sorting rule.

[0100] Among them, the preset sorting rules include progressive sorting within a preset range; including prompting in a progressive order of progress, that is, the first prompting method needs to follow the progressive order of progress in sequence; for example, when the operation and maintenance terminal is detected to be close to the target area identifier, at least one of the operation and maintenance terminals that first approaches the target area is selected; then, the prompt is performed in a progressive manner in the target area, and the additional equipment included in the preset range is prompted according to the interval method of the target area, so that as the operation and maintenance personnel move forward, the additional equipment included in the preset range can be prompted, such as prompting in the order of S-shaped intervals, and prompting in the surrounding order of the "mouth" character in the "field" grid; based on the above preset sorting rules, the efficiency of finding suitable additional equipment in the preset range based on the first preset position can be improved, without the need to search one by one in the preset range, and can assist the operation and maintenance personnel to clarify and become familiar with the additional equipment within the preset range.

[0101] As a further development of the present invention, the method further comprises:

[0102] Step: When the operation and maintenance terminal is detected to be close to the additional equipment corresponding to the second identification result, the corresponding additional equipment is prompted based on the second prompt method, and the prompt signal strength of the second prompt method is greater than the first prompt method. The first prompt method and the second prompt method include prompting through the operation and maintenance terminal; or a fixed-point prompt terminal in the power center area;

[0103] The proximity here and the aforementioned proximity both include the distance between the location of the operation and maintenance terminal and the additional equipment reaching the corresponding preset threshold; the prompt method includes voice and / or vibration prompts, and the prompt signal strength of the second prompt method is greater than the first prompt method, including the voice volume and / or vibration intensity being greater than the first prompt method, thereby enhancing attention when installing and transferring the additional equipment corresponding to the second recognition result.

[0104] It can be understood that based on the aforementioned first prompt method, when the operation and maintenance terminal approaches the additional equipment within the preset range, this prompt is general and generalized. For the additional equipment corresponding to the specific second recognition result, the second prompt method is more targeted for the corresponding additional equipment and can intuitively prompt the user to the target of the second recognition result.

[0105] As shown in FIG7 , as another preferred embodiment of the present invention, in another aspect, a power data center management system includes:

[0106] A scanning and acquiring module 100 is used to scan and acquire equipment information in the power center area, wherein the equipment information includes equipment identification and actual distribution images;

[0107] The query and identification module 200 is used to query the power center equipment work table to identify the unconnected equipment in the equipment information;

[0108] A preset position determination module 300 is configured to determine a first preset position of a non-connected device based on a matching attribute of the non-connected device and at least one connected device in the power center device work table, wherein the first preset position is associated with the device information;

[0109] The reading module 400 is used to read the positioning information of the operation and maintenance terminal that meets the matching attributes;

[0110] The indication module 500 is used to indicate the device information associated with the first preset position according to the coordination attribute when it is determined that the operation and maintenance terminal meets the preset conditions according to the positioning information. The preset conditions include determining that the operation and maintenance terminal enters the power sub-area according to the positioning information, and the power sub-area includes the first preset position.

[0111] For operation and maintenance personnel, according to the coordination attributes, the device information associated with the first preset position is indicated. When the operation and maintenance personnel install and connect unconnected devices, they do not need to search and check one by one when faced with multiple unconnected devices, which can improve the efficiency of coordinated installation between connected devices and unconnected devices.

[0112] The scanning module 100 includes:

[0113] A first determining unit is configured to determine additional equipment in the power center area based on the planar images of the power center area before and after the interval period, wherein the additional equipment includes unconnected equipment;

[0114] A second determining unit is configured to determine a moving scanning route covering all the additional equipment according to the image distribution positions of the additional equipment in the plane image;

[0115] The scanning unit is used to scan the device information of the additional device according to the moving scanning route.

[0116] It can be understood that through the establishment of a mobile scanning route and the scanning of equipment information based on the mobile scanning route, when scanning the equipment information of the excitation device, when obtaining the equipment information through the nameplate information or label information, it is necessary to read the equipment identification and scan to obtain the actual image of the added equipment; mobile scanning generally uses a robot with an imaging device and a scanning device.

