KR102455042B1 - Multi-air conditioning management system for indoors with electronic equipment installed - Google Patents

Multi-air conditioning management system for indoors with electronic equipment installed Download PDF

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KR102455042B1
KR102455042B1 KR1020220000779A KR20220000779A KR102455042B1 KR 102455042 B1 KR102455042 B1 KR 102455042B1 KR 1020220000779 A KR1020220000779 A KR 1020220000779A KR 20220000779 A KR20220000779 A KR 20220000779A KR 102455042 B1 KR102455042 B1 KR 102455042B1
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air conditioner
indoor
rack
temperature
direction air
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KR1020220000779A
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Korean (ko)
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류구환
김기하
박왕서
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류구환
김기하
박왕서
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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
    • H05K7/20709Modifications to facilitate cooling, ventilating, or heating for server racks or cabinets; for data centers, e.g. 19-inch computer racks
    • H05K7/20836Thermal management, e.g. server temperature control
    • 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
    • H05K7/20709Modifications to facilitate cooling, ventilating, or heating for server racks or cabinets; for data centers, e.g. 19-inch computer racks
    • H05K7/208Liquid cooling with phase change
    • H05K7/20827Liquid cooling with phase change within rooms for removing heat from cabinets, e.g. air conditioning devices
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D10/00Energy efficient computing, e.g. low power processors, power management or thermal management

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

Abstract

The present invention relates to an indoor multi-air conditioning management system with electronic devices, which has the room in which a plurality of electronic devices are installed and which is divided into indoor zones, has air conditioners matched to the respective indoor zones, calculates the blowing rate at which the air conditioners affect the indoor zones, and performs control so that the air conditioners have different blowing temperatures according to the temperatures of the indoor zones, thereby optimizing the efficiency of the air conditioners and saving electric energy. The indoor multi-air conditioning management system comprises: indoor zone-direction air conditioners (100) for blowing air toward a plurality of indoor zones; rack-direction air conditioners (200) for blowing air toward the racks of electronic devices in which heat is generated in the room; indoor zone temperature measurement sensors (300) for measuring the temperature of each indoor zone and providing the same to an air conditioning control device; rack temperature measurement sensor (400) for measuring the temperatures of the racks, which are heat generating parts of the electronic devices installed in the room, and providing the same to the air conditioner control device (500); and an air conditioning control device (500) for receiving temperature information measured from the rack temperature measurement sensors (400) and the indoor zone temperature measurement sensors (300) and setting and providing the blowing temperatures of the indoor zone-direction air conditioners (100) and the rack-direction air conditioners (200) according to temperatures. Preferably, the rack-direction air conditioners (200) are classified as the indoor zone-direction air conditioners (100) in duplicate when the blowing direction faces in the racks of the electronic devices after blowing air passes through the indoor zones, and the indoor zone-direction air conditioners (100) are classified as the rack-direction air conditioners (200) when the blowing direction faces in the racks of the electronic devices.

Description

전자장비가 설치된 실내의 멀티 에어컨 관리시스템{Multi-air conditioning management system for indoors with electronic equipment installed}Multi-air conditioning management system for indoors with electronic equipment installed

본 발명은 다수개의 전자장비가 설치되는 실내를 실내구역으로 분리하고 에어컨들을 실내구역별로 매칭시키며 에어컨들이 실내구역에 영향을 미치는 송풍비율을 산정하여 실내구역의 온도에 따라 에어컨을 서로 다른 송풍온도를 갖도록 조절하여 에어컨의 효율을 최적화시키며 전기에너지를 절감시킬 수 있는 전자장비가 설치된 실내의 멀티 에어컨 관리시스템에 관한 것이다.The present invention divides a room where a plurality of electronic equipment is installed into an indoor zone, matches the air conditioners for each indoor zone, calculates the blow rate that the air conditioners affect on the indoor zone, and sets different blowing temperatures for the air conditioners according to the temperature of the indoor zone. It relates to an indoor multi-air conditioning management system in which electronic equipment capable of optimizing the efficiency of the air conditioner and saving electric energy by controlling it to have an air conditioner is installed.

일반적으로, 각종 전자장비가 설치되는 실내 즉, 스위치보드 룸에는 MCC(전동기 제어반, Motor Control Center), MSB(Main Switch Board), 트랜스포머(Transformer)등과 같은 여러가지 전기 전자장비가 설치되어 운용되고 있다.In general, various electric and electronic equipment such as MCC (Motor Control Center), MSB (Main Switch Board), Transformer, etc. are installed and operated in a room where various electronic equipment is installed, that is, a switch board room.

그런데, 이러한 전자장비는 작동시 필연적으로 발열이 되기 때문에, 과도한 발열이 되지 않도록 적절히 냉각시켜주어야 장비에 이상이 발생하지 않는다.However, since such electronic equipment inevitably generates heat during operation, it must be properly cooled so that excessive heat is not generated so that the equipment does not malfunction.

그러나, 종래에는 냉각 시스템은 전자장비가 위치하는 실내에 다수개의 에어컨을 설치한 상태에서 일괄적으로 에어컨의 온도를 세팅한 상태에서 냉기를 제공하는 송풍이 주로 이루어지고 있다.However, in the related art, in a cooling system, in a state in which a plurality of air conditioners are installed in a room in which electronic equipment is located, and the temperature of the air conditioners is set at once, blowing is mainly performed to provide cool air.

