A data center computer room preset security monitoring device and method thereof

By adopting a combination of dynamic monitoring components and channel monitoring components in the data center computer room, combined with IoT technology, the problem of the lack of dynamic monitoring and self-protection functions of existing monitoring systems is solved, and efficient and flexible monitoring and equipment protection are achieved.

CN115460376BActive Publication Date: 2025-05-16STATE GRID ANHUI ELECTRIC POWER CO LTD +2
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Patent Information

Application Number
CN202210967496.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-08-12
Publication Date
2025-05-16
Estimated Expiration
2042-08-12

AI Technical Summary

Technical Problem

The existing data center computer room monitoring system lacks dynamic monitoring functions, resulting in high monitoring costs and poor flexibility, prone to monitoring blind spots, and it is impossible to continue monitoring after being damaged.

Method used

A preset security monitoring device in the data center room is designed, using cabinet dynamic monitoring components and channel monitoring components, connecting external monitoring terminals through the Internet of Things, realizing the combination of dynamic monitoring and static monitoring, and has self-protection functions to avoid damage to the equipment.

Benefits of technology

It realizes all-round, blind-no-dead-angle dynamic monitoring of the data center computer room, reduces monitoring costs, enhances monitoring flexibility, and protects monitoring devices when equipment is damaged to ensure the integrity of monitoring data.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a pre-settable security monitoring device for a data center computer room and a method thereof, and relates to the technical field of monitoring technology for a data center computer room. The purpose of the present invention is to solve the shortcomings of the traditional monitoring system, which is fixed-point deployment, lacks a follow-up monitoring function, has high full-coverage monitoring cost and poor flexibility, is prone to blind spots in monitoring, and has no self-protection function when malicious operations occur. The present invention includes a cabinet dynamic monitoring component, which is arranged on the top of the computer room wall, and a group of channel monitoring components for corridor channel monitoring are installed on the walls of the computer room on all sides, and four groups of monitoring protection components are installed on the walls of the computer room. The present invention dynamically monitors the status of the cabinet group through the cabinet dynamic monitoring component, and statically monitors the channel conditions in the computer room through the channel monitoring component. The dynamic monitoring component cooperates with the cabinet group to achieve self-protection, and the channel monitoring component is protected by the monitoring protection component.
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Description

Technical Field

[0001] The present invention relates to the technical field of data center computer room monitoring, and in particular to a data center computer room presettable safety monitoring device and method thereof. Background Art

[0002] The data center room is an important area of ​​concern for companies and some national departments. Its safety performance is the focus of attention and setting. The data center room is a modular and complete collection of solutions that integrates cabinets, power distribution, refrigeration, monitoring, integrated wiring, fire protection and other systems. The cooperation of multiple systems enables the room to achieve intelligent, efficient and safe operation.

[0003] The monitoring system of the CNC center computer room is a very important part. It needs to monitor the cabinet status, the operator's work process and the safety of the computer room. Most of the existing monitoring systems are deployed at fixed points and do not have the function of follow-up monitoring. The cost of comprehensive monitoring of the computer room is very high and the flexibility is not good. It is easy to have blind spots in monitoring, resulting in poor monitoring effects. In addition, when performing malicious operations, people with malicious intentions will often destroy the monitoring system first. High-definition monitoring equipment is usually expensive, and the destroyed monitoring system can no longer monitor and sample criminal behavior. Summary of the invention

[0004] In order to overcome the problems in the above technical background, the present invention provides a data center computer room presettable security monitoring device and method thereof with dynamic monitoring function.

[0005] The technical implementation scheme of the present invention is: a data center computer room can be preset with a security monitoring device, including several groups of cabinet dynamic monitoring components, several groups of cabinet dynamic monitoring components are all arranged on the top of the computer room wall, several groups of cabinet dynamic monitoring components are respectively located above several groups of cabinet groups, the cabinet dynamic monitoring components are used to monitor the cabinet group itself and the aisles between them, a group of channel monitoring components for corridor channel monitoring are installed on the walls of the computer room around, four groups of monitoring protection components are installed on the walls of the computer room, the four groups of monitoring protection components are respectively located on the lower side of one end of the channel monitoring component, the cabinet dynamic monitoring component, the channel monitoring component and the monitoring protection component are respectively connected to the external monitoring terminal through the Internet of Things, the channel monitoring component is protected by the monitoring protection component, the cabinet dynamic monitoring component cooperates with the channel monitoring component to perform safety monitoring on all blind spots in the computer room, and in an emergency, the cabinet dynamic monitoring component cooperates with the cabinet group to protect itself, and the monitoring protection component also cooperates with the channel monitoring component to protect the monitoring device.

[0006] Furthermore, the dynamic monitoring component of the cabinet includes a limit track, two limit tracks are provided, and the two limit tracks are fixedly connected to the top of the computer room wall. A limit moving component is arranged in the limit track, and a first installation slider is slidably arranged in the limit track, and the first installation slider is rotatably matched with an adjacent limit moving component. A truss track is fixedly connected between two opposite first installation sliders, and two groups of limit moving components are provided in the truss track. Two second installation sliders are slidably arranged in the truss track, and the two second installation sliders are respectively rotatably matched with adjacent limit moving components. A fixed frame is fixedly connected to each second installation slider, and the limit in the truss track A fixed frame is also fixedly connected to the moving component, and mounting blocks are fixedly connected to the lower parts of the two fixed frames. A spur rack is fixedly connected to the rear side of the truss track. A second spur gear is rotatably arranged on the second mounting slider via a rotating shaft. A second transmission shaft is penetrated and rotatably arranged in the middle of the two mounting blocks. The rotating shaft of the second spur gear is connected to the second transmission shaft via a pulley belt transmission. A third spur gear is fixedly connected to the middle part of the second transmission shaft. Limiting rings are fixedly connected to two adjacent mounting blocks, and a rotating seat is rotatably arranged between two adjacent limiting rings. An inner gear ring is arranged on the inner side of the rotating seat, and the inner gear ring of the rotating seat is meshed with the adjacent third spur gear. A first monitoring head is installed on the rotating seat.

