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KR930000900A - Optimal Control Method of Air Conditioner - Google Patents

Optimal Control Method of Air Conditioner
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Publication number
KR930000900A
KR930000900AKR1019910010088AKR910010088AKR930000900AKR 930000900 AKR930000900 AKR 930000900AKR 1019910010088 AKR1019910010088 AKR 1019910010088AKR 910010088 AKR910010088 AKR 910010088AKR 930000900 AKR930000900 AKR 930000900A
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KR
South Korea
Prior art keywords
temperature
indoor
compressor
determining
relative humidity
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
KR1019910010088A
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Korean (ko)
Inventor
정인수
Original Assignee
강진구
삼성전자 주식회사
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 강진구, 삼성전자 주식회사filedCritical강진구
Priority to KR1019910010088ApriorityCriticalpatent/KR930000900A/en
Priority to JP4158165Aprioritypatent/JPH05180487A/en
Publication of KR930000900ApublicationCriticalpatent/KR930000900A/en
Ceasedlegal-statusCriticalCurrent

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Abstract

Translated fromKorean

내용 없음No content

Description

Translated fromKorean
공기조화기의 최적제어방법Optimal Control Method of Air Conditioner

본 내용은 요부공개 건이므로 전문내용을 수록하지 않았음Since this is an open matter, no full text was included.

제1도는 본 발명의 참고도표인 휀저스콤포트챠트,1 is a reference comfort chart of the present invention,

제2도는 본 발명에 적용되는 공기조화기의 최적제어장치의 블럭도,2 is a block diagram of an optimum control apparatus for an air conditioner applied to the present invention;

제3도는 본 발명에 적용되는 공기조화기의 최적제어방법의 플로우챠트.3 is a flowchart of an optimal control method of an air conditioner applied to the present invention.

Claims (1)

Translated fromKorean
실내설정온도 및 실외온도에 대하여 컴퓨레샤와 팬모타회전수를 제어하여 실내온도가 쾌적제어하도록된 공기조화기의 최적제어방법에 있어서, 상기 실외온도에 대한 실내설정온도와 실내설정상대습도의 설정값을 결정하는 제1추론단계(11)와 상기 제1추론단계(11)에서의 설정값과 감지된 현재실내조건값을 계산하여 실내온도와 상대습도에 관한 중요도를 결정하는 제2추론단계(12)와 상기제2추론단계(12)에서 중요도가 결정된 상태에서 실내온도 및 상대습도의 오차 및 오차발생율에 따라 팬모타회전수를 결정하는 제3추론단계(13)와 상기 제3추론단계(13)에서 팬모타회전수가 결정된 상태에서 배관온도가 소정온도 이하일때 컴퓨레샤오프시키고, 이상일때 온시키도록 판단하는 단계(14)와, 상기 컴퓨레샤 오프된 상태에서 상대습도상승율에 따른 팬모터 회전수 결정하는 단계(15)와, 상기 컴퓨레샤 오프된 상태에서 소정시간 결과하였는가를 판단하는 컴퓨레샤 오프시간 판단단계(16)와,컴퓨레샤 오프시간이 소정시간 경과하면 상기 제1추론단계(11)인 실내설정온도와 실내설정상대습도결정을 수행하는 단계(17)와, 실내온도가 설정온도보다 높은가를 판단하여 높으면 컴퓨레샤온, 낮으면 오프시키는 실내온도 판단단계(18)롤 이루어진 것을 특징으로 하는 공기조화기의 최적제어방법.In the optimum control method of the air conditioner to control the compressor and the fan motor rotation speed for the indoor set temperature and the outdoor temperature, the indoor temperature is controlled comfortably, the setting of the indoor set temperature and the indoor relative humidity relative to the outdoor temperature A second reasoning step (11) for determining a value and a second reasoning step for determining the importance with respect to the room temperature and relative humidity by calculating the set value and the detected current indoor condition value in the first reasoning step (11) ( 12) and the third reasoning step (13) and the third reasoning step (determining the fan motor rotation speed according to the error and the error occurrence rate of the room temperature and relative humidity in the state of importance determined in the second reasoning step 12) ( Determining to turn off the compressor when the piping temperature is less than the predetermined temperature in the state in which the fan motor rotation speed is determined in 13), and to turn on when the pipe temperature is abnormal (14), and the fan motor according to the relative humidity rise rate in the state of the compressor off Determining a rotation speed (15), a compressor off time determining step (16) for determining whether the result of the predetermined time in the compressor off state, and the first inference step (if the compressor off time has elapsed for a predetermined time) 11) performing the indoor setting temperature and the indoor setting relative humidity determination (17), and determining whether the indoor temperature is higher than the set temperature, the high temperature of the compressor, the low temperature of the indoor temperature determination step (18) Optimal control method of the air conditioner characterized by the above.※ 참고사항 : 최초출원 내용에 의하여 공개되는 것임.※ Note: This is to be disclosed by the original application.
KR1019910010088A1991-06-181991-06-18 Optimal Control Method of Air ConditionerCeasedKR930000900A (en)

