References
- Sung, T. K., et al, Performance Evaluation of An Azimuth Tracking Prismatic Daylighting System, Journal of the Korea Solar Energy Society, Vol.32, No.3, 2012, pp.129-137. https://doi.org/10.7836/kses.2012.32.3.129
- Lee, E.J., et al, Concentrating Daylighting Duct System, Journal of the Korea Solar Energy Society, Vol.7, 2008, pp.14-19.
- Kim, Y.S., Kwon, K.W., Skin load reduction technology of building, Korea Green Building Council, 2009, pp.38-41.
- Lee, S.C.,et al, The Developmentof Solar Tracking Concave Mirror Type Daylighting System, The Society of Air-Conditioningand Refrigerating Engineeris of Korea, summer Conference, 2012, 12-S-209.
- Yoon, Y.J., Architecture and Daylighting System, Journal of the Korea Solar Energy Society, Vol.8, No.1, 2009,pp. 3-10.
- Korea Energy Management Corporation, Renewable energy facilities assessment criteria- PV solar panel PV 601:2007.
- Heo, S.K., et al, Development on Requirement Specification for Performance Assesment of Daylight Collecting System, Ministry of Commerce, Industry and Energy,2006.
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