[0007] Furthermore, the first monitoring heads in the cabinet dynamic monitoring components located on the left and right sides of the computer room face the middle of the computer room, and the remaining first monitoring heads all face the adjacent cabinet dynamic monitoring components.

[0008] Furthermore, the limiting movement assembly includes a first driving member, which is slidably matched with an adjacent limiting rail or truss rail through a fixed seat, and is connected to an external monitoring terminal through the Internet of Things. The output shaft of the first driving member is fixedly connected to a first transmission shaft, and the first transmission shaft is rotatably connected to the adjacent limiting rail and the first mounting slider or the truss rail and the second mounting slider. A bevel gear is arranged on the first transmission shaft, and a limiting wheel and a driving wheel are rotatably arranged on the fixed seat of the first driving member through a rotating shaft, and a bevel gear is also arranged on the rotating shaft of the limiting wheel, and adjacent bevel gears are meshed with each other. The rotating shafts of the first transmission shaft and the driving wheel are both fixedly connected with a first spur gear, and adjacent first spur gears are meshed with each other.

[0009] Furthermore, pulleys are provided on the upper and lower side surfaces of the first mounting slide block and the second mounting slide block, and the pulleys are used to reduce the friction between the first mounting slide block and the limiting track and the truss track respectively.

[0010] Furthermore, the channel monitoring component includes an electric slide rail, which is connected to an external monitoring terminal through the Internet of Things. The electric slide rail is fixedly installed on the top of the computer room wall. A slider is provided on the electric slide rail, and a second driving member is fixedly connected to the slider of the electric slide rail. The second driving member is connected to the external monitoring terminal through the Internet of Things. The telescopic end of the second driving member is fixedly connected to a mounting frame, and two connecting frames are installed on the mounting frame. The lower ends of the two connecting frames are fixedly connected to a fixing plate, and a limiting groove is formed between the connecting frame and the fixing plate and the mounting frame. A hook plate is provided on the fixing plate through a rotating shaft, a torsion spring is provided between the fixing plate and the hook plate, a mounting seat is provided on the outer side of the hook plate, and a limiting rod is provided on the mounting seat, and a plurality of second monitoring heads are provided between the connecting frame and the fixing plate. A mounting slot is provided at the tail of the second monitoring head, and the hook plate is used to limit the second monitoring head. Monitoring installation components are provided on the side walls of the computer room wall and the mounting frame, and the monitoring installation components are used to cooperate in the placement of the second monitoring head.

[0011] Furthermore, the width of the lower part of the second monitoring head is greater than the width of the upper part thereof, and limiting blocks are fixedly connected to both sides of the lower part of the second monitoring head respectively. The limiting blocks of the second monitoring head are slidably arranged in the limiting grooves formed by the cooperation of the connecting frame, the fixing plate and the mounting frame.

[0012] Furthermore, the monitoring installation assembly includes a limiting horizontal plate, which is fixedly connected to the upper part of the mounting frame, a spring expansion member is fixedly connected to the limiting horizontal plate, a pressure plate is fixedly connected to the lower end of the spring expansion member, a plurality of fixed hanging plates are provided, and the plurality of fixed hanging plates are respectively fixedly connected to the side walls of the computer room wall, a docking port for the endurance of the second monitoring head is provided on the fixed hanging plate, the fixed hanging plate and the mounting groove of the second monitoring head are limited and slidably matched, triangular limiting blocks are provided on both sides of the fixed hanging plate, the triangular limiting blocks on both sides of the fixed hanging plate are symmetrically arranged, the triangular limiting blocks are fixedly connected to the side walls of the computer room wall, and a spring limiting plate is rotatably arranged on each triangular limiting block.

[0013] Furthermore, the monitoring and protection component includes a fixed frame, which is fixedly connected to the side wall of the machine room wall. The side of the fixed frame that is not close to the machine room wall is an arc-shaped plate. A third driving member is fixedly connected to the fixed frame. The telescopic end of the third driving member is fixedly connected to the limit frame. A sealing plate is slidably provided on the arc-shaped plate of the fixed frame. A limit pin is fixedly connected to the sealing plate. The limit pin of the sealing plate slides in cooperation with the limit frame.

[0014] Furthermore, a data center room can be preset with a security monitoring method, comprising the following steps:

[0015] S1: When monitoring the CNC machine room, first install the cabinet dynamic monitoring component on the top of the machine room wall to complete the layout of the dynamic security monitoring network, and install the channel monitoring component on the machine room wall to complete the layout of the static security monitoring network, and install the monitoring protection component to the predetermined position on the machine room wall;

[0016] S2: The first monitoring head is driven by the first driving member to perform dynamic security monitoring along the cabinet group, the frequency and duration of security patrol monitoring are preset by the external monitoring terminal, the working status of the equipment in the cabinet group is monitored, the first monitoring head is used to follow up the operator for real-time monitoring, and an alarm is sent to the external monitoring terminal when an unauthorized person breaks in. The second monitoring head is respectively arranged at both ends of the channel between the cabinet groups by the channel monitoring component, and the channel between the cabinet groups is fully monitored by the second monitoring head;

[0017] S3: When the monitoring device is damaged by human intervention, the cabinet dynamic monitoring component and the channel monitoring component are controlled by the external monitoring terminal to start the protection mechanism. The cabinet dynamic monitoring component controls its first monitoring head to move back to the gap between the top of the computer room wall and the cabinet group, and the channel monitoring component retracts the second monitoring head and sends it into the monitoring protection component for protection, so that the monitoring device is protected from human intervention;

[0018] S4: When the CNC center room is damaged by human intervention, monitoring and evidence collection can be carried out by replacing the dynamic monitoring components of the cabinet to ensure that more monitoring evidence is retained.

