CN204925690U - Electric monitoring management system - Google Patents

Electric monitoring management system Download PDF

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Publication number
CN204925690U
CN204925690U CN201520682241.9U CN201520682241U CN204925690U CN 204925690 U CN204925690 U CN 204925690U CN 201520682241 U CN201520682241 U CN 201520682241U CN 204925690 U CN204925690 U CN 204925690U
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monitoring device
management
electric
electric data
control center
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CN201520682241.9U
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张�杰
张东伟
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Shenzhen Clever Electronic Co Ltd
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Shenzhen Clever Electronic Co Ltd
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Abstract

The utility model provides an electric monitoring management system, this electric monitoring management system include computer lab management center, management control center and a plurality of electric monitoring devices, each electric monitoring devices sets up on a rack of computer lab, the executive instruction of input is received at the computer lab management center, and will the executive instruction sends management control center, the management control center receive the executive instruction, according to the transmission of electric monitoring devices the electrical data of the circular telegram input cable of rack calculates the rack the energy consumption total value of circular telegram input cable, and will electrical data with the transmission of energy consumption total value extremely the computer lab management center. Implement the utility model discloses, can be in a flexible way carry out real -time supervision to the circular telegram cable of rack in the computer lab, connect up in having reduced the computer lab, easy to maintain, and then reduced the cost, maintenance cost etc. Of computer lab construction to realized centralized management, and then made the green and energy -conserving computer lab construction of realization.