그러나, 종래의 냉각 시스템은 에어컨에 인접한 경우에는 과도한 냉각이 이루어지지만 거리가 멀어질수록 냉각효율이 감소되어 실내 온도 전체를 일정하게 유지하기 어려운 문제가 있다. However, in the conventional cooling system, excessive cooling is performed when adjacent to the air conditioner, but as the distance increases, the cooling efficiency decreases, so that it is difficult to keep the entire room temperature constant.

본 발명이 해결하고자 하는 과제는 다수개의 전자장비가 설치되는 실내를 실내구역으로 분리하고 에어컨들을 실내구역별로 매칭시키며 에어컨들이 실내구역에 영향을 미치는 송풍비율을 산정하여 실내구역의 온도에 따라 에어컨을 서로 다른 송풍온도를 갖도록 조절하여 에어컨의 효율을 최적화시키며 전기에너지를 절감시킬 수 있는 전자장비가 설치된 실내의 멀티 에어컨 관리시스템을 제공하는 데 있다.The problem to be solved by the present invention is to divide a room where a plurality of electronic equipment is installed into an indoor zone, match the air conditioners to each indoor zone, calculate the blow rate that the air conditioners affect on the indoor zone, and operate the air conditioner according to the temperature of the indoor zone. An object of the present invention is to provide a multi-air conditioning management system for indoors in which electronic equipment capable of optimizing the efficiency of the air conditioner and saving electric energy by controlling it to have different blowing temperatures.

본 발명의 다른 해결과제는 실내에 위치하는 전자장비에서 열이 발생되는 랙의 온도를 개별적으로 확인하고 랙의 온도변화에 따라 송풍방향이 전자장비로 향하는 에이컨의 송풍온도를 조절할 수 있는 전자장비가 설치된 실내의 멀티 에어컨 관리시스템을 제공하는 데 있다.Another problem to be solved by the present invention is to individually check the temperature of a rack where heat is generated in electronic equipment located indoors, and according to the change in the temperature of the rack, an electronic equipment capable of adjusting the air blowing temperature of the air conditioner in which the blowing direction is directed to the electronic equipment is provided. It is to provide a multi-air conditioning management system for installed indoors.

본 발명에 따른 전자장비가 설치된 실내의 멀티 에어컨 관리시스템은, 일정한 영역으로 구분된 다수개의 실내구역을 향하여 송풍하는 실내구역방향 에어컨(100)와; 실내에서 열이 발생되는 전자장비의 랙을 향하여 송풍하는 랙방향 에어컨(200)와; 실내구역에 위치하면서 각각의 실내구역 온도를 측정하여 에이컨 콘트롤 장치로 제공하는 실내구역온도측정센서(300)와; 실내에 설치된 전자장비에서 열이 발생되는 부분인 랙의 온도를 측정하여 에어컨 콘트롤 장치(500)로 제공하는 랙온도측정센서(400)와; 랙온도측정센서(400), 실내구역온도측정센서(300)로부터 측정된 온도정보를 제공받고, 온도에 따른 실내구역방향 에어컨(100), 랙방향 에어컨(200)의 송풍온도를 설정하고 제공하는 에어컨 콘트롤 장치(500)와; 바람직하게, 랙방향 에어컨(200)은 송풍방향이 실내구역을 통과한 후에 전자장비의 랙을 향하는 경우에 실내구역방향 에어컨(100)으로도 중복 분류되고, 실내구역방향 에어컨(100)은 송풍방향이 장비의 랙을 향하는 경우에 랙방향 에어컨(200)으로도 중복 분류되는 것을 특징으로 한다.An indoor multi-air conditioner management system in which electronic equipment is installed according to the present invention includes: an indoor zone-direction air conditioner 100 that blows air toward a plurality of indoor zones divided into predetermined areas; a rack-direction air conditioner 200 that blows air toward a rack of electronic equipment that generates heat indoors; an indoor zone temperature sensor 300 positioned in the indoor zone to measure the temperature of each indoor zone and provide it to an air conditioner control device; A rack temperature measuring sensor 400 that measures the temperature of a rack, which is a part where heat is generated in electronic equipment installed indoors, and provides it to the air conditioner control device 500; It receives the temperature information measured from the rack temperature sensor 400 and the indoor area temperature sensor 300, and sets and provides the blowing temperature of the indoor area direction air conditioner 100 and the rack direction air conditioner 200 according to the temperature. Air conditioning control device 500 and; Preferably, the rack-direction air conditioner 200 is also classified as an indoor zone-direction air conditioner 100 when the blowing direction is directed toward the rack of electronic equipment after passing through the indoor zone, and the indoor zone-direction air conditioner 100 is used in the blowing direction. In the case of facing the rack of this equipment, it is characterized in that it is also classified as a rack direction air conditioner (200).