[0019] Compared with the prior art, the present invention has the following advantages: the present invention dynamically monitors the status of the cabinet group through the cabinet dynamic monitoring component, and presets the security monitoring patrol frequency and duration of the cabinet dynamic monitoring component through the external monitoring terminal device to realize dynamic patrol monitoring of the cabinet group. The first monitoring head gradually swings in the horizontal direction, and as it approaches the cabinet group, it performs up and down scanning monitoring and observation on the cabinet group, and monitors the status of the equipment in the cabinet group more comprehensively from multiple angles, thereby realizing comprehensive monitoring of the cabinet group in the case of narrow aisles, and realizing the whole group range monitoring of the cabinet group through the limit moving component in the limit track, and Through the channel monitoring components, static monitoring of the channel conditions in the computer room is carried out. Through the coordination of dynamic monitoring and static monitoring of the equipment status in the cabinet group, comprehensive monitoring of the cabinet group is realized. In combination with the channel monitoring components, the aisles in the computer room are monitored to achieve blind spot monitoring inside the computer room. In the event of human damage to the monitoring equipment, the first monitoring head is moved to the narrow gap between the cabinet group and the top of the computer room wall through the limit moving component in the truss track, and the first monitoring head is protected by taking advantage of the position. The detachable channel monitoring component of the second monitoring head is protected by the monitoring protection component, thereby minimizing the loss of hardware monitoring equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic diagram of the three-dimensional structure of the installation environment of the present invention.

[0021] Figure 2 It is a schematic diagram of the three-dimensional structure of the present invention.

[0022] Figure 3It is a partial enlarged view of the three-dimensional structure of the dynamic monitoring component of the cabinet of the present invention.

[0023] Figure 4 It is an enlarged view of the three-dimensional structure at A of the present invention.

[0024] Figure 5 It is a partial cross-sectional view of the three-dimensional structure of the dynamic monitoring component of the cabinet of the present invention.

[0025] Figure 6 It is a partial three-dimensional structural schematic diagram of the cabinet dynamic monitoring component of the present invention.

[0026] Figure 7 This is a schematic diagram of the three-dimensional structure of the channel monitoring component of the present invention from a first angle.

[0027] Figure 8 It is a second angle stereoscopic structural diagram of the channel monitoring component of the present invention.

[0028] Fig. 9 It is a schematic diagram of the three-dimensional structure of the monitoring and protection component of the present invention.

[0029] Among them, the above-mentioned drawings include the following figure marks: 1. machine room wall, 2. cabinet group, 3. cabinet dynamic monitoring component, 301. limit rail, 302. first driving member, 303. first transmission shaft, 304. bevel gear, 305. limit wheel, 306. first spur gear, 307. driving wheel, 308. first mounting slider, 309. truss rail, 310. second mounting slider, 311. fixing frame, 312. mounting block, 313. spur rack, 314. second spur gear, 315. second transmission shaft, 316. third spur gear, 317. limit ring, 318. rotation Seat, 319, first monitoring head, 4, channel monitoring component, 401, electric slide rail, 402, second driving member, 403, mounting frame, 404, connecting frame, 405, fixed plate, 406, hook plate, 407, torsion spring, 408, mounting seat, 409, limit rod, 410, second monitoring head, 411, limit horizontal plate, 412, spring telescopic member, 413, pressure plate, 414, fixed hanging plate, 415, triangular limit block, 416, spring limit plate, 5, monitoring protection component, 501, fixed frame, 502, third driving member, 503, limit frame, 504, sealing plate. DETAILED DESCRIPTION

[0030] First of all, it should be pointed out that in the different described embodiments, identical components are provided with identical reference numerals or identical component names, wherein the disclosure contained in the entire description can be transferred to the same components with identical reference numerals or identical component names. The positional descriptions selected in the description, such as top, bottom, lateral, etc., also refer to the directly described and shown attached drawings. Figure 1Even if the position in other figures changes, the locator word still follows the same Figure 1 Description of the location.

[0031] Example 1

[0032] A data center room can be equipped with a preset security monitoring device, such as Figure 1-Figure 9 As shown, it includes several groups of cabinet dynamic monitoring components 3, which are fixedly installed on the top of the computer room wall 1, and several groups of cabinet dynamic monitoring components 3 are respectively located above several groups of cabinet groups 2. The cabinet dynamic monitoring components 3 are used to monitor the aisles between the cabinet groups 2 and the cabinets. A group of channel monitoring components 4 for corridor channel monitoring are installed on the surrounding computer room walls 1. A group of monitoring protection components 5 are installed on the surrounding computer room walls 1. The four groups of monitoring protection components 5 are respectively located at the lower side of one end of the four groups of channel monitoring components 4. The cabinet dynamic monitoring components 3, the channel monitoring components 4 and the monitoring protection components 5 are respectively It is connected to the external monitoring terminal through the Internet of Things, and the channel monitoring component 4 is protected by the monitoring protection component 5 to prevent the static monitoring equipment from being deliberately damaged. The cabinet dynamic monitoring component 3 cooperates with the channel monitoring component 4 to safely monitor the blind spots in all areas of the computer room, so that the monitored viewing angle in the computer room is fully covered and has a dynamic real-time monitoring function. In an emergency, the narrow gap between the computer room wall 1 and the cabinet group 2 is used. The cabinet dynamic monitoring component 3 cooperates with the cabinet group 2 to protect itself, and the monitoring protection component 5 also cooperates with the channel monitoring component 4 to protect the monitoring device, so as to avoid the monitoring equipment from being actively damaged.