Description

A kind of electrically management system for monitoring
Technical field
The utility model relates to electric monitoring technical field, more particularly, relates to a kind of electrically management system for monitoring.
Background technology
Along with the information technoloy equipment in electronic information system machine rooms is highdensity integrated, the phenomenon that information technoloy equipment heat radiation and machine room heat dissipation capacity are day by day tended towards superiority starts to be subject to all circles' strong interest.According to research display, the carbon emission are correlated with in current IT and telecommunications aspect has become one of maximum greenhouse gas emission source, and along with the whole world to calculating, data store and the growth of communication technology demand, the carbon emission amount of this aspect presents zooming trend.Therefore how to realize green and energy-conservation computer room construction and become problem demanding prompt solution.
The measurement index of data center's electricity usage efficiency relatively more current is at present PUE (PowerUsageEffectiveness, power supply service efficiency) value, weigh the energy consumption height of computer room construction and machine room consumer, this PUE value represents the ratio of all energy of data center consumes and the energy of information technoloy equipment load consumption, this PUE value, more close to 1, represents that the green degree of a data center is higher.Wherein, on computer room construction, the important link realizing green and energy-conservation computer room construction to the monitoring of the electric data of information technoloy equipment and to the management of electric data monitoring, it is the basis of the PUE value effectively controlling machine room, therefore, how to develop a kind of can the electrical monitoring device of electric data of information technoloy equipment of extract real-time machine room, and can to manage concentratedly and the method for the electric monitoring management of process problem becomes problem demanding prompt solution to realize green and energy-conservation computer room construction in time.
Utility model content
The technical problems to be solved in the utility model is, for the existing urgency and the necessity that realize green and energy-conservation computer room construction, provides a kind of electrically management system for monitoring.
The technical scheme in the invention for solving the above technical problem there is provided a kind of electrically management system for monitoring, be applied to machine room, comprise computer lab management center, management control center and multiple electrical monitoring device, wherein, electrical monitoring device described in each is arranged on a rack of machine room;
The supervisory instruction of described computer lab management receive centre input, and described supervisory instruction is sent described management control center;
Described management control center receives described supervisory instruction, the electric data of the energising input cable of the described rack transmitted according to described electrical monitoring device calculates the energy consumption total value of the described energising input cable of described rack, and described electric data and described energy consumption total value are transferred to described computer lab management center.
In above-mentioned electric management system for monitoring, electrical monitoring device described in each comprises multiple access terminal, the 2nd CPU, LED display module and the second hummer, wherein, access the external mutual inductor of terminal described in each, described mutual inductor and one of the rack in the machine room input cable that is energized is connected;
Be energized described in described mutual inductor Real-Time Monitoring the described electric data of input cable, and described electric data is transferred to described 2nd CPU;
Described 2nd CPU receives the described electric data of the described energising input cable that described mutual inductor monitors, and described electric data is compared with the threshold value preset, when described electric data is greater than described threshold value, controls described second hummer work and show the large information of the energy consumption of described energising input cable of described mutual inductor monitoring by described LED display module.
In above-mentioned electric management system for monitoring, electrical monitoring device described in each also comprises a wireless module, and electrical monitoring device described in each is set up radio communication by described wireless module with described management control center and is connected.
In above-mentioned electric management system for monitoring, described mutual inductor is movable mutual sensor or buckle-type mutual inductor.
In above-mentioned electric management system for monitoring, described management control center comprises wireless receiving module and a CPU, described wireless receiving module receives the described electric data of the described energising input cable of described electrical monitoring device transmission, and a described CPU calculates the energy consumption total value of the described energising input cable of described rack according to described electric data.
In above-mentioned electric management system for monitoring, described management control center also comprises LCD display module and the first hummer; The connection of a described CPU also described wireless receiving module of electrical monitoring device described in real-time judge and described management control center, when the time judging that described judgement electrical monitoring device goes offline exceedes the default time period, control described first hummer and send alarm prompt, and show the physical address of the corresponding described electrical monitoring device gone offline by described LCD display module.
In above-mentioned electric management system for monitoring, described management control center also comprises signal designation module; The electric data total value of a described CPU also real-time judge electrical monitoring device transmission described in each, when judging that described electric data total value exceedes the Second Threshold of default threshold range, control described first hummer and send alarm prompt, and show the electric data total value of described electrical monitoring device by described LCD display module; When judging that described electric data total value exceedes the first threshold of default threshold range, control described signal designation module work to send early warning; The first threshold of described threshold range is less than the Second Threshold of threshold range.
The beneficial effect implementing electric management system for monitoring of the present utility model has: electrical monitoring device can carry out Real-Time Monitoring to the energising cable of rack in machine room flexibly by external mutual inductor, simultaneously, electrical monitoring device is set up radio communication by wireless module and management control center and is connected, decrease in machine room and connect up, be easy to safeguard, and then decrease the cost, maintenance cost etc. of computer room construction.In addition, being controlled by management control center can the energy consumption of energising cable of each rack in Real-Time Monitoring machine room, realize the centralized management to the electricity consumption cable of rack, for the PUE value calculating each rack during computer room construction provides data basis, and then the computer room construction making realization green and energy-conservation.
Accompanying drawing explanation
Fig. 1 is the structural representation of electric management system for monitoring embodiment of the present utility model.
Fig. 2 is the structural representation of the management control center in Fig. 1.
Fig. 3 is the structural representation of electrical monitoring device embodiment of the present utility model.
Fig. 4 is the process flow diagram of the management method embodiment of electric management system for monitoring of the present utility model.
Embodiment
In order to make the purpose of this utility model, technical scheme and advantage clearly understand, below in conjunction with drawings and Examples, the utility model is further elaborated.Should be appreciated that specific embodiment described herein only in order to explain the utility model, and be not used in restriction the utility model.
With reference to figure 1, the electric management system for monitoring 100 of embodiment of the present utility model comprises computer lab management center 1, management control center 2 and electrical monitoring device 3.Computer lab management center 1 and management control center 2 communicate to connect.Usually, when computer room construction, have multiple electrical monitoring device 3, each electrical monitoring device 3 communicates to connect with management control center 2.Each electrical monitoring device 3 is arranged on a rack of machine room, the electric data of the energising input cable of this rack of Real-Time Monitoring, and this electric data is transferred to management control center 2; Management control center 2 receives this electric data, calculates the energy consumption of this rack according to this electric data.
