WO2017217566A1 - Air conditioning method for data center for maximization of efficiency inside data center - Google Patents

Air conditioning method for data center for maximization of efficiency inside data center Download PDF

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WO2017217566A1
WO2017217566A1 PCT/KR2016/006345 KR2016006345W WO2017217566A1 WO 2017217566 A1 WO2017217566 A1 WO 2017217566A1 KR 2016006345 W KR2016006345 W KR 2016006345W WO 2017217566 A1 WO2017217566 A1 WO 2017217566A1
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data center
air conditioning
temperature
sensors
humidity
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PCT/KR2016/006345
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French (fr)
Korean (ko)
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김현우
김영환
임채영
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전자부품연구원
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Priority to PCT/KR2016/006345 priority Critical patent/WO2017217566A1/en
Publication of WO2017217566A1 publication Critical patent/WO2017217566A1/en

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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/20Modifications to facilitate cooling, ventilating, or heating

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  • the present invention relates to an air conditioning system, and more particularly, to an air conditioning system for a server rack (Sever Rack) installed in a data center and a temperature / humidity measurement module therefor.
  • server rack Server Rack
  • the present invention relates to an air conditioning system for a server rack (Sever Rack) installed in a data center and a temperature / humidity measurement module therefor.
  • FIG. 1 The concept of the data center air conditioning system in this manner is illustrated in FIG. 1.
  • the air conditioning system 10 installs a temperature / humidity sensor in the exhaust port 2 and the intake port 3 of the data center 1 to provide air conditioning through the intake / exhaust temperature throughout the data center 1.
  • the concept of control is shown.
  • the present invention has been made to solve the above problems, an object of the present invention, to maximize the air conditioning efficiency inside the data center, by measuring the temperature / humidity with sensors that can be installed directly in the server rack,
  • the present invention provides a data center air conditioning control system and method for zonally controlling air conditioning in a data center.
  • a data center air conditioning control system includes: sensors installed in server racks of a data center and configured to measure an environment in the server racks; And an air conditioning system for controlling air conditioning of the data center based on an environment measured by the sensors.
  • the sensors may be installed on the front and rear surfaces of the server racks.
  • the sensors may be installed on the top, middle and bottom of the server racks.
  • the sensors may measure temperature and humidity in the server racks.
  • the sensors may be of a type detachable to the server racks.
  • the data center air conditioning control method installed in the server racks of the data center, measuring the environment in the server racks; And controlling the air conditioning of the data center based on the measured environment.
  • the inside of the data center is divided into a hot zone and a cool zone, thereby enabling more effective and efficient air conditioning control.
  • FIG. 2 is a diagram illustrating a data center interior to which the present invention is applicable
  • Figure 3 is a side view showing the structure in which the temperature / humidity sensor is installed in the server rack
  • FIG. 4 is a detailed block diagram of the air conditioning system shown in FIG.
  • FIG. 5 is a flowchart provided to explain a data center air conditioning control method according to an embodiment of the present invention.
  • FIG. 2 is a diagram illustrating a data center interior to which the present invention is applicable. As shown in FIG. 2, server racks 200 are arranged / installed in the data center, and an air conditioning system 100 is arranged / installed.
  • the air conditioning system 100 is a system for controlling air conditioning of a data center. Although only one Taiwan is illustrated in FIG. 2, there is no limitation on the number of air conditioners.
  • the air conditioning system 100 monitors supply air and intake air in the unit of the server rack 200, and divides the data center into a hot zone and a cool zone based on the air conditioning system. Control air conditioning
  • the server rack 200 is equipped with a temperature / humidity sensor that is a module for measuring the temperature and humidity, the installation structure thereof will be described in detail with reference to FIG.
  • FIG. 3 is a view showing the temperature / humidity sensor 250 installed in the server rack 200 from the side. As shown in FIG. 3, a plurality of temperature / humidity sensors 250 are installed in each server rack 200.
  • the temperature / humidity sensors 250 may be attached to or detached from the server rack 200, and the installation location of the temperature / humidity sensors 250 may be changed.
  • the rear surface of the temperature / humidity sensors 250 includes a detachable adhesive means / mechanism.