[0033] First, a cabinet dynamic monitoring component 3 is installed on the top of the computer room wall 1 above each group of cabinet groups 2, and a channel monitoring component 4 and a monitoring protection component 5 are installed on the walls around the computer room. The status of the cabinet group 2 is dynamically monitored through the cabinet dynamic monitoring component 3, and the security monitoring patrol frequency and duration of the cabinet dynamic monitoring component 3 are preset through the external monitoring terminal device to realize dynamic patrol monitoring of the cabinet group 2, monitor the status of the equipment in the cabinet group 2 from multiple angles and more comprehensively, and statically monitor the channel conditions in the computer room through the channel monitoring component 4. Through the dynamic monitoring and static monitoring of the status of the equipment in the cabinet group 2, comprehensive monitoring of the cabinet group 2 is realized, and the aisles in the computer room are monitored in combination with the channel monitoring component 4, so as to realize no-dead-angle monitoring inside the computer room, avoiding To avoid blind spots and unclear monitoring in the computer room of the CNC center, when strangers break into the computer room, the channel monitoring component 4 will alarm the external monitoring terminal device. In the case of artificial damage to the monitoring equipment, the cabinet dynamic monitoring component 3 is controlled by the external monitoring terminal device to retract the monitoring equipment to the slit between the cabinet group 2 and the top of the computer room wall 1. The dynamic monitoring equipment of the cabinet dynamic monitoring component 3 is protected through the slit between the cabinet group 2 and the top of the computer room wall 1, and the monitoring equipment is recovered into the monitoring protection component 5 for protection through the channel monitoring component 4 to avoid direct human damage to the monitoring equipment. Under the remote control of the external monitoring terminal device, the cabinet dynamic monitoring component 3 is used to adjust the monitoring position for monitoring and evidence collection, ensuring that more monitoring evidence is retained.

[0034] Example 2

[0035] On the basis of Example 1, Figure 3-Figure 6As shown, the cabinet dynamic monitoring component 3 includes a limit track 301, two limit tracks 301 are provided, and the two limit tracks 301 are installed on the top of the machine room wall 1 by bolts. A limit moving component is slidably provided in the limit track 301, and a first installation slider 308 is slidably provided in the limit track 301. The first installation slider 308 is rotatably matched with the adjacent limit moving component. A truss track 309 is fixedly connected between the opposite sides of the first installation slider 308 by bolts, and two groups of limit moving components are provided in the truss track 309. Two limit moving components are slidably provided in the truss track 309. The second mounting slider 310 is rotatably matched with the adjacent limiting moving assembly. The upper and lower sides of the first mounting slider 308 and the second mounting slider 310 are provided with pulleys, which are used to reduce the friction between the two and the limiting track 301 and the truss track 309, respectively, so that the limiting moving assembly can drive the first mounting slider 308 or the second mounting slider 310 and the parts thereon to move. Each second mounting slider 310 is fixedly connected with a fixing frame 311 by bolts, and the limiting moving assembly in the truss track 309 is also fixedly connected with a fixing frame 311 by bolts. 11. The lower parts of the two fixing frames 311 are fixedly installed with mounting blocks 312. A spur rack 313 is welded to the rear side of the truss track 309. A second spur gear 314 is rotatably arranged on the rear side of the second mounting slide block 310 through a rotating shaft. A second transmission shaft 315 is passed through and rotatably connected to the middle of the two mounting blocks 312. The rotating shaft of the second spur gear 314 is connected to the second transmission shaft 315 through a pulley belt transmission. A third spur gear 316 is keyed to the middle of the second transmission shaft 315. Limiting rings 317 are welded to the two adjacent mounting blocks 312. The two adjacent limiting rings 317 are welded to the two adjacent limiting rings 31 7 is rotatably arranged with a rotating seat 318, an inner gear ring is welded on the inner side of the rotating seat 318, the inner gear ring of the rotating seat 318 is meshed with the adjacent third spur gear 316, and a first monitoring head 319 is installed on the rotating seat 318 by bolts, and the first monitoring heads 319 in the cabinet dynamic monitoring components 3 on the left and right sides of the machine room face the middle of the machine room, and the remaining first monitoring heads 319 all face the cabinet dynamic monitoring components 3 adjacent to each other on both sides, so as to obtain a wider monitoring coverage angle, and through the cross-cooperation of the coverage areas of several groups of first monitoring heads 319, all-round coverage of the cabinet group 2 is achieved.

[0036] like Figure 3 and Figure 4As shown, the limiting movement assembly includes a first driving member 302, which is slidably matched with the adjacent limiting rail 301 and the truss rail 309 through a fixed seat. In this embodiment, the first driving member 302 is a servo motor, and the first driving member 302 is connected to the external monitoring terminal through the Internet of Things. The output shaft of the first driving member 302 is fixedly connected with the first transmission shaft 303 through a coupling, and the first transmission shaft 303 is rotatably connected with the adjacent limiting rail 301 and the first mounting slider 308 or the truss rail 309 and the second mounting slider 310. A bevel gear 304 is keyed on the first transmission shaft 303, and a limiting wheel 305 and a driving wheel 307 are rotatably provided on the fixed seat of the first driving member 302 through a rotating shaft. The limiting wheel 305 is also keyed with a bevel gear 304 on the rotating shaft, and adjacent bevel gears 304 are meshed with each other. The first transmission shaft 303 and the rotating shaft of the driving wheel 307 are both keyed with a first spur gear 306, and adjacent first spur gears 306 are meshed with each other.

