• Title/Summary/Keyword: 컬러 태양광 모듈

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결정질 실리콘 컬러 태양광 모듈 기술 동향

  • Song, Hyeong-Jun
    • Bulletin of the Korea Photovoltaic Society
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    • v.5 no.1
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    • pp.38-45
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    • 2019
  • 건물 일체형 태양광 발전시장의 증가에 따라 미적(Aesthetic) 요소가 결합된 태양광 모듈에 대한 수요가 증가하고 있다. 이런 시장의 요구에 따라 다양한 색상을 가지고 있는 컬러 태양광 모듈에 대한 연구 및 개발이 활발하게 진행되고 있다. 여러 제안된 컬러 태양광 모듈 기술 중 결정질 실리콘(crystalline-silicon) 기반 태양광 모듈에 컬러 유리 혹은 컬러 층을 도입하는 기술은 기존 실리콘 모듈의 장점인 신뢰도와 가격 측면에서 다른 방식 대비 큰 장점이 있다. 결정질 실리콘 모듈에 컬러를 구현하기 위해서는 현재 크게 세가지 방식이 제안되고 있다. 가장 먼저 제안된 방식은 태양전지 전면에 반사 방지막 형성 시 특정 파장만 반사할 수 있는 층이 도입된 컬러 태양전지(color photovoltaic cell)를 이용하여 색상을 구현하는 방식이다. 다른 한 방식은 일반 검정색 태양전지에 반사가 가능한 입자 혹은 박막층을 태양광 모듈 전면에 도입하는 반사형(Reflective) 컬러 태양광 모듈 기술이다. 마지막으로 특정 파장을 흡수하여 다른 파장으로 발광하는 염료 혹은 안료를 이용한 발광형(Luminescent)방식에 대한 연구도 진행 중이다. 본고에서는 각 방식의 동작 특성 및 기술 동향에 대해 논의하고자 한다.

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A Study on the Optimization of Color Module BIPV Architectural Design Using BIM - Based on the data of Seoul surveyed solar radiation - (BIM을 활용한 컬러모듈 BIPV 건축 설계 최적화 방안 연구 - 서울 지역 실증 일사량 데이터 중심으로 -)

  • Jeon, Hyun-Woo;Yoon, Hea-Kyung;Park, Suh-Jun
    • Journal of KIBIM
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    • v.9 no.3
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    • pp.19-29
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    • 2019
  • Currently, BIPV (Building Integrated Photovoltaic) design technology lacks analysis function at the planning stage, and there is a lack of understanding and reliability of BIPV design method and system for building designers. To design and consider various building integrated solar design alternatives, the color of building integrated solar is often monotonous or does not match the design direction of the building. In this study, architectural designers can select various color modules in the planning and design process of the building and analyze the characteristics of color module solar cells and compare and analyze the actual solar radiation and predicted solar radiation in Republic ofKorea Seoul to reduce the confusion of design methods. By building a BIM design integrated system that can prove the quality of the building and analyze the shading analysis and power generation performance architecturally, it can improve the reliability of color module solar cell applicability that can express aesthetics in buildings and the predicted solar power generation capacity of each region. In the initial design stage, based on the empirical data of the BIPV system, it is possible to analyze the power generation performance for each installation angle and installation direction by analyzing the surrounding environment and the installation area, and accurately determine the appropriateness of the design accordingly.

Analysis of Power Characteristics of High-Power Shingled Photovoltaic Module with Color Application (고출력 슁글드 태양광 모듈 컬러 적용에 따른 출력 특성 분석)

  • Kim, Juhwi;Lee, Jaehyeong
    • Current Photovoltaic Research
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    • v.10 no.3
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    • pp.73-76
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    • 2022
  • BIPV (Building Integrated Photovoltaic) supplemented the minimum area problem required when installing existing solar modules. However, in order to apply it to buildings, research was needed to increase the aesthetics of solar modules and use them as a design. Accordingly, modules with color applied to the entire surface of the photovoltaic module were being developed, but there was a disadvantage of low power. Therefore, by dividing and bonding the cell strips, it was possible to improve the output power by applying a shingled technology in which other divided cells overlap in a busbar region where light couldn't be received. Shingled technology was advantageous for color modules because the front busbar part that degrades aesthetics was removed. In this research, four color shingled solar modules (Green, Yellow, Blue, Gray) were manufactured and power degradation was analyzed by measuring transmittance and reflectance. Gray color had 80.83% transmittance, which was 31.31% higher than Yellow, resulting in a power difference of 4.45 W.

A Study on the Application of BIPV for the Spread of Zero Energy Building (제로에너지 건축물 확산을 위한 건물 일체형 태양광 적용방안 연구)

  • Park, Seung-Joon;Jeon, Hyun-Woo;Lee, Seung-Joon;Oh, Choong-Hyun
    • Journal of Digital Convergence
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    • v.19 no.9
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    • pp.189-199
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    • 2021
  • In order to increase the self-reliance rate of new and renewable energy in order to respond to the mandatory domestic zero-energy buildings, the taller the building, the more limited the site area, and installing PV modules on the roof is not enough. Therefore, BIPV (Building integrated photovoltaic, hereinafter BIPV) is the industry receiving the most attention as a core energy source that can realize zero-energy buildings. Therefore, this study conducted a survey on the problems of the BIPV industry in a self-discussing method for experts with more than 10 years of experience of designers, builders, product manufacturers, and maintainers in order to suggest the right direction and revitalize the BIPV industry. Industrial problems of BIPV adjustment are drawn extention range of standard and certification for products, range improvement for current small condition of various kind productions, need to revise standards for capable of accomodating roof-type, color-module and louver-module, necessary of barrier in flow of foreign modules into korea through domestic certification mandatory, difficulty in obtaining BIPV information, request to prevent confusion among participants by exact guidelime about architectural application part of BIPV, and lack of the BIPV definition clearness, support policy, etc. Based on the improvements needed for the elements, giving change and competitiveness impacts aims to present and propose counter measures and direction.