바람직하게, 에어컨 콘트롤 장치(500)는, 실내구역온도측정센서(300)와 통신하면서 측정된 실내구역온도를 수신하는 제1통신부(501)와; 랙온도측정센서(400)와 통신하면서 측정된 랙온도를 수신하는 제2통신부(502)와; 실내에 설치된 다수개의 에어컨과 통신하면서 각종 에어컨의 작동정보를 실시간으로 전송하는 제3통신부(503)와; 전자장비가 위치하는 실내를 다수개의 구역으로 구분하여 관리하는 실내구역 구분관리부(504)와; 구분된 실내구역을 기준으로 구분된 실내구역으로 송풍하는 실내구역방향 에어컨(100)을 실내구역에 매칭시키는 실내구역방향 에어컨 매칭부(505)와; 전자장비의 랙방향으로 송풍하는 랙방향 에어컨(200)을 전자장비에 매칭시키는 랙방향 에어컨 매칭부(506)와; 실내방향 에어컨을 매칭된 실내구역에 미치는 송풍비율을 실내구역방향 에어컨(100)과 실내구역 사이의 거리, 실내구역으로 향하는 실내구역방향 에어컨(100)의 송풍방향을 기준으로 분류하는 실내구역방향 에어컨 송풍비율 등록부(507)와; 실내구역방향 에어컨(100)의 송풍비율을 기준으로 실내구역의 온도별로 실내구역방향 에어컨(100)별로 기준 송풍온도를 설정하는 실내구역방향 에어컨 송풍온도 설정부(508)와; 랙방향 에어컨 매칭부(506)에 매칭된 랙방향 에어컨(200)이 전자장비의 랙에 미치는 송풍비율을 랙방향 에어컨(200)의 거리를 기준으로 분류하는 랙방향 에어컨 송풍비율 등록부(509)와; 랙방향 에어컨 송풍비율 등록부(509)에 등록된 송풍비율을 기준으로 랙온도별로 랙방향 에어컨(200)의 기준 송풍온도를 설정하는 랙방향 에어컨 송풍온도 설정부(510)와; 실내구역온도측정세서에서 측정된 실내구역온도를 제공받아 실시간으로 확인하는 실내구역온도 확인부(511)와; 랙온도측정센서(400)에서 측정된 랙온도를 제공받아 실시간으로 확인하는 랙온도 확인부(512)와; 실시간으로 확인된 실내구역의 실내구역온도에 대응되는 실내구역방향 에어컨(100)의 기준 송풍온도를 확인하고 실내구역방향 에어컨(100)별로 작동신호를 제공하는 실내구역방향 에어컨 작동부(513)와; 실시간으로 확인된 전자장비의 랙온도에 대응되는 랙방향 에어컨(200)의 기준 송풍온도를 확인하고 랙방향 에어컨(200)로 작동신호를 제공하는 랙방향 에어컨 작동부(514);를 포함하는 것을 특징으로 한다. Preferably, the air conditioner control device 500 includes: a first communication unit 501 for receiving the measured indoor area temperature while communicating with the indoor area temperature measuring sensor 300; a second communication unit 502 for receiving the measured rack temperature while communicating with the rack temperature measuring sensor 400; a third communication unit 503 that communicates with a plurality of air conditioners installed indoors and transmits operation information of various air conditioners in real time; an indoor zone division management unit 504 that divides and manages the interior in which the electronic equipment is located into a plurality of zones; an indoor zone direction air conditioner matching unit 505 for matching the indoor zone direction air conditioner 100 that blows air into the divided indoor zone based on the divided indoor zone to the indoor zone; a rack direction air conditioner matching unit 506 for matching the rack direction air conditioner 200 that blows air in the rack direction of the electronic equipment to the electronic equipment; Indoor zone direction air conditioner that classifies the blow rate that the indoor air conditioner has on the matched indoor zone based on the distance between the indoor zone direction air conditioner 100 and the indoor zone, and the blowing direction of the indoor zone direction air conditioner 100 toward the indoor zone a blow rate registration unit 507; an indoor zone direction air conditioner blowing temperature setting unit 508 for setting a reference blowing temperature for each indoor zone direction air conditioner 100 for each indoor zone temperature based on the blowing ratio of the indoor zone direction air conditioner 100; Rack direction air conditioner blowing ratio registration unit 509 that classifies the blow rate that the rack direction air conditioner 200 matched to the rack direction air conditioner matching unit 506 has on the rack of electronic equipment based on the distance of the rack direction air conditioner 200 and ; a rack direction air conditioner blowing temperature setting unit 510 for setting a standard blowing temperature of the rack direction air conditioner 200 for each rack temperature based on the blowing rate registered in the rack direction air conditioner blowing ratio registration unit 509; an indoor area temperature check unit 511 for receiving the indoor area temperature measured by the indoor area temperature measuring sensor and confirming in real time; a rack temperature check unit 512 for receiving the rack temperature measured by the rack temperature measuring sensor 400 and confirming in real time; An indoor zone direction air conditioner operation unit 513 that checks the reference blowing temperature of the indoor zone direction air conditioner 100 corresponding to the indoor zone temperature of the indoor zone checked in real time and provides an operation signal for each indoor zone direction air conditioner 100; ; A rack direction air conditioner operation unit 514 that checks the reference blowing temperature of the rack direction air conditioner 200 corresponding to the rack temperature of the electronic equipment checked in real time and provides an operation signal to the rack direction air conditioner 200; characterized.

본 발명에 의하면 다수개의 전자장비가 설치되는 실내를 실내구역으로 분리하고 에어컨들을 실내구역별로 매칭시키며 에어컨들이 실내구역에 영향을 미치는 송풍비율을 산정하여 실내구역의 온도에 따라 에어컨을 서로 다른 송풍온도를 갖도록 조절하기 때문에 에어컨의 효율을 최적화시키며 전기에너지를 절감시킬 수 있는 장점이 있다.According to the present invention, a room in which a plurality of electronic equipment is installed is divided into an indoor zone, the air conditioners are matched for each indoor zone, and the blow rate that the air conditioners affect on the indoor zone is calculated. It has the advantage of optimizing the efficiency of the air conditioner and saving electric energy.