  • the temperature / humidity sensor 250 is installed on both the front and the rear of the server rack 200.
  • the temperature / humidity sensor 250 installed at the front side is a sensor for measuring the intake temperature / humidity of the server rack 200
  • the temperature / humidity sensor 250 installed at the front side is the exhaust temperature / humidity of the server rack 200. It is a sensor for measuring humidity.
  • the temperature / humidity sensor 250 is installed at all of the top, middle, and bottom of the server rack 200.
  • the intake temperature / humidity and exhaust temperature / humidity of the server rack 200 may be different depending on the height.
  • the temperature / humidity sensor 250 transmits temperature / humidity data to the air conditioning system 100 in real time or periodically.
  • the temperature / humidity sensors 250 are assigned different IDs, and the IDs are included in the headers of the transmitted temperature / humidity data, so that the air conditioning system 100 receives the received data from any temperature / humidity sensor 250. You can tell if it is data.
  • the air conditioning system 100 includes a communication unit 110, a control unit 120, and an air conditioning unit 130.
  • the communicator 110 receives the temperature / humidity data from the temperature / humidity sensors 250 as a means for wireless communication with the temperature / humidity sensors 250.
  • the controller 120 determines the environment inside the data center based on the temperature / humidity data received through the communication unit 110, and controls the air conditioning unit 130 based on the determined environment to optimize the inside of the data center. Keep it in the environment.
  • FIG. 5 is a flowchart provided to explain a data center air conditioning control method according to an embodiment of the present invention.
  • the communication unit 110 of the air conditioning system 100 performs real-time / periodic temperature / humidity data from the temperature / humidity sensors 250 of the server racks 200 arranged / installed in a data center. Received to (S310).
  • the control unit 120 of the air conditioning system 100 uses the temperature / humidity data.
  • the state of the air flowing into the server racks 200 and the state of the air flowing out of the server racks 200 may be determined.
  • the controller 120 may grasp the state of the air for each height of the data center from the temperature / humidity data. .
  • the controller 120 identifies and partitions a hot zone and a cool zone in the data center based on the temperature / humidity data received from step S310 (S320).
  • step S330 the controller 120 controls the air conditioning unit 130 based on the grasp / compartment result of step S320 (S330).
  • step S330 relatively hot air is supplied to the hot zone, relatively cool air is supplied to the cool zone.
  • the temperature and humidity presented in the above example correspond to a kind of environmental data.
  • the technical spirit of the present invention may also be applied to collecting other environmental data and controlling air conditioning accordingly.
  • air conditioning control system and method presented in the above embodiment may be applied to other facilities other than the data center, and in such a case, it is included in the scope of the present invention.

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  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Air Conditioning Control Device (AREA)

Abstract

An air conditioning system for a data center and a rack mounted type temperature/humidity measurement module for the same are provided. A data center air conditioning control system according to an embodiment of the present invention comprises: sensors that are installed on server racks in a data center and measure environments in the server racks; and an air conditioning system that controls the air conditioning in the data center on the basis of the environments measured by the sensors. Accordingly, it is possible to perform environment monitoring in a server rack unit, not in a unit of the whole data center, and immediately perform air conditioning control according to the environment monitoring, thereby maximizing the efficiency of the air conditioning inside the data center.

Description

데이터 센터 내부 효율 극대화를 위한 데이터센터의 공조 방법How data centers work together to maximize efficiency inside the data center
본 발명은 공조 시스템에 관한 것으로, 더욱 상세하게는 데이터 센터 내에 설치된 서버 랙(Sever Rack)들을 위한 공조 시스템 및 이를 위한 온/습도 측정 모듈에 관한 것이다.The present invention relates to an air conditioning system, and more particularly, to an air conditioning system for a server rack (Sever Rack) installed in a data center and a temperature / humidity measurement module therefor.
서버 랙에서의 발열량과 서버 랙을 냉각하기 위한 필요한 냉각량을 서버 랙 단위로 계산하는 것은 실질적으로 불가능하다. 이에, 데이터 센터 전체의 전력량을 대비로 발열량을 계산하는 간접법을 통하여 열량을 계산하고, 이를 기반으로 공조 환경을 모니터링 또는 관리하는 기술이 사용되고 있다.It is practically impossible to calculate the amount of heat generated in the server rack and the amount of cooling required to cool the server rack in server rack units. Accordingly, a technology for calculating calories through an indirect method of calculating heat generation in comparison with the power amount of the entire data center and monitoring or managing an air conditioning environment based on the calorific value is used.