In embodiment of the present utility model, each electrical monitoring device 3 adopts independently power supply, when power supply works, electrical monitoring device 3 is started working, the electric data of monitoring energising input cable, and set up the communication connection with management control center 2, the electric data of the energising input cable monitored is transferred to management control center 2.
Management control center 2 receives this electric data, calculates the energy consumption total value of the energising input cable of this rack according to this electric data.
Computer lab management center 1 receives the supervisory instruction of input, and this supervisory instruction is sent to management control center 2.Usually, supervisory instruction is controlled and input by the managerial personnel of machine room.
Management control center 2 receives this supervisory instruction, the electric data transmit electrical monitoring device 3 and transfer to computer lab management center 1 according to the energy consumption total value that this electric data calculates.
Computer lab management center 1 receives this electric data and energy consumption total value, and carries out record to this electric data and energy consumption total value.Now, the managerial personnel of machine room analyze according to this electric data and energy consumption, and calculate the PUE value of this rack, and then carry out corresponding process, to reduce the energy consumption of machine room rack according to this PUE value to the information technoloy equipment on the rack of machine room.
Particularly, as shown in Figure 2, management control center 2 comprises wireless receiving module 21, a CPU22, LCD display module 23, first hummer 24, signal designation module 25, replacement/reseting module 26 and output module 27.Wireless receiving module 21 receives the electric data of multiple electrical monitoring device 3 transmission, and a CPU22 calculates the energy consumption total value of the energising input cable of this rack according to this electric data.Usually, when electric data is transferred to wireless receiving module 21 by electrical monitoring device 3, wireless receiving module 21 first needs to set up wireless connections with electrical monitoring device 3, now, due to the built-in embedded type WEB system of a CPU22, replacement/reseting module 26 configuration network parameter, as IP address, DNS etc., this network parameter of electrical monitoring device 3 Automatic inquirying connects.The connection of the one CPU22 also real-time judge electrical monitoring device 3 and the wireless receiving module 21 of management control center 2, when the time judging that electrical monitoring device 3 goes offline exceedes the default time period, control the first hummer 24 and send alarm prompt, and the physical address of the corresponding electrical monitoring device 3 gone offline is shown by LCD display module 23, as the rack residing for this electrical monitoring device 3, carry out to facilitate the maintainer of machine room safeguarding, fault warning process.
One CPU22 also each electrical monitoring device 3 of real-time judge transmission electric data total value, when judging that electric data total value exceedes the Second Threshold of default threshold range, control the first hummer 24 and send alarm prompt, and the electric data total value of electrical monitoring device 3 is shown by LCD display module 23, and when judging that electric data total value exceedes the first threshold of default threshold range, control signal indicating module 25 works to send early warning, and then remind the maintainer of machine room, need the energy reducing machine room consuming time maintainer, the energising input cable of the rack that this electrical monitoring device 3 is monitored can be used as the alternative option reducing energy consumption.Wherein, the first threshold of threshold range is less than the Second Threshold of threshold range.
In embodiment of the present utility model, output module 27 comprises RS485 interface (not shown), this RS485 interface is connected with one end of common netting twine, the other end of this common netting twine is connected with computer lab management center 1, like this, the wired connection of computer lab management center 1 and management control center 2 is achieved.
With reference to figure 3, each electrical monitoring device 3 comprises multiple access terminal 31, the 2nd CPU32, wireless module 33, LED display module 34 and the second hummer 35, wherein, the external mutual inductor (not shown) of each access terminal 31, each mutual inductor and one of rack in the machine room input cable that is energized is connected, particularly, when this mutual inductor is buckle-type mutual inductor, be buckled on energising input cable; When this mutual inductor is movable mutual sensor, movable being connected to is energized on input cable.The electric data of each this energising input cable of mutual inductor Real-Time Monitoring, as voltage and current etc., electric data is transferred to the 2nd CPU32 by each mutual inductor, 2nd CPU32 receives the electric data that each mutual inductor monitors, and the electric data monitored by each mutual inductor compares with the threshold value preset, when this electric data is greater than this threshold value, control the second hummer 35 work and show the large information of the energy consumption of energising input cable of this mutual inductor monitoring by LED display module 34, carry out to facilitate the maintainer of machine room safeguarding and processing.
In embodiment of the present utility model, management control center 2 and electrical monitoring device 3 establish a communications link, and the network parameter of wireless module 33 Automatic inquirying management control center configuration connects.
In embodiment of the present utility model, each electrical monitoring device 3 also comprises power module (not shown), like this, each electrical monitoring device 3 adopts independently power supply, unaffected between multiple electrical monitoring device 3, and then electrical monitoring device 3 can be arbitrarily distributed in machine room on rack.
Below in conjunction with Fig. 4, the electric monitoring management method of electric management system for monitoring of the present utility model is described:
With reference to figure 4, the method comprises the following steps:
S1, computer lab management center 1 receive the supervisory instruction inputted, and this supervisory instruction are sent to management control center 2.
S2, management control center receive this supervisory instruction, the electric data of the energising input cable of the rack monitored according to electrical monitoring device calculates the energy consumption total value of the energising input cable of this rack, and transfers to computer lab management center by this electric data and according to the energy consumption total value that this electric data calculates.
In embodiment of the present utility model, also comprise before step S2: the start-up command that management control center receiving house administrative center sends carries out power-on operation.Wherein, when management control center performs power-on operation, check and be confirmed whether to meet compressor start up condition, if met, then perform power-on operation.
In embodiment of the present utility model, also comprise before step S2: electrical monitoring device 3 is set up radio communication with management control center 2 and is connected.
In embodiment of the present utility model, also comprise after step S2: computer lab management center 1 receives this electric data and energy consumption total value, and record is carried out to this electric data and energy consumption total value.
Summary, electric management system for monitoring of the present utility model, electrical monitoring device can carry out Real-Time Monitoring to the energising cable of rack in machine room flexibly by external mutual inductor, simultaneously, electrical monitoring device is set up radio communication by wireless module and management control center and is connected, decrease in machine room and connect up, be easy to safeguard, and then decrease the cost, maintenance cost etc. of computer room construction.In addition, being controlled by management control center can the energy consumption of energising cable of each rack in Real-Time Monitoring machine room, realize the centralized management to the electricity consumption cable of rack, for the PUE value calculating each rack during computer room construction provides data basis, and then the computer room construction making realization green and energy-conservation.
The above; be only the utility model preferably embodiment; but protection domain of the present utility model is not limited thereto; anyly be familiar with those skilled in the art in the technical scope that the utility model discloses; the change that can expect easily or replacement, all should be encompassed within protection domain of the present utility model.Therefore, protection domain of the present utility model should be as the criterion with the protection domain of claim.

