DOI QR코드

DOI QR Code

Convergence Research for CIGS Solar Cell Aesthetics Product Design Development for Utilizing Urban Living Structures

도시 생활구조물 활용을 위한 CIGS 태양전지 심미성 향상 제품디자인 개발융합연구

  • Jo, Jae-Yoon (Product Innovation Design, Graduate School Of Techno Design Of Techno Design, Kookmin University) ;
  • Jang, Hui-su (Product Innovation Design, Graduate School Of Techno Design Of Techno Design, Kookmin University) ;
  • Jeong, Je-yoon (Product Innovation Design, Graduate School Of Techno Design Of Techno Design, Kookmin University) ;
  • Nam, Won-Suk (Department of Industrial Design, Kookmin University) ;
  • Jang, Joong-Sik (Department of Industrial Design, Kookmin University)
  • 조재윤 (국민대학교 테크노디자인전문대학원 제품이노베이션디자인학과) ;
  • 장희수 (국민대학교 테크노디자인전문대학원 제품이노베이션디자인학과) ;
  • 정제윤 (국민대학교 테크노디자인전문대학원 제품이노베이션디자인학과) ;
  • 남원석 (국민대학교 공업디자인학과) ;
  • 장중식 (국민대학교 공업디자인학과)
  • Received : 2020.02.04
  • Accepted : 2020.04.20
  • Published : 2020.04.28

Abstract

This paper is a product design convergence study to improve the aesthetic quality of CIGS solar cells for utilizing urban living structures, identifying problems of existing solar cell panels and drawing expert aesthetic elements for improving CIGS solar cells through survey and [Group discussion of experts] based on aesthetic elements of product design. Out of the aesthetic elements derived, the top three models of the product design process were 'environmental harmonization', 'pattern balance', and 'period universality' to derive the design and assembly design of the CIGS solar cell module for improving aesthetic quality, and applied to apartments, veranda, windows, and streetcar through product simulation. This study is suitable for applying aesthetic and CIGS solar cell function later to actual urban living structure, and future research direction needs to be studied on various patterns and structural design development of design.

본 논문은 도시 생활구조물 활용을 위한 CIGS 태양전지 심미성 향상 제품디자인 개발융합연구로써, 기존 태양전지 패널의 문제점을 파악하고 제품디자인의 심미성 요소를 바탕으로 설문조사와 FGD [전문가 집단 토론]를 통해 CIGS 태양전지 심미성 향상을 위한 전문적인 심미성 요소를 도출하였다. 도출된 심미성 요소 중 '환경 조화성', '패턴 균형성', '시대 보편성' 이렇게 상위 3종을 콘셉트로 제품 디자인 프로세스를 진행하여 심미성 향상을 위한 CIGS 태양전지 모듈 디자인과 어셈블리 디자인을 도출하였으며, 제품 시뮬레이션을 통해 아파트, 베란다와 창호, 스트릿퍼니처에 적용했다. 본 연구는 추후 실제 도시 생활구조물에 활용해 심미성과 CIGS태양전지의 기능을 적용하기에 적합하며, 향후 연구방향은 다양한 패턴과 구조적 디자인개발에 관한 연구가 필요하다.

Keywords

References

  1. Doopedia. (2009). An Oral Health Promotion Behavior Model for Adolescents. Copper indium gallium selenide thin-film solar cells. [Online]. https://terms.naver.com/entry.nhn?docld=3390030&cid=40942&categoryld=32371
  2. Wikipedia. (2019). CIGS Battery. [Online]. https://ko.wikipedia.org/wiki/CIGS_%EC%A0%84%EC%A7% 80
  3. Naver. (2011). Photovoltaic Fundamentals[online]. http://m.blog.daum.net/6332park/4764526?np_nil_b=-1
  4. Jordan Seefeldt. (2019). Analyzing a Fast-Growing Solar Cell Technology. Thermo Fisher Scientific. [online]. https://www.thermofisher.com/blog/materials/analyzing-a-fast-growing-solar-cell-technology/
  5. Y. A. Jin. (2006). A study on aesthetic elements of cell phone design-focused on analyzing aesthetic elements of cell phone design preferred in Korea and China. Jeonbuk National University, Jeonbuk.
  6. Titus, Harold M, Marilyn S, Smith & Richard T, Nolan. (1966). Living issue in Philosophy. [Belmont]. CA: Wadsworth Publishing Company.
  7. S. M. Hui. (2017). Know the principles and concepts of design and prepare for admission. [Online]. https://cafe.naver.com/suhui/18265270.
  8. Faust. (2015). A study on the improvement of CIGS solar sell efficiency. [Online]. https://terms.nave r.com/korrata/2204974776638
  9. N. R. Yoon. (2012). Structural Design of Photovoltaic Module and Prediction of Power by Installation Angle. Master dissertation, Konkuk University, Seoul.
  10. Wikipedia. (2015). Likert scale. [online]. https://ko.wikipedia.org/wiki/%EB%A6%AC%EC%BB%A4%ED%8A%B8_%EC%B2%99%EB%8F%84
  11. Google. (2020). F.G.D(Focus Group Discussion). [online]. http://www.randr.co.kr/marketing/fgd.htm
  12. J. Y. Jo. (2020). A Study on the Usability of VR Device PUI Design. Master dissertation, Kookmin University, Seoul.
  13. H. Hun. (2016). Development and Market Trend of Photovoltaic Technologies in Korea and abroad. Seoul : Korea Institute of Energy Technology Evaluation
  14. I. D. Kim. (2008). A Study on the Module-Structured Robot Design through the Analysis on Locomotion Figure of Robots. Master dissertation, University of Seoul, Seoul.
  15. J. Y. Choi. (2005). A Study on the Modular System for the Kitchen Furniture Design. Master dissertation, Yonsei University, Seoul.