이와 같은 방식에 의한 데이터 센터 공조 시스템의 개념을 도 1에 도시하였다. 도 1에서는 공조 시스템(10)이 데이터 센터(1)의 배기구(2)와 흡기구(3)에 각각 온/습도 센서를 설치하여 데이터 센터(1)의 전반에 걸친 흡기/배기 온도를 통해 공조를 제어하는 개념이 나타나 있다.The concept of the data center air conditioning system in this manner is illustrated in FIG. 1. In FIG. 1, the air conditioning system 10 installs a temperature / humidity sensor in the exhaust port 2 and the intake port 3 of the data center 1 to provide air conditioning through the intake / exhaust temperature throughout the data center 1. The concept of control is shown.
이에 따른 데이터센터의 공조 에너지 효율은 기대 이하로 낮은 편이기에 개선이 요구된다. 공조에 사용되는 에너지를 효율적으로 관리하기 위해서는, 서버 랙 단위로 발열을 모니터링 하고, 냉각에 사용되는 에너지량을 계산하는 것이 요구된다.As a result, air-conditioning energy efficiency of data centers is lower than expected, and improvement is needed. In order to efficiently manage the energy used for air conditioning, it is required to monitor the heat generation in units of server racks and calculate the amount of energy used for cooling.
한편, Chimney Rack에서는 서버 랙 단위의 공조 관리가 가능하지만, 매우 고가이므로 다른 방안의 모색이 요청된다.On the other hand, in the Chimney Rack, air conditioning can be managed in units of server racks, but since it is very expensive, other methods are required.
본 발명은 상기와 같은 문제점을 해결하기 위하여 안출된 것으로서, 본 발명의 목적은, 데이터 센터 내부의 공조 효율을 극대화하기 위한 방안으로, 서버 랙에 직접 설치가능한 센서들로 온/습도를 측정하여, 데이터 센터 내부의 공조를 구역적으로 제어하는 데이터 센터 공조 제어 시스템 및 방법을 제공함에 있다.The present invention has been made to solve the above problems, an object of the present invention, to maximize the air conditioning efficiency inside the data center, by measuring the temperature / humidity with sensors that can be installed directly in the server rack, The present invention provides a data center air conditioning control system and method for zonally controlling air conditioning in a data center.
상기 목적을 달성하기 위한 본 발명의 일 실시예에 따른, 데이터 센터 공조 제어 시스템은, 데이터 센터의 서버 랙들에 설치되며, 상기 서버 랙들에서의 환경을 측정하는 센서들; 및 상기 센서들에서 측정된 환경을 기초로, 상기 데이터 센터의 공조를 제어하는 공조 시스템;을 포함한다.In accordance with an aspect of the present invention, a data center air conditioning control system includes: sensors installed in server racks of a data center and configured to measure an environment in the server racks; And an air conditioning system for controlling air conditioning of the data center based on an environment measured by the sensors.
그리고, 상기 센서들은, 상기 서버 랙들의 앞면과 뒷면에 설치될 수 있다.The sensors may be installed on the front and rear surfaces of the server racks.
또한, 상기 센서들은, 상기 서버 랙들의 상부, 중부 및 하부에 설치될 수 있다.In addition, the sensors may be installed on the top, middle and bottom of the server racks.
그리고, 상기 센서들은, 상기 서버랙들에서의 온도와 습도를 측정할 수 있다.The sensors may measure temperature and humidity in the server racks.
또한, 상기 센서들은, 상기 서버랙들에 탈부착이 가능한 타입일 수 있다.In addition, the sensors may be of a type detachable to the server racks.