[0037] like Figure 7 and Figure 8 As shown, the channel monitoring component 4 includes an electric slide rail 401, which is connected to an external monitoring terminal through the Internet of Things. The electric slide rail 401 is installed on the top of the machine room wall 1 through bolts. A second driving member 402 is fixedly connected to the slider of the electric slide rail 401. In this embodiment, the second driving member 402 is an electric hydraulic rod. The external monitoring terminal of the second driving member 402 is connected through the Internet of Things. The telescopic end of the second driving member 402 is fixedly connected to a mounting frame 403, and two connecting frames 404 are welded on the mounting frame 403. The lower ends of the two connecting frames 404 are welded with a fixing plate 405. The connecting frame 404 and the fixing plate 405 cooperate with the mounting frame 403 to form a limiting groove. A hook plate 406 is rotatably arranged on the fixing plate 405 through a rotating shaft, and a torsion spring 407 is fixedly installed between the fixing plate 405 and the hook plate 406. A mounting seat 408 is welded on the outer side of the hook plate 406. 08, a limiting rod 409 is installed through it, and a plurality of second monitoring heads 410 are slidably arranged between the connecting frame 404 and the fixing plate 405, and a mounting groove is provided at the tail of the second monitoring head 410, and a hook plate 406 is used to limit the second monitoring head 410. A monitoring installation assembly is arranged on the side wall of the machine room wall 1 and the mounting frame 403, and the monitoring installation assembly is used to cooperate in the placement of the second monitoring head 410, and the width of the lower part of the second monitoring head 410 is greater than the width of the upper part thereof, and the lower part of the second monitoring head 410 is limited by the hook plate 406, and limiting blocks are respectively fixed on both sides of the lower part of the second monitoring head 410, and the limiting blocks of the second monitoring head 410 are slidably arranged in the limiting groove between the connecting frame 404, the fixing plate 405 and the mounting frame 403, and under the action of this limiting groove, the second monitoring head 410 moves out from the lower end of the limiting groove to prevent the second monitoring head 410 from sliding off between the mounting frame 403 and the connecting frame 404.

[0038] like Figure 7 and Figure 8 As shown, the monitoring installation assembly includes a limit cross plate 411, which is welded to the upper part of the mounting frame 403, a spring expansion member 412 is fixedly installed on the lower side of the limit cross plate 411, a pressure plate 413 is fixedly installed on the lower end of the spring expansion member 412, a plurality of fixed hanging plates 414 are provided, and the plurality of fixed hanging plates 414 are respectively installed on the preset positions of the side walls of the machine room wall 1 by bolts, a docking interface for the endurance of the second monitoring head 410 is provided on the fixed hanging plate 414, the fixed hanging plate 414 is limited and slidably matched with the mounting groove of the second monitoring head 410, triangular limit blocks 415 are provided on both sides of the fixed hanging plate 414, the triangular limit blocks 415 on both sides of the fixed hanging plate 414 are symmetrically arranged, the triangular limit blocks 415 are installed on the side walls of the machine room wall 1 by bolts, and a spring limit plate 416 is provided on the upper end of each triangular limit block 415 for limited rotation.

[0039] like Fig. 9 As shown, the monitoring and protection component 5 includes a fixed frame 501, which is installed on the side wall of the machine room wall 1 by bolts, and the side of the fixed frame 501 that is not in close contact with the machine room wall 1 is an arc-shaped plate, and a third driving member 502 is fixedly installed on the lower side of the fixed frame 501, and a limiting frame 503 is fixedly installed on the telescopic end of the third driving member 502, and a sealing plate 504 is slidably provided on the arc plate of the fixed frame 501, and a limiting pin is welded on the lower side of the sealing plate 504, and the limiting pin of the sealing plate 504 is slidably matched with the limiting frame 503.

[0040] The cabinet dynamic monitoring component 3 performs dynamic patrol monitoring on the equipment status in the cabinet group 2. When the first monitoring head 319 is located at both ends of the truss rail 309, the first monitoring head 319 is in a monitoring state oblique to the cabinet group 2. When the monitoring angle and monitoring distance need to be adjusted, the external monitoring terminal starts the limit movement component to control and adjust the coverage range of the first monitoring head 319. First, the first driving member 302 on the truss rail 309 is started. The first driving member 302 drives the first transmission shaft 303, and drives the limit wheel 305 and the driving wheel 307 to move through the bevel gear 304 and the first spur gear 306. The two sets of limit movement components drive the second mounting slider 310 fixed thereto to move in opposite directions. The second mounting slider 310 drives the second spur gear 314 to rotate along the spur rack 313. The second spur gear 314 drives the second transmission shaft 315 to rotate through the pulley belt transmission. The second transmission shaft 315 drives the rotating seat 318 and the first monitoring The head 319 rotates, and the first monitoring head 319 gradually swings horizontally, and approaches the cabinet group 2 to perform up and down scanning monitoring and observation on the cabinet group 2. Since the aisles between the cabinet groups 2 are relatively narrow, the first monitoring head 319 has a limited monitoring range for the upper and lower adjacent cabinet groups 2. Therefore, the first monitoring head 319 is used to monitor the cabinet groups 2 adjacent to the left and right sides to achieve more comprehensive monitoring of the cabinet group 2. After the monitoring range of the first monitoring head 319 is adjusted, the first monitoring head 319 is moved along the limiting track 301 through the limiting moving component in the limiting track 301 to achieve monitoring of the entire group range of the cabinet group 2. When someone destroys the monitoring equipment, the first monitoring head 319 is moved to the narrow gap between the cabinet group 2 and the top of the computer room wall 1 through the limiting moving component in the truss track 309. At this time, the first monitoring head 319 swings to a horizontal state, and the position advantage is used to protect the first monitoring head 319.