[0117] The above embodiment of the present invention provides a power data center management method, and based on the power data center management method, provides a power data center management system, which scans and obtains equipment information of the power center area to identify unconnected equipment in the equipment information; determines the first preset position of the unconnected equipment based on the coordination attributes of the unconnected equipment and at least one connected equipment in the power center equipment work table; reads the positioning information of the operation and maintenance terminal that meets the coordination attributes; when it is judged that the operation and maintenance terminal meets the preset conditions according to the positioning information, indicates the equipment information associated with the first preset position according to the coordination attributes, and the preset conditions include judging that the operation and maintenance terminal enters the power sub-area according to the positioning information. When the operation and maintenance personnel install and connect the unconnected equipment, they do not need to search and check one by one in the face of multiple unconnected devices, which can improve the efficiency of the coordinated installation between the connected equipment and the unconnected equipment.

[0118] In order to enable the above-mentioned method and system to be loaded and run smoothly, in addition to the various modules mentioned above, the system may also include more or fewer components than described above, or a combination of certain components, or different components, for example, it may include input and output devices, network access devices, buses, processors and memories, etc.

[0119] The processor may be a central processing unit (CPU), other general-purpose processors, digital signal processors (DSP), application-specific integrated circuits (ASIC), field-programmable gate arrays (FPGA), other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc. A general-purpose processor may be a microprocessor or any conventional processor. The processor is the control center of the system, connecting various components using various interfaces and lines.

[0120] The memory can be used to store computer and system programs and / or modules. The processor implements the various functions described above by running or executing the computer programs and / or modules stored in the memory and accessing the data stored in the memory. The memory can primarily include a program storage area and a data storage area. The program storage area can store an operating system and at least one application required for a function (such as an information collection template display function, a product information release function, etc.). The data storage area can store data generated based on the use of the berth status display system (such as product information collection templates corresponding to different product types, product information required to be released by different product providers, etc.). In addition, the memory can include high-speed random access memory and non-volatile memory, such as a hard disk, internal memory, a plug-in hard disk, a smart media card (SMC), a secure digital (SD) card, a flash card, at least one disk storage device, a flash memory device, or other volatile solid-state storage device.

[0121] It should be understood that although the various steps in the flow charts of the various embodiments of the present invention are shown in sequence according to the instructions of the arrows, these steps are not necessarily performed in sequence according to the order indicated by the arrows. Unless clearly stated herein, the execution of these steps is not strictly limited in order, and these steps can be performed in other orders. Moreover, at least a portion of the steps in the various embodiments may include multiple sub-steps or multiple stages, and these sub-steps or stages are not necessarily performed at the same time, but can be performed at different times, and the execution order of these sub-steps or stages is not necessarily performed in sequence, but can be performed in turn or alternately with at least a portion of other steps or sub-steps or stages of other steps.

[0122] The technical features of the above-mentioned embodiments can be combined arbitrarily. In order to make the description concise, not all possible combinations of the technical features in the above-mentioned embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0123] The above-described embodiments merely illustrate several implementations of the present invention, and while their descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art would be able to make numerous variations and improvements without departing from the spirit of the present invention, all of which fall within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be determined by the appended claims.

[0124] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A power data center management method, characterized in that: The method comprises: Scan and obtain equipment information in the power center area, the equipment information including equipment identification and actual distribution image; Query the power center equipment worksheet to identify the unconnected equipment in the equipment information; Determine a first preset position of the unconnected device according to the matching attributes of the unconnected device and at least one connected device in the power center equipment work table, wherein the first preset position is associated with the device information; Reading the location information of the operation and maintenance terminal that meets the matching attributes; When it is determined according to the positioning information that the operation and maintenance terminal meets the preset conditions, the device information associated with the first preset position is indicated according to the coordination attribute, and the preset conditions include determining according to the positioning information that the operation and maintenance terminal enters the power sub-area, and the power sub-area includes the first preset position.

2. The power data center management method according to claim 1, characterized in that: The scanning and obtaining of equipment information in the power center area includes: Determining the additional equipment in the power center area according to the target images of the power center area before and after the interval period, the target images including the plane images, and the additional equipment including the unconnected equipment; According to the image distribution positions of the additional equipment in the plane image, a mobile scanning route covering all the additional equipment is determined; The device information of the additional device is scanned according to the mobile scanning route.