한편, 본 발명의 다른 실시예에 따른, 데이터 센터 공조 제어 방법은, 데이터 센터의 서버 랙들에 설치되며, 상기 서버 랙들에서의 환경을 측정하는 단계; 및 측정된 환경을 기초로, 상기 데이터 센터의 공조를 제어하는 단계;를 포함한다.On the other hand, the data center air conditioning control method according to another embodiment of the present invention, installed in the server racks of the data center, measuring the environment in the server racks; And controlling the air conditioning of the data center based on the measured environment.
이상 설명한 바와 같이, 본 발명의 실시예들에 따르면, 데이터 센터 전체 단위가 아닌 서버 랙 단위로 환경 모니터링이 가능하고 그에 따른 공조 제어가 즉각적으로 이루어질 수 있어, 데이터 센터 내부의 공조 효율을 극대화할 수 있게 된다.As described above, according to the embodiments of the present invention, it is possible to monitor the environment in units of server racks instead of the entire data center, and the air conditioning control can be performed immediately, thereby maximizing the air conditioning efficiency inside the data center. Will be.
또한, 본 발명의 실시예들에 따르면, 데이터 센터의 내부를 핫 존(Hot Zone)과 쿨 존(Cool Zone)으로 구분하여, 보다 효과적이고 효율적인 공조 제어가 가능해진다.In addition, according to embodiments of the present invention, the inside of the data center is divided into a hot zone and a cool zone, thereby enabling more effective and efficient air conditioning control.
도 1은 기존의 데이터 센터 공조 방식의 개념 설명에 제공되는 도면,1 is a view provided to explain a concept of an existing data center air conditioning method,
도 2는 본 발명이 적용가능한 데이터 센터 내부를 도시한 도면,2 is a diagram illustrating a data center interior to which the present invention is applicable;
도 3은 온/습도 센서가 서버 랙에 설치되는 구조를 측면에서 나타낸 도면,Figure 3 is a side view showing the structure in which the temperature / humidity sensor is installed in the server rack,
도 4는, 도 2에 도시된 공조 시스템의 상세 블럭도, 그리고,4 is a detailed block diagram of the air conditioning system shown in FIG.
도 5는 본 발명의 일 실시예에 따른, 데이터 센터 공조 제어 방법의 설명에 제공되는 흐름도이다.5 is a flowchart provided to explain a data center air conditioning control method according to an embodiment of the present invention.
이하에서는 도면을 참조하여 본 발명을 보다 상세하게 설명한다.Hereinafter, with reference to the drawings will be described the present invention in more detail.
도 2는 본 발명이 적용가능한 데이터 센터 내부를 도시한 도면이다. 도 2에 도시된 바와 같이, 데이터 센터 내부에는 서버 랙(200)들이 배치/설치되어 있고, 공조 시스템(100)이 배치/설치되어 있다.2 is a diagram illustrating a data center interior to which the present invention is applicable. As shown in FIG. 2, server racks 200 are arranged / installed in the data center, and an air conditioning system 100 is arranged / installed.
공조 시스템(100)은 데이터 센터의 공조를 제어하기 위한 시스템으로, 도 2에는 한 대만이 도시되어 있지만, 대수에 대한 제한은 없다.The air conditioning system 100 is a system for controlling air conditioning of a data center. Although only one Taiwan is illustrated in FIG. 2, there is no limitation on the number of air conditioners.
공조 시스템(100)은 배기(Supply Air)와 흡기(Return Air)를 서버 랙(200) 단위로 모니터링하고, 이를 기반으로 데이터 센터를 핫 존(Hot Zone)과 쿨 존(Cool Zone)으로 구획하여 공조를 제어한다.The air conditioning system 100 monitors supply air and intake air in the unit of the server rack 200, and divides the data center into a hot zone and a cool zone based on the air conditioning system. Control air conditioning
이를 위해, 서버 랙(200)에는 온도와 습도를 측정하기 위한 모듈인 온/습도 센서들이 장착되어 있는 바, 이들의 설치 구조에 대해 도 3을 참조하여 상세히 설명한다.To this end, the server rack 200 is equipped with a temperature / humidity sensor that is a module for measuring the temperature and humidity, the installation structure thereof will be described in detail with reference to FIG.
