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    Performance evaluation of a 400 W precise window motor for glass houses

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    https://www.riss.kr/link?id=A105045215

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Crop growth and production cost are greatly influenced by management of environmental factors such as ambient temperature, humidity, and CO2, especially in protected horticulture.
    Opening and closing of greenhouses is the most important operation for control of these ambient environmental factors, and precise and stable operation requires high performance window motors. In this study, a 400 W precise window motor was constructed, and its performance was evaluated for plastic and glass greenhouses. First, the motor was designed and fabricated by benchmarking of an advanced foreign product. Then, the performance was evaluated through vibration, PCB (Process Control Block), and load tests. Vibration tests resulted in averaged vibration displacement and velocity of the developed motor of 0.002 mm and 0.2267m/s, which were statistically significantly different from those of the target motor. Average vibration acceleration (0.26 m/s2) of the developed motor was also significantly different from that (0.51 m/s2) of the target motor. PCB tests showed 2 - 4 mm deviation from the target values, and confirmed the operating status and precision of the control. Load tests with a 300 kg load also showed acceptable operating status and durability. Current values were 1.31 ± 0.06 A and RPMs were in the range of 2.9 - 3.0.
    Considering the above results, the developed window motor would be competitive to the target foreign product.
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    Crop growth and production cost are greatly influenced by management of environmental factors such as ambient temperature, humidity, and CO2, especially in protected horticulture. Opening and closing of greenhouses is the most important operation for...

    Crop growth and production cost are greatly influenced by management of environmental factors such as ambient temperature, humidity, and CO2, especially in protected horticulture.
    Opening and closing of greenhouses is the most important operation for control of these ambient environmental factors, and precise and stable operation requires high performance window motors. In this study, a 400 W precise window motor was constructed, and its performance was evaluated for plastic and glass greenhouses. First, the motor was designed and fabricated by benchmarking of an advanced foreign product. Then, the performance was evaluated through vibration, PCB (Process Control Block), and load tests. Vibration tests resulted in averaged vibration displacement and velocity of the developed motor of 0.002 mm and 0.2267m/s, which were statistically significantly different from those of the target motor. Average vibration acceleration (0.26 m/s2) of the developed motor was also significantly different from that (0.51 m/s2) of the target motor. PCB tests showed 2 - 4 mm deviation from the target values, and confirmed the operating status and precision of the control. Load tests with a 300 kg load also showed acceptable operating status and durability. Current values were 1.31 ± 0.06 A and RPMs were in the range of 2.9 - 3.0.
    Considering the above results, the developed window motor would be competitive to the target foreign product.

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    참고문헌 (Reference)

    1 서원명, "태안 시설원예단지의 온실 냉난방 부하 분석" 한국농공학회 51 (51): 45-52, 2009

    2 Xu M, "Vibration analysis of a motor-flexible coupling-rotor system subject to misalignment and unbalance, part I : theoretical model and analysis" 176 : 663-679, 1994

    3 Teitel M, "The effect of screened openings on greenhouse microclimate" 143 : 159-175, 2007

    4 Miguel AF, "Porous materials to control climate behaviour of enclosures: an application to the study of screened greenhouses" 31 : 195-209, 2000

    5 Kim BR, "Policy Directions for Controlled Horticulture Industry" Publishing KREI 26-, 2016

    6 Chinmaya K, "Multistage gearbox condition monitoring using motor current signature analysis and Kolmogorov–Smirnov test" 290 : 337-368, 2006

    7 Ahonen T, "Greenhouse monitoring with wireless sensor network" 403-408, 2008

    8 Lee KC, "Forecasting Future Technology, Drawing Road Maps, and Developing Effective Investment Techniques in Agriculture" Publishing MAFRA 58-, 2004

    9 Yun SW, "Estimation of design load for analyzing behavior of greenhouse foundation in Korea" 18 : 263-364, 2013

    10 Candido A, "Embedded real-time system for climate control in a complex greenhouse" 21 : 17-27, 2007

    1 서원명, "태안 시설원예단지의 온실 냉난방 부하 분석" 한국농공학회 51 (51): 45-52, 2009

    2 Xu M, "Vibration analysis of a motor-flexible coupling-rotor system subject to misalignment and unbalance, part I : theoretical model and analysis" 176 : 663-679, 1994

    3 Teitel M, "The effect of screened openings on greenhouse microclimate" 143 : 159-175, 2007

    4 Miguel AF, "Porous materials to control climate behaviour of enclosures: an application to the study of screened greenhouses" 31 : 195-209, 2000

    5 Kim BR, "Policy Directions for Controlled Horticulture Industry" Publishing KREI 26-, 2016

    6 Chinmaya K, "Multistage gearbox condition monitoring using motor current signature analysis and Kolmogorov–Smirnov test" 290 : 337-368, 2006

    7 Ahonen T, "Greenhouse monitoring with wireless sensor network" 403-408, 2008

    8 Lee KC, "Forecasting Future Technology, Drawing Road Maps, and Developing Effective Investment Techniques in Agriculture" Publishing MAFRA 58-, 2004

    9 Yun SW, "Estimation of design load for analyzing behavior of greenhouse foundation in Korea" 18 : 263-364, 2013

    10 Candido A, "Embedded real-time system for climate control in a complex greenhouse" 21 : 17-27, 2007

    11 장정훈, "Effects of PTO gear face width on safety factors" 농업과학연구소 43 (43): 650-655, 2016

    12 Teitel M, "Effect of wind direction on greenhouse ventilation rate, airflow patterns and temperature distributions" 101 : 351-369, 2008

    13 Muñoz P, "Effect of insect-proof screens and roof openings on greenhouse ventilation" 73 : 171-178, 1999

    14 Seo DS, "Development Strategies for Material Industries of Greenhouses in Korea" Publishing Korea Rural Economic Institute 2-3, 2015

    15 Nandi S, "Condition monitoring and fault diagnosis of electrical motors—A Review" 20 : 719-729, 2005

    16 Park NG, "Analysis of vibration for permanent magnet motors considering mechanical and magnetic coupling effects" 36 : 1346-1350, 2000

    17 이바울, "Analysis of the effects of operating point of tractor engine on fatigue life of PTO gear using simulation" 농업과학연구소 43 (43): 441-449, 2016

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    학술지 이력

    학술지 이력
    연월일 이력구분 이력상세 등재구분
    2026 평가 재인증평가 신청대상 (재인증)
    2020-01-01 등재 등재학술지 유지 (재인증) KCI등재
    2017-01-01 등재 등재학술지 선정 (계속평가) KCI등재
    2016-03-31 학술지명변경 한글명 : 농업과학연구 -> Korean Journal of Agricultural Science
    외국어명 : JOURNAL OF AGRICULTURAL SCIENCE -> Korean Journal of Agricultural Science
    KCI등재후보
    2015-01-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
    2013-04-01 등재 등재후보 탈락 (기타)
    2011-01-01 등재 등재후보 1차 FAIL (등재후보1차) KCI등재후보
    2009-01-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.28 0.28 0
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0 0 0 0.1
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