또한, 에어컨을 송풍방향이 전자장비의 랙으로 향하는 랙방향 에어컨과 실내구역방향 에어컨으로 구분하여 대응하기 때문에 실내의 온도가 변화되는 경우 효율적으로 온도를 정상화시킬 수 있는 장점이 있다.In addition, since the air conditioner is divided into a rack-direction air conditioner and an indoor zone-direction air conditioner in which the blowing direction is directed toward the rack of electronic equipment, it has the advantage of efficiently normalizing the temperature when the indoor temperature changes.

도 1은 본 발명에 따른 전자장비가 설치된 실내의 멀티 에어컨 관리시스템의 개략도.
도 2는 본 발명에 따른 에어컨 콘트롤 장치(500)의 블록도.
1 is a schematic diagram of a multi-air conditioning management system in an indoor area in which electronic equipment according to the present invention is installed.
2 is a block diagram of an air conditioner control device 500 according to the present invention.

이하, 첨부된 도면을 참조하여 본 발명의 실시예를 설명한다.Hereinafter, embodiments of the present invention will be described with reference to the accompanying drawings.

본 발명에 따른 전자장비가 설치된 실내의 멀티 에어컨 관리시스템은 실내구역방향 에어컨(100), 랙방향 에어컨(200), 실내구역온도측정센서(300), 랙온도측정센서(400), 에어컨 콘트롤 장치(500)를 포함한다.The indoor multi-air conditioner management system in which the electronic equipment is installed according to the present invention is an indoor zone direction air conditioner 100, a rack direction air conditioner 200, an indoor area temperature measurement sensor 300, a rack temperature measurement sensor 400, and an air conditioner control device. (500).

실내구역방향 에어컨(100)은 일정한 영역으로 구분된 다수개의 실내구역을 향하여 송풍한다. 이때, 실내구역방향 에어컨(100)은 송풍방향이 장비의 랙을 향하는 경우에 랙방향 에어컨(200)으로도 중복 분류될 수 있다.The indoor zone direction air conditioner 100 blows air toward a plurality of indoor zones divided into predetermined areas. At this time, the indoor zone direction air conditioner 100 may be classified as a rack direction air conditioner 200 when the blowing direction is toward the rack of equipment.

랙방향 에어컨(200)은 실내에서 열이 발생되는 전자장비의 랙을 향하여 송풍한다. 이때, 랙방향 에어컨(200)은 송풍방향이 실내구역을 통과한 후에 전자장비의 랙을 향하는 경우에 실내구역방향 에어컨(100)으로도 중복 분류될 수 있다.The rack-direction air conditioner 200 blows air toward the rack of electronic equipment that generates heat in the room. In this case, the rack-direction air conditioner 200 may be classified as an indoor zone-direction air conditioner 100 in a case in which the blowing direction is directed toward the rack of the electronic equipment after passing through the indoor zone.

실내구역온도측정센서(300)는 일정한 영역으로 구분된 다수개의 실내구역에 위치하면서 각각의 실내구역 온도를 측정하여 에이컨 콘트롤 장치로 제공한다. 이러한 실내구역온도측정센서(300)는 실내구역마다 설치되어 온도를 확인하게 된다.The indoor zone temperature measuring sensor 300 is located in a plurality of indoor zones divided into predetermined areas and measures the temperature of each indoor zone and provides it to the air conditioner control device. The indoor zone temperature measuring sensor 300 is installed in each indoor zone to check the temperature.

랙온도측정센서(400)는 실내에 설치된 전자장비에서 열이 발생되는 부분인 랙의 온도를 측정하여 에어컨 콘트롤 장치(500)로 제공한다. 이러한 랙온도측정장치에 의해서 전자장비마다 서로 다른 열이 발생되더라도 정확하게 온도를 확인할 수 있게 된다.The rack temperature measurement sensor 400 measures the temperature of the rack, which is a portion where heat is generated in electronic equipment installed indoors, and provides it to the air conditioner control device 500 . Even if different heat is generated for each electronic equipment by such a rack temperature measuring device, it is possible to accurately check the temperature.

에어컨 콘트롤 장치(500)는 랙온도측정센서(400), 실내구역온도측정센서(300)로부터 측정된 온도정보를 제공받고, 랙방향 에어컨(200), 실내구역방향 에어컨(100)을 개별적으로 작동시킨다. 이러한 에어컨 콘트롤 장치(500)는 제1통신부(501), 제2통신부(502), 제3통신부(503), 실내구역 구분관리부(504), 실내구역방향 에어컨 매칭부(505), 랙방향 에어컨 매칭부(506), 실내구역방향 에어컨 송풍비율 등록부(507), 실내구역방향 에어컨 송풍온도 설정부(508), 랙방향 에어컨 송풍비율 등록부(509), 랙방향 에어컨 송풍온도 설정부(510), 실내구역온도 확인부(511), 랙온도 확인부(512), 실내구역방향 에어컨 작동부(513), 랙방향 에어컨 작동부(514)를 포함한다.The air conditioner control device 500 receives the temperature information measured from the rack temperature sensor 400 and the indoor area temperature sensor 300, and operates the rack direction air conditioner 200 and the indoor area direction air conditioner 100 individually. make it The air conditioner control device 500 includes a first communication unit 501, a second communication unit 502, a third communication unit 503, an indoor zone division management unit 504, an indoor zone direction air conditioner matching unit 505, and a rack direction air conditioner. Matching unit 506, indoor zone direction air conditioner blowing ratio registration unit 507, indoor zone direction air conditioner blowing temperature setting unit 508, rack direction air conditioner blowing ratio registration unit 509, rack direction air conditioner blowing temperature setting unit 510, It includes an indoor area temperature check unit 511 , a rack temperature check unit 512 , an indoor area direction air conditioner operation unit 513 , and a rack direction air conditioner operation unit 514 .