도 3은 서버 랙(200)에 설치되는 온/습도 센서(250)들을 측면에서 나타낸 도면이다. 도 3에 도시된 바와 같이, 온/습도 센서(250)들은 서버 랙(200) 마다 다수 개가 설치된다.3 is a view showing the temperature / humidity sensor 250 installed in the server rack 200 from the side. As shown in FIG. 3, a plurality of temperature / humidity sensors 250 are installed in each server rack 200.
온/습도 센서(250)들은 서버 랙(200)에 탈부착이 가능함은 물론, 서버 랙(200)에서의 설치 위치 변경이 가능하다. 서버 랙(200)에서의 탈부착과 설치 위치 변경을 위해, 온/습도 센서(250)들의 뒷면에는 탈부착이 가능한 접착 수단/메커니즘을 포함한다.The temperature / humidity sensors 250 may be attached to or detached from the server rack 200, and the installation location of the temperature / humidity sensors 250 may be changed. In order to attach and detach the server rack 200 and to change the installation position, the rear surface of the temperature / humidity sensors 250 includes a detachable adhesive means / mechanism.
도 3에 도시된 바와 같이, 온/습도 센서(250)는 서버 랙(200)의 앞면과 뒷면 모두에 설치된다. 앞면에 설치되는 온/습도 센서(250)는 서버 랙(200)의 흡기 온도/습도를 측정하기 위한 센서이고, 앞면에 설치되는 온/습도 센서(250)는 서버 랙(200)의 배기 온도/습도를 측정하기 위한 센서이다.As shown in FIG. 3, the temperature / humidity sensor 250 is installed on both the front and the rear of the server rack 200. The temperature / humidity sensor 250 installed at the front side is a sensor for measuring the intake temperature / humidity of the server rack 200, and the temperature / humidity sensor 250 installed at the front side is the exhaust temperature / humidity of the server rack 200. It is a sensor for measuring humidity.
또한, 도 3에 도시된 바와 같이, 온/습도 센서(250)는 서버 랙(200)의 상부, 중부 및 하부 모두에 설치된다. 서버 랙(200)의 흡기 온도/습도와 배기 온도/습도가 높이에 따라 상이할 수 있음을 반영한 것이다.In addition, as shown in FIG. 3, the temperature / humidity sensor 250 is installed at all of the top, middle, and bottom of the server rack 200. The intake temperature / humidity and exhaust temperature / humidity of the server rack 200 may be different depending on the height.
온/습도 센서(250)는 온/습도 데이터를 실시간 또는 주기적으로 공조 시스템(100)에 전송한다. 온/습도 센서(250)들에는 각기 다른 ID가 부여되어 있고, 전송되는 온/습도 데이터의 헤더에는 이 ID가 수록되어 있어, 공조 시스템(100)은 어느 온/습도 센서(250)로부터 수신된 데이터인지 구분할 수 있다.The temperature / humidity sensor 250 transmits temperature / humidity data to the air conditioning system 100 in real time or periodically. The temperature / humidity sensors 250 are assigned different IDs, and the IDs are included in the headers of the transmitted temperature / humidity data, so that the air conditioning system 100 receives the received data from any temperature / humidity sensor 250. You can tell if it is data.
이하에서는, 온/습도 센서(250)들로부터 수집한 온/습도 데이터들을 이용하여, 데이터 센터 내부의 공조를 제어하는 공조 시스템(100)에 대해, 도 4를 참조하여 상세히 설명한다.Hereinafter, an air conditioning system 100 that controls air conditioning inside a data center using temperature / humidity data collected from the temperature / humidity sensors 250 will be described in detail with reference to FIG. 4.
도 4는, 도 2에 도시된 공조 시스템(100)의 상세 블럭도이다. 도 4에 도시된 바와 같이, 공조 시스템(100)은, 통신부(110), 제어부(120) 및 공조부(130)를 포함한다.4 is a detailed block diagram of the air conditioning system 100 shown in FIG. As shown in FIG. 4, the air conditioning system 100 includes a communication unit 110, a control unit 120, and an air conditioning unit 130.
통신부(110)는 온/습도 센서(250)들과 무선 통신을 위한 수단으로, 온/습도 센서(250)들로부터 온/습도 데이터들을 수신한다.The communicator 110 receives the temperature / humidity data from the temperature / humidity sensors 250 as a means for wireless communication with the temperature / humidity sensors 250.