[0041] The channel monitoring component 4 performs static monitoring of the channel in the machine room. First, the second driving member 402 and the mounting frame 403 are moved to the top of the fixed hanging plate 414 at the predetermined position through the electric slide rail 401, and the components thereon are driven downward by the second driving member 402. After the mounting frame 403 moves downward until the limit rod 409 contacts the spring limit plate 416, the mounting groove of the second monitoring head 410 at the lowermost side has formed a limit match with the fixed hanging plate 414. Under the limit of the spring limit plate 416 and the triangular limit block 415, the limit rod 409 drives the hook plate 406 to open outward. At this time, the hook plate 406 loses the limit on the second monitoring head 410, and the second monitoring head 410 immediately falls downward under the action of the spring telescopic member 412 and the pressure plate 413, forming a match with the fixed hanging plate 414 and the docking interface thereon. , during the installation of the second monitoring head 410, the second driving member 402 will not drive the limit rod 409 to move out of the lower end of the triangular limit block 415. After the installation of the second monitoring head 410 is completed, the second driving member 402 drives the components thereon to reset upward. After the limit rod 409 loses the cooperation with the spring limit plate 416 and the triangular limit block 415, the hook plate 406 is clamped toward the middle under the drive of the torsion spring 407. The hook plate 406 forms a limit with the second monitoring head 410 located at the lowermost side between the fixed plates 405 at this time. At this point, the installation of the second monitoring head 410 is completed, and then the second monitoring head 410 is installed by continuously moving the electric slide rail 401 and cooperating with the second driving member 402. The second monitoring head 410 is gradually installed to both ends of the passage, thereby completing the all-round static monitoring of the aisle in the machine room.

[0042] When the monitoring equipment is damaged in the machine room, the second monitoring head 410 is recovered by the electric slide rail 401 in cooperation with the second driving member 402, and is moved into the monitoring protection assembly 5 to protect the second monitoring head 410. When the second monitoring head 410 is recovered, after the electric slide rail 401 moves to the specified position, the second driving member 402 drives the mounting frame 403 to move downward. Although the hook plate 406 is not opened to both sides at this time, it will not form a limit fit with the upper part of the second monitoring head 410. Afterwards, the limit rod 409 contacts the spring limit plate 416 and moves downward over the lower end of the triangular limit block 415. In this process, the hook plate 406 is opened and then moves inward to meet the lower end of the second monitoring head 410 on the fixed hanging plate 414. The third driving member 502 cooperates with the limiting frame 503 to form a limit fit, and then the second driving member 402 is started to move upward, and the limiting rod 409 moves upward along the channel between the triangular limiting block 415 and the fixed hanging plate 414, and the hook plate 406 removes the second monitoring head 410 from the fixed hanging plate 414. After all the second monitoring heads 410 are taken out, the electric slide rail 401 drives them to move into the adjacent fixed frame 501. At this time, driven by the third driving member 502 and the limiting frame 503, the sealing plate 504 is opened under the drive of its upper limit pin. After the mounting frame 403 moves into the fixed frame 501, the third driving member 502 cooperates with the limiting frame 503 to close the sealing plate 504 to protect the channel monitoring component 4 and reduce hardware property losses.

[0043] Example 3

[0044] On the basis of Example 2, Figure 1-Figure 9 As shown, a data center room preset security monitoring method includes the following steps:

[0045] S1: When monitoring the CNC machine room, first install the cabinet dynamic monitoring component 3 on the top of the machine room wall 1 to complete the layout of the dynamic security monitoring network, and install the channel monitoring component 4 on the machine room wall 1 to complete the layout of the static security monitoring network, and install the monitoring protection component 5 to the predetermined position on the machine room wall 1;

[0046] S2: The first monitoring head 319 is driven by the first driving member 302 to perform dynamic security monitoring along the cabinet group 2. The frequency and duration of security patrol monitoring are preset by the external monitoring terminal to monitor the working status of the equipment in the cabinet group 2. The first monitoring head 319 is used to follow up the operator for real-time monitoring. When an outsider breaks in, an alarm is sent to the external monitoring terminal. The second monitoring head 410 is respectively arranged at both ends of the channel between the cabinet groups 2 by the channel monitoring component 4, and the channel between the cabinet groups 2 is fully monitored by the second monitoring head 410;

[0047] S3: When the monitoring device is damaged by human intervention, the cabinet dynamic monitoring component 3 and the channel monitoring component 4 are controlled by the external monitoring terminal to start the protection mechanism. The cabinet dynamic monitoring component 3 controls its first monitoring head 319 to move back to the gap between the top of the computer room wall 1 and the cabinet group 2, and the channel monitoring component 4 recovers the second monitoring head 410 and sends it to the monitoring protection component 5 for protection, so that the monitoring device is protected from human intervention;

[0048] S4: When the CNC center room is damaged artificially, the cabinet dynamic monitoring component 3 is replaced to monitor and collect evidence, ensuring that more monitoring evidence is retained.

[0049] It should be understood that the above description is only for exemplary purposes and is not meant to limit the present invention. Those skilled in the art will appreciate that variations of the present invention will be included within the scope of the claims herein.