제1통신부(501)는 실내구역온도측정센서(300)와 통신하면서 측정된 실내구역온도를 수신한다. 이때, 제1통신부(501)는 무선통신인 것이 바람직하다.The first communication unit 501 receives the measured indoor area temperature while communicating with the indoor area temperature measuring sensor 300 . At this time, it is preferable that the first communication unit 501 is wireless communication.

제2통신부(502)는 랙온도측정센서(400)와 통신하면서 측정된 랙온도를 수신한다. 이때, 제2통신부(502)는 무선통신인 것이 바람직하다.The second communication unit 502 receives the rack temperature measured while communicating with the rack temperature measuring sensor 400 . At this time, it is preferable that the second communication unit 502 is wireless communication.

제3통신부(503)는 실내에 설치된 다수개의 에어컨과 통신하면서 각종 에어컨의 작동정보를 실시간으로 전송한다. 이때, 제3통신부(503)는 무선통신 또는 유선통신을 사용할 수 있다.The third communication unit 503 transmits operation information of various air conditioners in real time while communicating with a plurality of air conditioners installed indoors. In this case, the third communication unit 503 may use wireless communication or wired communication.

실내구역 구분관리부(504)는 전자장비가 위치하는 실내를 다수개의 구역으로 구분하여 관리한다. The indoor zone division management unit 504 divides and manages the interior in which the electronic equipment is located into a plurality of zones.

실내구역방향 에어컨 매칭부(505)는 구분된 실내구역을 기준으로 실내구역으로 송풍하는 실내구역방향 에어컨(100)을 실내구역에 매칭시킨다. 이때, 실내구역방향 에어컨(100)의 송풍방향이 여러 실내방향에 겹치는 경우에 중복으로 분류하는 것이 바람직하다. The indoor zone direction air conditioner matching unit 505 matches the indoor zone direction air conditioner 100 that blows air to the indoor zone based on the divided indoor zone to the indoor zone. At this time, when the blowing direction of the indoor zone direction air conditioner 100 overlaps several indoor directions, it is preferable to classify the overlapping.

랙방향 에어컨 매칭부(506)는 전자장비의 랙방향으로 송풍하는 랙방향 에어컨(200)을 전자장비에 매칭시킨다. 이때, 다수개의 장비가 존재하는 경우에 하나의 랙방향 에어컨(200)을 복수의 장비에 중복으로 분류하게 된다.The rack direction air conditioner matching unit 506 matches the rack direction air conditioner 200 that blows air in the rack direction of the electronic equipment to the electronic equipment. At this time, when a plurality of equipment is present, one rack-direction air conditioner 200 is classified as duplicate in a plurality of equipment.

실내구역방향 에어컨 송풍비율 등록부(507)는 실내방향 에어컨을 매칭된 실내구역에 미치는 송풍비율을 실내구역방향 에어컨(100)과 실내구역 사이의 거리, 실내구역으로 향하는 실내구역방향 에어컨(100)의 송풍방향을 기준으로 분류한다. 이때, 실내구역의 거리는 실내구역의 중심을 기준으로 하며 실내구역방향 에어컨(100)이 복수의 실내구역으로 송풍하는 경우에 각각의 실내구역에 미치는 영향을 구분하여 등록한다.The indoor zone direction air conditioner blowing ratio registration unit 507 determines the blowing ratio of the indoor air conditioner to the matched indoor zone, the distance between the indoor zone direction air conditioner 100 and the indoor zone, and the indoor zone direction air conditioner 100 toward the indoor zone. It is classified based on the blowing direction. At this time, the distance of the indoor zone is based on the center of the indoor zone, and when the indoor zone direction air conditioner 100 blows air to a plurality of indoor zones, the effect on each indoor zone is classified and registered.

실내구역방향 에어컨 송풍온도 설정부(508)는 실내구역방향 에어컨(100)의 송풍비율을 기준으로 실내구역의 온도별로 실내구역방향 에어컨(100)별로 기준 송풍온도를 설정한다.The indoor zone direction air conditioner blowing temperature setting unit 508 sets the reference blowing temperature for each indoor zone direction air conditioner 100 for each indoor zone temperature based on the blowing ratio of the indoor zone direction air conditioner 100 .

랙방향 에어컨 송풍비율 등록부(509)는 랙방향 에어컨 매칭부(506)에 매칭된 랙방향 에어컨(200)이 전자장비의 랙에 미치는 송풍비율을 랙방향 에어컨(200)의 거리를 기준으로 분류한다.The rack direction air conditioner blowing ratio registration unit 509 classifies the blow rate that the rack direction air conditioner 200 matched to the rack direction air conditioner matching unit 506 has on the rack of electronic equipment based on the distance of the rack direction air conditioner 200. .

랙방향 에어컨 송풍온도 설정부(510)는 랙방향 에어컨 송풍비율 등록부(509)에 등록된 송풍비율을 기준으로 랙온도별로 랙방향 에어컨(200)의 기준 송풍온도를 설정한다. 이때, 랙방향 에어컨(200)이 다수개의 전자장비로 송풍하는 경우에 랙의 온도는 전자장비들의 랙온도는 평균한 것을 사용할 수 있다.The rack direction air conditioner blowing temperature setting unit 510 sets the reference blowing temperature of the rack direction air conditioner 200 for each rack temperature based on the blowing rate registered in the rack direction air conditioner blowing ratio registration unit 509 . In this case, when the rack-direction air conditioner 200 blows air to a plurality of electronic devices, the rack temperature may be an average of the rack temperatures of the electronic devices.