Priority Applications (2)

Application NumberPriority DateFiling DateTitle
KR1019910010088AKR930000900A (en)1991-06-181991-06-18 Optimal Control Method of Air Conditioner
JP4158165AJPH05180487A (en)1991-06-181992-06-17Control system of air conditioner

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
KR1019910010088AKR930000900A (en)1991-06-181991-06-18 Optimal Control Method of Air Conditioner

Publications (1)

Publication NumberPublication Date
KR930000900Atrue KR930000900A (en)1993-01-16

Family

ID=19315956

Family Applications (1)

Application NumberTitlePriority DateFiling Date
KR1019910010088ACeasedKR930000900A (en)1991-06-181991-06-18 Optimal Control Method of Air Conditioner

Country Status (2)

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JP (1)JPH05180487A (en)
KR (1)KR930000900A (en)

Families Citing this family (17)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
JPH09182489A (en)*1995-10-251997-07-11Mitsubishi Materials CorpMotor driving control and device thereof
JP2002291866A (en)*2001-04-032002-10-08Ngk Spark Plug Co LtdCalcium phosphate cement powder and calcium phosphate cement
KR100512281B1 (en)*2003-01-302005-09-02엘지전자 주식회사Method for dehumidification of air conditioner
JP2007263425A (en)*2006-03-282007-10-11Sanyo Electric Co LtdDehumidifying air conditioning system
US10760803B2 (en)*2017-11-212020-09-01Emerson Climate Technologies, Inc.Humidifier control systems and methods
WO2019204779A1 (en)2018-04-202019-10-24Emerson Climate Technologies, Inc.Indoor air quality and occupant monitoring systems and methods
US12078373B2 (en)2018-04-202024-09-03Copeland LpSystems and methods for adjusting mitigation thresholds
US11486593B2 (en)2018-04-202022-11-01Emerson Climate Technologies, Inc.Systems and methods with variable mitigation thresholds
US12259148B2 (en)2018-04-202025-03-25Copeland LpComputerized HVAC filter evaluation system
US11371726B2 (en)2018-04-202022-06-28Emerson Climate Technologies, Inc.Particulate-matter-size-based fan control system
WO2019204790A1 (en)2018-04-202019-10-24Emerson Climate Technologies, Inc.Systems and methods with variable mitigation thresholds
WO2019204785A1 (en)2018-04-202019-10-24Emerson Climate Technologies, Inc.Particulate-matter-size-based fan control system
US11994313B2 (en)2018-04-202024-05-28Copeland LpIndoor air quality sensor calibration systems and methods
WO2019204792A1 (en)2018-04-202019-10-24Emerson Climate Technologies, Inc.Coordinated control of standalone and building indoor air quality devices and systems
US12018852B2 (en)2018-04-202024-06-25Copeland Comfort Control LpHVAC filter usage analysis system
CN113531760B (en)*2021-06-032022-08-02珠海格力电器股份有限公司Humidity control method and device, storage medium and processor
CN116202201A (en)*2021-11-302023-06-02青岛海尔空调器有限总公司Control method and device of latent heat type air conditioner and latent heat type air conditioner

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
JPS5393642A (en)*1977-01-281978-08-16Hitachi LtdMethod of controlling operation of air conditioner
JPS581960B2 (en)*1978-08-311983-01-13松下電工株式会社 Dryness detection method
JPS6449838A (en)*1987-08-181989-02-27Fujitsu General LtdControl method of air conditioner

Also Published As

Publication numberPublication date
JPH05180487A (en)1993-07-23

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