Electronic patrol method and system for comprehensive management system of data center

A data center and comprehensive management technology, applied in transmission systems, electrical components, inspection time patrols, etc., can solve problems such as the inability to ensure that inspection personnel arrive at designated locations on time to conduct inspections, achieve standardized and scientific management work, and reduce operating costs. The effect of risk, easy deployment and implementation

Inactive Publication Date: 2018-10-12
ZHENGZHOU YUNHAI INFORMATION TECH CO LTD
3 Cites 7 Cited by

AI-Extracted Technical Summary

Problems solved by technology

However, for large and medium-sized data centers, there are multiple equipment rooms such as power distribution room, battery room, air-conditioning room, network room, server room, etc. These equipment rooms are distributed in multiple areas on multiple floors, and inspection cannot be guaranteed. The personnel arrive at the designated place on time to conduct inspections and report the inspection status to the data center management personnel in a time...
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Method used

[0057] The electronic inspection method system of this embodiment adopts a 3D stereoscopic display model, which can visually view the alarm status and alarm position of the current data center equipment from a three-dimensional angle, and the specific locati...
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Abstract

The embodiment of the invention discloses an electronic patrol method and system for a comprehensive management system of a data center. The patrol method comprises the steps of configuring iBeacon modules at patrol points of the data center, and generating two-dimensional bar codes based on MAC addresses of the iBeacon modules, scanning the two-dimensional bar codes, comparing whether the obtained MAC addresses are consistent with the MAC addresses pushed by a background or not; judging that the patrol checkin is successful if the obtained MAC addresses are consistent with the MAC addresses pushed by the background; and judging that faults occur in the current patrol points if the obtained MAC addresses are inconsistent with the MAC addresses pushed by the background. According to the electronic patrol method provided by the embodiment of the invention, a Bluetooth low energy technology and the two-dimensional bar codes are combined, so the problem that the patrol points are difficultto position precisely is solved. According to the method, through adoption of a technology and management combined method, the management work of the data center is relatively normal and scientific,and the operation risk of a power environment and information system of the data center is effectively reduced.

Application Domain

Checking time patrolsTransmission +2

Technology Topic

Bluetooth Low EnergyCombined method +6

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  • Electronic patrol method and system for comprehensive management system of data center
  • Electronic patrol method and system for comprehensive management system of data center

Examples

  • Experimental program(1)

Example Embodiment

[0034] In order to enable those skilled in the art to better understand the technical solutions in the present invention, the following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described The embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative work shall fall within the protection scope of the present invention.
[0035] figure 1 A schematic flow diagram of an electronic inspection method for a data center integrated management system provided by an embodiment of this application is represented by figure 1 It can be seen that the electronic inspection method of this embodiment includes the following steps:
[0036] Configure iBeacon modules at patrol points in the data center;
[0037] Generate a QR code with the MAC address of the iBeacon module;
[0038] Scan the QR code at the current patrol point, and then compare the scanned MAC address with the MAC address pushed in the background;
[0039] If the comparison is consistent, the inspection check-in is successful;
[0040] If the comparison is inconsistent, it is judged that the current patrol point is faulty.
[0041] Specifically, iBeacon modules can be configured as patrol points in key areas such as micro-module data centers, equipment rooms, battery rooms, power distribution rooms, and air-conditioning rooms. The iBeacon modules are installed on the top or hidden locations that are not easy to touch in the data center. The iBeacon module is equivalent to a communication base station that broadcasts signals through Bluetooth. The inspection system server is deployed on the Internet. The smartphone equipped with the corresponding APP communicates with the inspection point through Bluetooth to successfully build the sign-in process and pass 3G/4G/WIFI Transmit the relevant information to the system server in other ways.
[0042] Furthermore, after the iBeacon module is configured at the patrol point of the data center, it further includes the following steps:
[0043] Register the MAC address of each patrol point iBeacon module in the background of the system, and bind it with the name of the corresponding patrol point, so as to realize the display of patrol point related information on the APP and implement unified management and maintenance during patrol;
[0044] Then enter the patrol personnel's work information and mobile phone IMEI code into the patrol system, and push the patrol route to the duty patrol personnel through the system.
[0045] Before scanning the QR code at the current patrol point, the method further includes the following steps:
[0046] After the patrol personnel enter the data center, turn on the Bluetooth of the mobile phone, read the IMEI code through the mobile APP and send it to the background server, and log in to the patrol system after the verification is passed;
[0047] Then the patrol personnel arrive at the designated patrol point according to the patrol route sent by the patrol inspection system, receive the signal from the iBeacon module at the patrol point through the mobile phone's Bluetooth, and obtain the current distance between the mobile phone and the iBeacon module through message exchange analysis;
[0048] If the mobile phone receives signals from multiple iBeacon modules at the same time, it selects the closest patrol point and records the distance of the closest patrol point and the MAC address of the iBeacon module.
[0049] Patrol personnel scan the QR code at the current patrol point, and then compare whether the scanned MAC address is consistent with the MAC address pushed in the background. If the comparison is consistent, the patrol check-in is successful, and it is automatically displayed through the APP; If the comparison is inconsistent, it is judged that the current patrol point is faulty, and then the QR code at the current patrol point is scanned again. If the two comparisons are inconsistent, it is determined that the current patrol point is faulty.
[0050] During the patrol process, after the patrol personnel successfully sign in at each patrol point, the mobile APP displays the important reminder of the current patrol point content pushed by the system background, and the patrol personnel check and confirm one by one according to the prompts. Patrol personnel can also record some remarks of the current patrol position by taking photos or text, and send them to the background server through APP after recording or taking photos.
[0051] figure 2 The schematic diagram of the electronic inspection system structure of a data center integrated management system provided by this embodiment of the application is represented by figure 2 It can be seen that the electronic patrol system of this embodiment includes a patrol point management module 1, a personnel management module 2, a planning module 3, an information push module 4, and a query statistics module 5;
[0052] The patrol point management module 1 is used for registering and managing iBeacon module information of each patrol point, and storing and managing the MAC address of the iBeacon module and the QR code generated by the MAC address;
[0053] The personnel management module 2 is used to store and manage the work information of the patrol personnel and the mobile phone information of the patrol personnel, and control and manage the role permissions of the patrol personnel;
[0054] The plan arrangement module 3 is used for arranging the work plan of the patrol personnel, including patrol scheduling, patrol route, patrol time period and patrol duration;
[0055] The information push module 4 is used for the patrol inspection system to send patrol notifications and patrol arrangement reminders to the mobile phone of the patrol personnel, and for the mobile phone to send the current status of the patrol point to the background of the system;
[0056] The electronic patrol inspection system 5 also includes a query statistics module. The query statistics module is used to query the patrol records and patrol status of the patrol personnel, and is used for the statistics of the patrol report.
[0057] The electronic inspection method system of this embodiment adopts a 3D three-dimensional display model, which can visually view the alarm status and alarm location of the current data center equipment from a three-dimensional perspective, and display the specific location and information of the electronic inspection point in 3D. When displayed, the display is intuitive and easy to comprehensively manage, and it is integrated with the data center integrated management system at the data level and display level.
[0058] The above are only specific embodiments of the present invention, so that those skilled in the art can understand or implement the present invention. Various modifications to these embodiments will be obvious to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to the embodiments shown in this document, but should conform to the widest scope consistent with the principles and novel features disclosed in this document.

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