Claims

1. A data center room can be equipped with a preset security monitoring device, characterized in that: The invention comprises a plurality of sets of cabinet dynamic monitoring components (3), the plurality of sets of cabinet dynamic monitoring components (3) are all arranged on the top of the computer room wall (1), the plurality of sets of cabinet dynamic monitoring components (3) are respectively located above the plurality of cabinet groups (2), the cabinet dynamic monitoring components (3) are used for monitoring the cabinet groups (2) themselves and the aisles between them, a set of channel monitoring components (4) for monitoring the corridors are installed on the surrounding computer room walls (1), four sets of monitoring protection components (5) are installed on the computer room walls (1), and the four sets of monitoring protection components (5) are respectively located on the channel monitoring components (4) and the aisle monitoring components (4) are respectively located on the aisle ... At the lower side of one end of the component (4), the cabinet dynamic monitoring component (3), the channel monitoring component (4) and the monitoring protection component (5) are respectively connected to an external monitoring terminal via the Internet of Things, and the channel monitoring component (4) is protected by the monitoring protection component (5). The cabinet dynamic monitoring component (3) cooperates with the channel monitoring component (4) to perform safety monitoring on all blind spots in the computer room, and in an emergency, the cabinet dynamic monitoring component (3) cooperates with the cabinet group (2) to protect itself, and the monitoring protection component (5) also cooperates with the channel monitoring component (4) to protect the monitoring device; The frequency and duration of the security monitoring patrol of the cabinet dynamic monitoring component (3) are preset by the external monitoring terminal device to realize dynamic patrol monitoring of the cabinet group (2). After a stranger breaks into the computer room, the channel monitoring component (4) sends an alarm to the external monitoring terminal device. In the event of artificial damage to the monitoring device, the cabinet dynamic monitoring component (3) is controlled by the external monitoring terminal device to retract the monitoring device to the gap between the cabinet group (2) and the top of the computer room wall (1). The dynamic monitoring device of the cabinet dynamic monitoring component (3) is protected through the gap between the cabinet group (2) and the top of the computer room wall (1), and the monitoring device is retracted into the monitoring protection component (5) for protection through the channel monitoring component (4).

2. A data center room pre-set security monitoring device according to claim 1, characterized in that the cabinet The dynamic monitoring component (3) comprises a limit track (301), wherein two limit tracks (301) are provided, and the two limit tracks (301) are fixedly connected to the top of the machine room wall (1), and a limit moving component is provided in the limit track (301), and a first installation slider (308) is slidably provided in the limit track (301), and the first installation slider (308) is rotatably matched with an adjacent limit moving component, and a truss track (309) is fixedly connected between two opposite first installation sliders (308), and two groups of limit moving components are provided in the truss track (309), and two second installation sliders (310) are slidably provided in the truss track (309), and the two second installation sliders (310) are respectively rotatably matched with adjacent limit moving components, and each second installation slider (310) is fixedly connected to a fixing frame (311), and the limit moving component in the truss track (309) is also fixedly connected to a fixing frame (311). ), the lower parts of the two fixing frames (311) are fixedly connected with mounting blocks (312), the rear side surface of the truss track (309) is fixedly connected with a spur gear (313), the second mounting slide block (310) is rotatably provided with a second spur gear (314) via a rotating shaft, the middle parts of the two mounting blocks (312) are penetrated and rotatably provided with a second transmission shaft (315), the rotating shaft of the second spur gear (314) and the second transmission shaft (315) are connected via a pulley belt transmission, the middle part of the second transmission shaft (315) is fixedly connected with a third spur gear (316), the two adjacent mounting blocks (312) are fixedly connected with a limiting ring (317), a rotating seat (318) is rotatably provided between the two adjacent limiting rings (317), the inner side surface of the rotating seat (318) is provided with an internal gear ring, the internal gear ring of the rotating seat (318) is meshed with the adjacent third spur gear (316), and the rotating seat (318) is installed with a first monitoring head (319).

3. A data center computer room preset security monitoring device according to claim 2, characterized in that: The first monitoring heads (319) in the cabinet dynamic monitoring components (3) located on the left and right sides of the machine room face the middle of the machine room, and the remaining first monitoring heads (319) face adjacent cabinet dynamic monitoring components (3).

4. A data center computer room preset security monitoring device according to claim 2, characterized in that: The limiting movement assembly comprises a first driving member (302), the first driving member (302) is slidably matched with an adjacent limiting track (301) or a truss track (309) through a fixed seat, the first driving member (302) is connected to an external monitoring terminal through the Internet of Things, the output shaft of the first driving member (302) is fixedly connected to a first transmission shaft (303), the first transmission shaft (303) is connected to the adjacent limiting track (301) and a first installation slide block (308) or a truss track (309) and a second installation slide block ( 310) is rotatably connected, a bevel gear (304) is arranged on the first transmission shaft (303), a limit wheel (305) and a driving wheel (307) are rotatably arranged on the fixed seat of the first driving member (302) through the rotation of the rotating shaft, a bevel gear (304) is also arranged on the rotating shaft of the limit wheel (305), adjacent bevel gears (304) are meshed with each other, and first spur gears (306) are fixedly connected to the rotating shafts of the first transmission shaft (303) and the driving wheel (307), and adjacent first spur gears (306) are meshed with each other.

5. A data center computer room pre-settable security monitoring device according to claim 4, characterized in that: Pulleys are provided on the upper and lower side surfaces of the first installation slider (308) and the second installation slider (310), and the pulleys are used to reduce the friction between the two and the limiting track (301) and the truss track (309) respectively.