Claims (7)

1. an electric management system for monitoring, is applied to machine room, it is characterized in that, comprises computer lab management center, management control center and multiple electrical monitoring device, and wherein, electrical monitoring device described in each is arranged on a rack of machine room;
The supervisory instruction of described computer lab management receive centre input, and described supervisory instruction is sent described management control center;
Described management control center receives described supervisory instruction, the electric data of the energising input cable of the described rack transmitted according to described electrical monitoring device calculates the energy consumption total value of the described energising input cable of described rack, and described electric data and described energy consumption total value are transferred to described computer lab management center.
2. according to the electric management system for monitoring described in claim 1, it is characterized in that, electrical monitoring device described in each comprises multiple access terminal, the 2nd CPU, LED display module and the second hummer, wherein, access the external mutual inductor of terminal described in each, described mutual inductor and one of the rack in the machine room input cable that is energized is connected;
Be energized described in described mutual inductor Real-Time Monitoring the described electric data of input cable, and described electric data is transferred to described 2nd CPU;
Described 2nd CPU receives the described electric data of the described energising input cable that described mutual inductor monitors, and described electric data is compared with the threshold value preset, when described electric data is greater than described threshold value, controls described second hummer work and show the large information of the energy consumption of described energising input cable of described mutual inductor monitoring by described LED display module.
3. according to the electric management system for monitoring described in claim 2, it is characterized in that, electrical monitoring device described in each also comprises a wireless module, and electrical monitoring device described in each is set up radio communication by described wireless module with described management control center and is connected.
4. according to the electric management system for monitoring described in claim 3, it is characterized in that, described mutual inductor is movable mutual sensor or buckle-type mutual inductor.
5. according to the electric management system for monitoring described in claim 4, it is characterized in that, described management control center comprises wireless receiving module and a CPU, described wireless receiving module receives the described electric data of the described energising input cable of described electrical monitoring device transmission, and a described CPU calculates the energy consumption total value of the described energising input cable of described rack according to described electric data.
6. according to the electric management system for monitoring described in claim 5, it is characterized in that, described management control center also comprises LCD display module and the first hummer; The connection of a described CPU also described wireless receiving module of electrical monitoring device described in real-time judge and described management control center, when the time judging that described judgement electrical monitoring device goes offline exceedes the default time period, control described first hummer and send alarm prompt, and show the physical address of the corresponding described electrical monitoring device gone offline by described LCD display module.
7. according to the electric management system for monitoring described in claim 6, it is characterized in that, described management control center also comprises signal designation module; The electric data total value of a described CPU also real-time judge electrical monitoring device transmission described in each, when judging that described electric data total value exceedes the Second Threshold of default threshold range, control described first hummer and send alarm prompt, and show the electric data total value of described electrical monitoring device by described LCD display module; When judging that described electric data total value exceedes the first threshold of default threshold range, control described signal designation module work to send early warning; The first threshold of described threshold range is less than the Second Threshold of described threshold range.
CN201520682241.9U 2015-09-06 2015-09-06 Electric monitoring management system Active CN204925690U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105182824A (en) * 2015-09-06 2015-12-23 深圳市克莱沃电子有限公司 Electrical monitoring and management system, and management method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105182824A (en) * 2015-09-06 2015-12-23 深圳市克莱沃电子有限公司 Electrical monitoring and management system, and management method thereof

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