실내구역온도 확인부(511)는 실내구역온도측정세서에서 측정된 실내구역온도를 제공받아 실시간으로 확인한다. The indoor zone temperature check unit 511 receives the indoor zone temperature measured by the indoor zone temperature sensor and checks it in real time.

랙온도 확인부(512)는 랙온도측정센서(400)에서 측정된 랙온도를 제공받아 실시간으로 확인한다. The rack temperature check unit 512 receives the rack temperature measured by the rack temperature sensor 400 and checks it in real time.

실내구역방향 에어컨 작동부(513)는 실시간으로 확인된 실내구역의 실내구역온도에 대응되는 실내구역방향 에어컨(100)의 기준 송풍온도를 확인하고 실내구역방향 에어컨(100)별로 작동신호를 제공한다. 이에 따라 실내구역방향 에어컨(100)은 실내구역에 미치는 송풍비율에 따라 서로 다른 송풍온도로 작동하게 된다.The indoor zone direction air conditioner operation unit 513 checks the reference blowing temperature of the indoor zone direction air conditioner 100 corresponding to the indoor zone temperature of the indoor zone checked in real time, and provides an operation signal for each indoor zone direction air conditioner 100 . Accordingly, the air conditioner 100 in the indoor zone direction operates at different blowing temperatures according to the blowing ratio applied to the indoor zone.

랙방향 에어컨 작동부(514)는 실시간으로 확인된 전자장비의 랙온도에 대응되는 랙방향 에어컨(200)의 기준 송풍온도를 확인하고 랙방향 에어컨(200)로 작동신호를 제공한다. 이에 따라 랙방향 에어컨(200)은 장비에 미치는 송풍비율에 따라 서로 다른 송풍온도로 작동하게 된다.The rack direction air conditioner operation unit 514 checks the reference blowing temperature of the rack direction air conditioner 200 corresponding to the rack temperature of the electronic equipment checked in real time, and provides an operation signal to the rack direction air conditioner 200 . Accordingly, the rack-direction air conditioner 200 operates at different blowing temperatures according to the blowing ratio on the equipment.

본 발명이 속하는 기술분야의 당업자는 본 발명이 그 기술적 사상이나 필수적 특징을 변경하지 않고서 다른 구체적인 형태로 실시될 수 있다는 것을 이해할 수 있을 것이다. 그러므로 이상에서 기술한 실시예는 모든 면에서 예시적인 것이며 한정적인 것이 아닌 것으로서 이해되어야 하고, 본 발명의 범위는 상세한 설명보다는 후술하는 청구범위에 의하여 나타내어지며, 청구범위의 의의 및 범위 그리고 그 등가개념으로부터 도출되는 모든 변경 또는 변형된 형태가 본 발명의 범위에 포함되는 것으로 해석되어야 한다. Those skilled in the art to which the present invention pertains will understand that the present invention may be embodied in other specific forms without changing the technical spirit or essential characteristics thereof. Therefore, the embodiments described above are to be understood as illustrative and not restrictive in all respects, and the scope of the present invention is indicated by the following claims rather than the detailed description, and the meaning and scope of the claims and their equivalents It should be construed as being included in the scope of the present invention all changes or modifications derived from it.

100 : 실내구역방향 에어컨 200 : 랙방향 에어컨
300 : 실내구역온도측정센서 400 : 랙온도측정센서
500 : 에어컨 콘트롤 장치 501 : 제1통신부
502 : 제2통신부 503 : 제3통신부
504 : 실내구역 구분관리부
505 : 실내구역방향 에어컨 매칭부
506 : 랙방향 에어컨 매칭부
507 : 실내구역방향 에어컨 송풍비율 등록부
508 : 실내구역방향 에어컨 송풍온도 설정부
509 : 랙방향 에어컨 송풍비율 등록부
510 : 랙방향 에어컨 송풍온도 설정부
511 : 실내구역온도 확인부 512 : 랙온도 확인부
513 : 실내구역방향 에어컨 작동부 514 : 랙방향 에어컨 작동부
100: indoor zone direction air conditioner 200: rack direction air conditioner
300: indoor area temperature measuring sensor 400: rack temperature measuring sensor
500: air conditioner control device 501: first communication unit
502: second communication unit 503: third communication unit
504: Indoor Zone Classification Management Department
505: indoor zone direction air conditioner matching unit
506: rack direction air conditioner matching unit
507: Register of air conditioner blow rate in the direction of indoor area
508: indoor zone direction air conditioner blowing temperature setting unit
509: Rack direction air conditioner blow rate register
510: rack direction air conditioner blowing temperature setting unit
511: indoor area temperature confirmation unit 512: rack temperature confirmation unit
513: indoor zone direction air conditioner operation unit 514: rack direction air conditioner operation unit

Claims (7)