6. A data center computer room preset security monitoring device according to claim 1, characterized in that: The channel monitoring component (4) comprises an electric slide rail (401), the electric slide rail (401) is connected to an external monitoring terminal via the Internet of Things, the electric slide rail (401) is fixedly mounted on the top of a machine room wall (1), a slider is provided on the electric slide rail (401), a second driving member (402) is fixedly connected to the slider of the electric slide rail (401), the second driving member (402) is connected to an external monitoring terminal via the Internet of Things, a mounting frame (403) is fixedly connected to the telescopic end of the second driving member (402), two connecting frames (404) are mounted on the mounting frame (403), the lower ends of the two connecting frames (404) are fixedly connected to a fixing plate (405), and the connecting frame (404) and the fixing plate (405) are connected to the mounting frame (403). A limit groove is formed between the connecting frame (404) and the fixing plate (405), a hook plate (406) is rotatably arranged on the fixing plate (405), a torsion spring (407) is arranged between the fixing plate (405) and the hook plate (406), a mounting seat (408) is arranged on the outer side surface of the hook plate (406), and a limit rod (409) is arranged on the mounting seat (408), a plurality of second monitoring heads (410) are arranged between the connecting frame (404) and the fixing plate (405), a mounting groove is opened at the tail of the second monitoring head (410), the hook plate (406) is used for limiting the position of the second monitoring head (410), and a monitoring installation assembly is arranged on the side wall of the machine room wall (1) and the mounting frame (403), and the monitoring installation assembly is used for cooperating to place the second monitoring head (410).

7. A data center computer room preset security monitoring device according to claim 6, characterized in that: The width of the lower portion of the second monitoring head (410) is greater than the width of the upper portion thereof, and limiting blocks are respectively fixedly connected to both sides of the lower portion of the second monitoring head (410), and the limiting blocks of the second monitoring head (410) are slidably arranged in limiting grooves formed by the connection frame (404) and the fixing plate (405) cooperating with the mounting frame (403).

8. A data center computer room preset security monitoring device according to claim 6, characterized in that: The monitoring installation assembly comprises a limit horizontal plate (411), the limit horizontal plate (411) is fixedly connected to the upper part of the installation frame (403), a spring expansion member (412) is fixedly connected to the limit horizontal plate (411), a pressure plate (413) is fixedly connected to the lower end of the spring expansion member (412), a plurality of fixed hanging plates (414) are provided, the plurality of fixed hanging plates (414) are respectively fixedly connected to the side walls of the machine room wall (1), and a second monitoring member is provided on the fixed hanging plate (414). The control head (410) is connected to a docking interface for battery life, the fixed hanging plate (414) and the mounting groove of the second monitoring head (410) are limited and slidably matched, triangular limit blocks (415) are arranged on both sides of the fixed hanging plate (414), the triangular limit blocks (415) on both sides of the fixed hanging plate (414) are symmetrically arranged, the triangular limit blocks (415) are fixedly connected to the side wall of the machine room wall (1), and a spring limit plate (416) is rotatably arranged on each triangular limit block (415).

9. A data center computer room preset security monitoring device according to claim 1, characterized in that: The monitoring and protection component (5) comprises a fixed frame (501), the fixed frame (501) being fixedly connected to a side wall of a machine room wall (1), the side of the fixed frame (501) not in close contact with the machine room wall (1) being an arc-shaped plate, a third driving member (502) being fixedly connected to the fixed frame (501), a telescopic end of the third driving member (502) being fixedly connected to a limit frame (503), a sealing plate (504) being slidably arranged on the arc-shaped plate of the fixed frame (501), a limit pin being fixedly connected to the sealing plate (504), and the limit pin of the sealing plate (504) being slidably matched with the limit frame (503).

10. A method for presetting security monitoring of a data center computer room according to any one of claims 1 to 9, characterized in that: The following steps are included: S1: When monitoring a CNC machine room, firstly, the cabinet dynamic monitoring component (3) is installed on the top of the machine room wall (1) to complete the layout of the dynamic security monitoring network, and the channel monitoring component (4) is installed on the machine room wall (1) to complete the layout of the static security monitoring network, and the monitoring protection component (5) is installed at a predetermined position on the machine room wall (1); S2: The first drive member (302) drives the first monitoring head (319) to perform dynamic security monitoring along the cabinet group (2), and the external monitoring terminal presets the frequency and duration of security patrol monitoring to monitor the working status of the equipment in the cabinet group (2). The first monitoring head (319) follows the operator to perform real-time monitoring, and an alarm is sent to the external monitoring terminal when an outsider breaks in. The second monitoring head (410) is respectively arranged at both ends of the channel between the cabinet groups (2) through the channel monitoring component (4), and the channel between the cabinet groups (2) is fully monitored by the second monitoring head (410); S3: When the monitoring device is damaged by human intervention, the cabinet dynamic monitoring component (3) and the channel monitoring component (4) are controlled by the external monitoring terminal to start the protection mechanism. The cabinet dynamic monitoring component (3) controls its first monitoring head (319) to move and retract to the gap between the top of the computer room wall (1) and the cabinet group (2). The channel monitoring component (4) retracts the second monitoring head (410) and sends it to the monitoring protection component (5) for protection, so that the monitoring device is protected from human intervention. S4: When the CNC center room is damaged by human intervention, the cabinet dynamic monitoring component (3) is used to monitor and collect evidence, ensuring that more monitoring evidence is retained.

Citation Information

Patent Citations

  • Data center machine room environment monitoring system

    CN113311841A

  • Camera installation device of machine room cabinet channel

    CN212079173U