원문정보
초록
영어
In this study, a smart skin system that combines SPD (suspended particle display) and LGG (Lighting Guide Glass) and its optimal control method was developed for the purpose of simultaneously reducing the lighting load and cooling load in office buildings. And a demonstration site was built to test the results. The demonstration site was constructed as an experimental group with a smart skin system installed and a control group with a general window system installed. When the cooling energy consumption of the experimental group to which the smart skin system was applied was reduced by about 36.9% compared to the control group, the lighting energy was also reduced by 54.4%.
목차
1. 서론
2. 연구방법
2.1 절 스마트스킨 시스템 개발
2.2 절 최적제어 알고리즘 개발
2.3 절 실증사이트 구축
2.4 절 실증실험
3. 결과 및 분석
3.1 스마트스킨 제어 시 고장 감지 방법 확인
3.2 실험군과 대조군의 실험 조건 확인
3.3 스마트스킨 제어를 통한 에너지 절감 확인
4. 결론
후기
References
키워드
저자정보
참고문헌
- 1Marco Sala, Rosa Romano, 2011, Smart Facade per edifici non residenziali, http://www.fupress. com/techne
- 2Lee, Kun-Ho, Understanding of the principle of energy saving double skin system and domestic design / construction case, Journal of the KGBC 0406, 2016 Vol. 12, No. 4
- 3Lee Kyung-Sun, Yuda Eun, A Study on the Eco- friendliness of the Lispansive Kinetic Facade, Journal of the Korean Society of Construction Engineers, 2012, pp. 85-96
- 4Kim, Sung-Woo, and Sung-Hwan Yoon, Verification of the Natural Ventilation Performance of the Core Part of Smart Ventilation System, Proceedings of the Korean Institute of Architects Conference, 2013, pp.495-496
- 5Seok-Hyeon Kim, Sue Cho, 2017, A Study on the Advanced Skin Performance Measurement Method and Performance Standard Development Plan, Korean Institute of Equipment Engineers Winter Conference, pp. 223-226
- 6Kim, Seok-Ho, Seo, Hyun-Hyun, MPC Environment and Performance Evaluation of Lighting Control with Retention, Journal of KIAEBS, 2017, Vol. 11, No. 6, pp. 546-557