제어부(120)는 통신부(110)를 통해 수신된 온/습도 데이터들을 기초로, 데이터 센터 내부의 환경을 파악하고, 파악한 환경을 기초로 공조부(130)를 제어하여, 데이터 센터 내부를 최적의 환경으로 유지시킨다.The controller 120 determines the environment inside the data center based on the temperature / humidity data received through the communication unit 110, and controls the air conditioning unit 130 based on the determined environment to optimize the inside of the data center. Keep it in the environment.
제어부(120)에 의해 데이터 센터 내부의 공조가 제어되는 과정에 대해, 도 5를 참조하여 상세히 설명한다. 도 5는 본 발명의 일 실시예에 따른, 데이터 센터 공조 제어 방법의 설명에 제공되는 흐름도이다.A process of controlling air conditioning inside the data center by the controller 120 will be described in detail with reference to FIG. 5. 5 is a flowchart provided to explain a data center air conditioning control method according to an embodiment of the present invention.
도 5에 도시된 바와 같이, 먼저 공조 시스템(100)의 통신부(110)는 데이터 센터 내부에 배치/설치된 서버 랙(200)들의 온/습도 센서(250)들로부터 온/습도 데이터들을 실시간/주기적으로 수신한다(S310).As shown in FIG. 5, first, the communication unit 110 of the air conditioning system 100 performs real-time / periodic temperature / humidity data from the temperature / humidity sensors 250 of the server racks 200 arranged / installed in a data center. Received to (S310).
온/습도 센서(250)들은 서버 랙(200) 마다 설치되어 있고, 서버 랙(200)들의 앞면과 뒷면 모두에 설치되어 있으므로, 공조 시스템(100)의 제어부(120)는 온/습도 데이터들로부터 서버 랙(200)들에 유입되는 공기의 상태와 서버 랙(200)들로부터 유출되는 공기의 상태를 모두 파악할 수 있다.Since the temperature / humidity sensors 250 are installed in each server rack 200, and are installed in both the front and the rear of the server racks 200, the control unit 120 of the air conditioning system 100 uses the temperature / humidity data. The state of the air flowing into the server racks 200 and the state of the air flowing out of the server racks 200 may be determined.
뿐만 아니라, 온/습도 센서(250)들은 서버 랙(200)들의 상부, 중부 및 하부에 설치되어 있으므로, 제어부(120)는 온/습도 데이터들로부터 데이터 센터의 높이 별 공기의 상태까지도 파악할 수 있다.In addition, since the temperature / humidity sensors 250 are installed at the upper part, the middle part, and the lower part of the server racks 200, the controller 120 may grasp the state of the air for each height of the data center from the temperature / humidity data. .
이에, 제어부(120)는 S310단계로부터 수시된 온/습도 데이터들을 기초로, 데이터 센터 내부의 핫 존과 쿨 존을 파악하여 구획한다(S320).Accordingly, the controller 120 identifies and partitions a hot zone and a cool zone in the data center based on the temperature / humidity data received from step S310 (S320).
이후, 제어부(120)는 S320단계의 파악/구획 결과를 기반으로 공조부(130)를 제어한다(S330). S330단계에 의해 핫 존에는 상대적으로 많은 냉기가 공급되고, 쿨 존에는 상대적으로 적은 냉기가 공급된다.Thereafter, the controller 120 controls the air conditioning unit 130 based on the grasp / compartment result of step S320 (S330). By the step S330 relatively hot air is supplied to the hot zone, relatively cool air is supplied to the cool zone.
지금까지, 데이터 센터 공조 제어 시스템 및 방법에 대해 바람직한 실시예를 들어 상세히 설명하였다.So far, the data center air conditioning control system and method have been described in detail with reference to a preferred embodiment.
위 실시예에서 제시한 온도와 습도는 환경 데이터의 일종에 해당한다. 그 밖의 다른 환경 데이터를 수집하고, 그에 따라 공조를 제어하는 경우에도 본 발명의 기술적 사상이 적용될 수 있다.The temperature and humidity presented in the above example correspond to a kind of environmental data. The technical spirit of the present invention may also be applied to collecting other environmental data and controlling air conditioning accordingly.