일정한 영역으로 구분된 다수개의 실내구역을 향하여 송풍하는 실내구역방향 에어컨(100)와;
실내에서 열이 발생되는 전자장비의 랙을 향하여 송풍하는 랙방향 에어컨(200)와;
실내구역에 위치하면서 각각의 실내구역 온도를 측정하여 에이컨 콘트롤 장치로 제공하는 실내구역온도측정센서(300)와;
실내에 설치된 전자장비에서 열이 발생되는 부분인 랙의 온도를 측정하여 에어컨 콘트롤 장치(500)로 제공하는 랙온도측정센서(400)와;
랙온도측정센서(400), 실내구역온도측정센서(300)로부터 측정된 온도정보를 제공받고, 온도에 따른 실내구역방향 에어컨(100), 랙방향 에어컨(200)의 송풍온도를 설정하고 제공하는 에어컨 콘트롤 장치(500);를 포함하되,
에어컨 콘트롤 장치(500)는
실내구역온도측정센서(300)와 통신하면서 측정된 실내구역온도를 수신하는 제1통신부(501)와;
랙온도측정센서(400)와 통신하면서 측정된 랙온도를 수신하는 제2통신부(502)와;
실내에 설치된 다수개의 에어컨과 통신하면서 각종 에어컨의 작동정보를 실시간으로 전송하는 제3통신부(503)와;
전자장비가 위치하는 실내를 다수개의 구역으로 구분하여 관리하는 실내구역 구분관리부(504)와;
구분된 실내구역을 기준으로 구분된 실내구역으로 송풍하는 실내구역방향 에어컨(100)을 실내구역에 매칭시키는 실내구역방향 에어컨 매칭부(505)와;
전자장비의 랙방향으로 송풍하는 랙방향 에어컨(200)을 전자장비에 매칭시키는 랙방향 에어컨 매칭부(506)와;
실내방향 에어컨을 매칭된 실내구역에 미치는 송풍비율을 실내구역방향 에어컨(100)과 실내구역 사이의 거리, 실내구역으로 향하는 실내구역방향 에어컨(100)의 송풍방향을 기준으로 분류하는 실내구역방향 에어컨 송풍비율 등록부(507)와;
실내구역방향 에어컨(100)의 송풍비율을 기준으로 실내구역의 온도별로 실내구역방향 에어컨(100)별로 기준 송풍온도를 설정하는 실내구역방향 에어컨 송풍온도 설정부(508)와;
랙방향 에어컨 매칭부(506)에 매칭된 랙방향 에어컨(200)이 전자장비의 랙에 미치는 송풍비율을 랙방향 에어컨(200)의 거리를 기준으로 분류하는 랙방향 에어컨 송풍비율 등록부(509)와;
랙방향 에어컨 송풍비율 등록부(509)에 등록된 송풍비율을 기준으로 랙온도별로 랙방향 에어컨(200)의 기준 송풍온도를 설정하는 랙방향 에어컨 송풍온도 설정부(510)와;
실내구역온도측정세서에서 측정된 실내구역온도를 제공받아 실시간으로 확인하는 실내구역온도 확인부(511)와;
랙온도측정센서(400)에서 측정된 랙온도를 제공받아 실시간으로 확인하는 랙온도 확인부(512)와;
실시간으로 확인된 실내구역의 실내구역온도에 대응되는 실내구역방향 에어컨(100)의 기준 송풍온도를 확인하고 실내구역방향 에어컨(100)별로 작동신호를 제공하는 실내구역방향 에어컨 작동부(513)와;
실시간으로 확인된 전자장비의 랙온도에 대응되는 랙방향 에어컨(200)의 기준 송풍온도를 확인하고 랙방향 에어컨(200)로 작동신호를 제공하는 랙방향 에어컨 작동부(514);를 포함하는 것을 특징으로 하는 전자장비가 설치된 실내의 멀티 에어컨 관리시스템.
an indoor zone-direction air conditioner 100 that blows air toward a plurality of indoor zones divided into predetermined areas;
a rack-direction air conditioner 200 that blows air toward a rack of electronic equipment that generates heat indoors;
an indoor zone temperature sensor 300 positioned in the indoor zone to measure the temperature of each indoor zone and provide it to an air conditioner control device;
A rack temperature measuring sensor 400 that measures the temperature of a rack, which is a part where heat is generated in electronic equipment installed indoors, and provides it to the air conditioner control device 500;
It receives the temperature information measured from the rack temperature sensor 400 and the indoor area temperature sensor 300, and sets and provides the blowing temperature of the indoor area direction air conditioner 100 and the rack direction air conditioner 200 according to the temperature. Air conditioning control device 500; including,
The air conditioner control device 500 is
a first communication unit 501 for receiving the measured indoor area temperature while communicating with the indoor area temperature measuring sensor 300;
a second communication unit 502 for receiving the measured rack temperature while communicating with the rack temperature measuring sensor 400;
a third communication unit 503 that communicates with a plurality of air conditioners installed indoors and transmits operation information of various air conditioners in real time;
an indoor zone division management unit 504 that divides and manages the room in which the electronic equipment is located into a plurality of zones;
an indoor zone direction air conditioner matching unit 505 for matching the indoor zone direction air conditioner 100 that blows air into the divided indoor zone based on the divided indoor zone to the indoor zone;
a rack direction air conditioner matching unit 506 for matching the rack direction air conditioner 200 that blows air in the rack direction of the electronic equipment to the electronic equipment;
Indoor zone direction air conditioner that classifies the blow rate that the indoor air conditioner has on the matched indoor zone based on the distance between the indoor zone direction air conditioner 100 and the indoor zone, and the blowing direction of the indoor zone direction air conditioner 100 toward the indoor zone a blow rate registration unit 507;
an indoor zone direction air conditioner blowing temperature setting unit 508 for setting a reference blowing temperature for each indoor zone direction air conditioner 100 for each indoor zone temperature based on the blowing ratio of the indoor zone direction air conditioner 100;
Rack direction air conditioner blowing ratio registration unit 509 that classifies the blow rate that the rack direction air conditioner 200 matched to the rack direction air conditioner matching unit 506 has on the rack of electronic equipment based on the distance of the rack direction air conditioner 200 and ;
a rack direction air conditioner blowing temperature setting unit 510 for setting a standard blowing temperature of the rack direction air conditioner 200 for each rack temperature based on the blowing rate registered in the rack direction air conditioner blowing ratio registration unit 509;