3. The power data center management method according to claim 2, characterized in that: The method further comprises: Identify the device identifier in the device information; Searching in an identification appearance library according to the device identification to obtain a first appearance image corresponding to the device identification; The first appearance image is matched in the plane image to obtain a second appearance image corresponding to the device identification, where the second appearance image is an actual distribution image.

4. The power data center management method according to claim 1, characterized in that: The step of determining the first preset position of the unconnected device according to the matching attributes of the unconnected device and at least one connected device in the power center equipment work table includes: Determine several possible distribution locations of the non-connected devices according to the connection relationship between the non-connected devices and the connected devices; A first distribution position satisfying the installation position attribute is screened from among several possible distribution positions to obtain a first preset position where no device is connected.

5. The power data center management method according to any one of claims 2 to 4, characterized in that: Before reading the location information of the operation and maintenance terminal that meets the matching attribute, the method further includes: Determine a number of regional identifiers in the power center area, and the number of regional identifiers are evenly arranged in the power center area; Determine a preset range of each of the regional identifiers, identify all additional devices included in each of the preset ranges, obtain a first identification result, and associate the regional identifier with the first identification result; A recommended travel route for the operation and maintenance personnel where the operation and maintenance terminal is located is planned according to the plurality of regional identifiers, and the recommended travel route is sent to at least one operation and maintenance terminal.

6. The power data center management method according to claim 5, characterized in that: When it is determined according to the positioning information that the operation and maintenance terminal meets the preset condition, indicating the device information associated with the first preset position according to the matching attribute includes: Issue an installation prompt, identify the additional equipment associated with all the first preset positions in the power sub-area, obtain a second identification result, search for a target region identifier corresponding to the second identification result according to the regional position relationship, and display the target region identifier on the operation and maintenance terminal, wherein the region identifier includes the target region Logo; When it is detected that the operation and maintenance terminal is close to the target area identifier, based on the first prompting method, the additional equipment included in the preset range of the target area identifier is prompted in sequence according to the preset sorting rule.

7. The power data center management method according to claim 1, characterized in that: The preset sorting rule includes a progressive sorting within a preset range.

8. The power data center management method according to claim 6, characterized in that: The method further comprises: When it is detected that the operation and maintenance terminal is close to the additional equipment corresponding to the second identification result, the corresponding additional equipment is prompted based on a second prompt method, and the prompt signal strength of the second prompt method is greater than that of the first prompt method.

9. A power data center management system, characterized in that: The system comprises: A scanning module, used to scan and obtain equipment information in the power center area, the equipment information including equipment identification and actual distribution image; A query and identification module is used to query the power center equipment work table to identify the unconnected equipment in the equipment information; A preset position determination module, used to determine a first preset position of the unconnected device according to the matching attributes of the unconnected device and at least one connected device in the power center equipment work table, wherein the first preset position is associated with the device information; A reading module, used to read the positioning information of the operation and maintenance terminal that meets the matching attributes; An indication module is used to indicate device information associated with a first preset position according to the coordination attribute when it is determined that the operation and maintenance terminal meets a preset condition according to the positioning information, wherein the preset condition includes determining that the operation and maintenance terminal enters the power sub-area according to the positioning information, and the power sub-area includes the first preset position.

10. The power data center management system according to claim 9, characterized in that: The scanning module comprises: A first determining unit is used to determine additional equipment in the power center area according to the planar images of the power center area before and after the interval period, wherein the additional equipment includes unconnected equipment; A second determining unit is used to determine a moving scanning route covering all the additional equipment according to the image distribution positions of the additional equipment in the plane image; The scanning unit is used to scan the device information of the additional device according to the mobile scanning route.

Citation Information

Patent Citations

  • Transformer substation live-action three-dimensional intelligent routing inspection system and method

    CN110417120A

  • Machine room inspection system and method

    CN112367380A

  • Electric power data center management system and management method thereof

    CN117540905A

  • On-line intelligent inspection system and method for transformer substation

    WO2022095616A1

  • Method and system for repairing network connection, and computer device and storage medium

    WO2023193410A1