아울러, 위 실시예에서 제시한 공조 제어 시스템과 방법은 데이터 센터가 아닌 다른 설비에도 적용될 수 있음은 물론이며, 그러한 경우에도 본 발명의 범주에 포함된다.In addition, the air conditioning control system and method presented in the above embodiment may be applied to other facilities other than the data center, and in such a case, it is included in the scope of the present invention.
나아가, 공조 방식에 대해서는 제한이 없다. 즉, 공조 시스템의 메커니즘이 어떠한 경우라 할지라도, 본 발명의 기술적 사상이 적용가능한 것이며, 이는 데이터 센터 이외의 다른 설비에 대해서도 마찬가지이다.Furthermore, there is no restriction on the air conditioning method. In other words, even if the mechanism of the air conditioning system is in any case, the technical idea of the present invention is applicable, and the same is true for other facilities other than the data center.
또한, 이상에서는 본 발명의 바람직한 실시예에 대하여 도시하고 설명하였지만, 본 발명은 상술한 특정의 실시예에 한정되지 아니하며, 청구범위에서 청구하는 본 발명의 요지를 벗어남이 없이 당해 발명이 속하는 기술분야에서 통상의 지식을 가진자에 의해 다양한 변형실시가 가능한 것은 물론이고, 이러한 변형실시들은 본 발명의 기술적 사상이나 전망으로부터 개별적으로 이해되어져서는 안될 것이다.In addition, although the preferred embodiment of the present invention has been shown and described above, the present invention is not limited to the specific embodiments described above, but the technical field to which the invention belongs without departing from the spirit of the invention claimed in the claims. Of course, various modifications can be made by those skilled in the art, and these modifications should not be individually understood from the technical spirit or the prospect of the present invention.

Claims (6)

  1. 데이터 센터의 서버 랙들에 설치되며, 상기 서버 랙들에서의 환경을 측정하는 센서들; 및Sensors installed in server racks of a data center, the sensors measuring an environment in the server racks; And
    상기 센서들에서 측정된 환경을 기초로, 상기 데이터 센터의 공조를 제어하는 공조 시스템;을 포함하는 것을 특징으로 하는 데이터 센터 공조 제어 시스템.And an air conditioning system for controlling the air conditioning of the data center based on the environment measured by the sensors.
  2. 청구항 1에 있어서,The method according to claim 1,
    상기 센서들은,The sensors,
    상기 서버 랙들의 앞면과 뒷면에 설치되는 것을 특징으로 하는 데이터 센터 공조 제어 시스템.Data center air conditioning control system, characterized in that installed in the front and rear of the server racks.
  3. 청구항 1에 있어서,The method according to claim 1,
    상기 센서들은,The sensors,
    상기 서버 랙들의 상부, 중부 및 하부에 설치되는 것을 특징으로 하는 데이터 센터 공조 제어 시스템.Data center air conditioning control system, characterized in that installed in the top, middle and bottom of the server racks.
  4. 청구항 1에 있어서,The method according to claim 1,
    상기 센서들은,The sensors,
    상기 서버랙들에서의 온도와 습도를 측정하는 것을 특징으로 하는 데이터 센터 공조 제어 시스템.Data center air conditioning control system for measuring the temperature and humidity in the server racks.
  5. 청구항 1에 있어서, The method according to claim 1,
    상기 센서들은,The sensors,
    상기 서버랙들에 탈부착이 가능한 타입인 것을 특징으로 하는 데이터 센터 공조 제어 시스템.Data center air conditioning control system, characterized in that the removable type of the server rack.
  6. 데이터 센터의 서버 랙들에 설치되며, 상기 서버 랙들에서의 환경을 측정하는 단계; 및Installed in server racks of a data center, the environment measuring in the server racks; And
    측정된 환경을 기초로, 상기 데이터 센터의 공조를 제어하는 단계;를 포함하는 것을 특징으로 하는 데이터 센터 공조 제어 방법.And controlling the air conditioning of the data center on the basis of the measured environment.
PCT/KR2016/006345 2016-06-15 2016-06-15 Air conditioning method for data center for maximization of efficiency inside data center WO2017217566A1 (en)

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