an indoor area temperature check unit 511 for receiving the indoor area temperature measured by the indoor area temperature measuring sensor and confirming in real time;
a rack temperature check unit 512 for receiving the rack temperature measured by the rack temperature measuring sensor 400 and confirming in real time;
An indoor zone direction air conditioner operation unit 513 that checks the reference blowing temperature of the indoor zone direction air conditioner 100 corresponding to the indoor zone temperature of the indoor zone checked in real time and provides an operation signal for each indoor zone direction air conditioner 100; ;
A rack direction air conditioner operation unit 514 that checks the reference blowing temperature of the rack direction air conditioner 200 corresponding to the rack temperature of the electronic equipment checked in real time and provides an operation signal to the rack direction air conditioner 200; An indoor multi-air conditioning management system with electronic equipment installed.
청구항 1에 있어서, 랙방향 에어컨(200)은 송풍방향이 실내구역을 통과한 후에 전자장비의 랙을 향하는 경우에 실내구역방향 에어컨(100)으로도 중복 분류되고, 실내구역방향 에어컨(100)은 송풍방향이 장비의 랙을 향하는 경우에 랙방향 에어컨(200)으로도 중복 분류되는 것을 특징으로 하는 전자장비가 설치된 실내의 멀티 에어컨 관리시스템. The method according to claim 1, The rack-direction air conditioner (200) is classified as an indoor zone-direction air conditioner (100) when the blowing direction is directed toward the rack of electronic equipment after passing through the indoor zone, and the indoor zone-direction air conditioner (100) is A multi-air conditioner management system for indoors in which electronic equipment is installed, characterized in that it is classified as a rack-direction air conditioner 200 when the blowing direction is directed to the rack of the equipment. 삭제delete 청구항 1에 있어서, 실내구역방향 에어컨 매칭부(505)는 실내구역방향 에어컨(100)의 송풍방향이 여러 실내구역에 겹치는 경우에 중복으로 분류하는 것을 특징으로 하는 전자장비가 설치된 실내의 멀티 에어컨 관리시스템. The method according to claim 1, The indoor zone direction air conditioner matching unit (505) multi-air conditioner management in a room installed with electronic equipment, characterized in that when the blowing direction of the indoor zone direction air conditioner (100) overlaps several indoor zones, it is classified as overlapping. system. 청구항 1에 있어서, 실내구역방향 에어컨 송풍비율 등록부(507)는 실내구역방향 에어컨(100)의 송풍비율은 실내구역의 거리는 실내구역의 중심을 기준으로 하며 실내구역방향 에어컨(100)이 복수의 실내구역으로 송풍하는 경우에 각각의 실내구역에 미치는 영향을 구분하여 등록하는 것을 특징으로 하는 전자장비가 설치된 실내의 멀티 에어컨 관리시스템. The method according to claim 1, The indoor zone direction air conditioner blowing ratio registration unit (507), the ventilation ratio of the indoor zone direction air conditioner 100 is the distance of the indoor zone based on the center of the indoor zone, and the indoor zone direction air conditioner 100 is a plurality of indoor An indoor multi-air conditioning management system in which electronic equipment is installed, characterized in that when air is blown to a zone, the effect on each indoor zone is classified and registered. 청구항 1에 있어서, 랙방향 에어컨 송풍온도 설정부(510)는 랙방향 에어컨(200)이 다수개의 전자장비로 송풍하는 경우에 랙의 온도는 전자장비들의 랙온도는 평균한 것을 사용하는 것을 특징으로 하는 전자장비가 설치된 실내의 멀티 에어컨 관리시스템. The method according to claim 1, The rack-direction air conditioner blowing temperature setting unit 510, when the rack-direction air conditioner 200 blows to a plurality of electronic equipment, the temperature of the rack uses the average of the rack temperatures of the electronic equipment. Multi-air conditioning management system for indoors with electronic equipment installed. 청구항 1에 있어서, 제1통신부(501)와 제2통신부(502)는 무선통신이고, 제3통신부(503)는 무선통신 또는 유선통신인 것을 특징으로 하는 전자장비가 설치된 실내의 멀티 에어컨 관리시스템.The system according to claim 1, wherein the first communication unit (501) and the second communication unit (502) are wireless communication, and the third communication unit (503) is wireless communication or wired communication. .
KR1020220000779A 2022-01-04 2022-01-04 Multi-air conditioning management system for indoors with electronic equipment installed KR102455042B1 (en)

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20080020277A (en) * 2006-08-31 2008-03-05 유구환 Rack having cooling and heating
KR20150135126A (en) * 2014-05-22 2015-12-02 하성우 Air conditioning system for server room
KR101877954B1 (en) * 2017-12-26 2018-07-12 주식회사 어니언소프트웨어 Air conditioning system for server room
JP2021179294A (en) * 2020-05-15 2021-11-18 三機工業株式会社 Air conditioning control method and system for the same

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20080020277A (en) * 2006-08-31 2008-03-05 유구환 Rack having cooling and heating
KR20150135126A (en) * 2014-05-22 2015-12-02 하성우 Air conditioning system for server room
KR101877954B1 (en) * 2017-12-26 2018-07-12 주식회사 어니언소프트웨어 Air conditioning system for server room
JP2021179294A (en) * 2020-05-15 2021-11-18 三機工業株式会社 Air conditioning control method and system for the same

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