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      사무공간에서 효율적인 조광제어시스템 적용을 위한 주광분포 연구 = A study on daylight distributions for applying effective daylight responsive dimming systems in offices

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      https://www.riss.kr/link?id=A76101804

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      다국어 초록 (Multilingual Abstract)

      This study purposes to increase the energy-saving effects by reducing excessive intensity of radiation of artificial lighting through analyzing daylight incident. A photosensor sends amounts of detected luminous flux to digital control unit(DCU) as a signal and then, it can decide dimming ratios, received a proper dimming signal from DCU. Generally it is effective to control artificial lighting with the different control ratio of each row by setting a photosensor as same numbers and rows as artificial lighting. However, it is ineffective to do in initial costs of systems aspect in offices. As a result of grasping the distribution of daylight previously, we can dim different dimming ratios to each row of artificial lighting by a single photosensor.
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      This study purposes to increase the energy-saving effects by reducing excessive intensity of radiation of artificial lighting through analyzing daylight incident. A photosensor sends amounts of detected luminous flux to digital control unit(DCU) as ...

      This study purposes to increase the energy-saving effects by reducing excessive intensity of radiation of artificial lighting through analyzing daylight incident. A photosensor sends amounts of detected luminous flux to digital control unit(DCU) as a signal and then, it can decide dimming ratios, received a proper dimming signal from DCU. Generally it is effective to control artificial lighting with the different control ratio of each row by setting a photosensor as same numbers and rows as artificial lighting. However, it is ineffective to do in initial costs of systems aspect in offices. As a result of grasping the distribution of daylight previously, we can dim different dimming ratios to each row of artificial lighting by a single photosensor.

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      목차 (Table of Contents)

      • Abstract
      • 1. 서론
      • 2. 연구의 이론적 배경
      • 3. 주광 시뮬레이션
      • 4. 결론 및 향후과제
      • Abstract
      • 1. 서론
      • 2. 연구의 이론적 배경
      • 3. 주광 시뮬레이션
      • 4. 결론 및 향후과제
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