• Title/Summary/Keyword: Photovoltaic cells

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Economic analysis on Sustainable Photovoltaic Systems (지속가능한 태양광발전시스템의 경제성 분석)

  • Park, Soo-Uk;Lee, Deok-Ki
    • New & Renewable Energy
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    • v.1 no.3 s.3
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    • pp.35-41
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    • 2005
  • This paper analyses the economics of grid-connected photovoltaic systems. With the 2003 cost of photovoltaic systems, under prevailing capital market conditions, with a system lifetime of 30 years, and under the best climatic conditions, it appears that the cost of production of grid-connected electricity could be of 0.21 US $/kWh, and under medium climatic conditions, European locations, Switzerland, Japan and South Korean could be of 0.28$/kWh. If the lifetime if the system goes up, due to future technological improvements, to a very large value such as 50 years, these costs can be lowered by 10-20%. Competitiveness of grid-connected photovoltaic electricity, while it still cannot be taken for granted, is a possibility, especially if major technological advances further lowers the costs of photo cells and increases their lifetimes.

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Trends of Photovoltaic Research, Development and Diffusion (태양광 발전기술의 개발 및 보급동향)

  • Song, J.;Yoon, K.H.;Yu, K.J.
    • Proceedings of the KIEE Conference
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    • 2000.07c
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    • pp.1506-1509
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    • 2000
  • The Korean National Photovoltaic Project was initiated in October 1989 to develop technologies for the generation of economically competitive electric power by photovoltaic systems. It consists of four stages through the year 2006 with technical goals and cost targets related with solar cells, balance of systems and system application. The objectives of the project are to utilize photovoltaic technology, to transfer developed technology to industries and end users by research activities and to diffuse photovoltaic systems by demonstration projects. This paper reviews long-term plan abd status of technology R&D, and markets of photovoltaics. Some activities designed to promote collaboration with foreign countries are also introduced.

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Analysis of Optical Characteristics of Transparent Glasses for PV and Glass-Glass Module Application (PV용 투명유리와 G/G모듈의 광학적 특성 평가 및 분석)

  • Kim, Kyung-Soo;Kang, Gi-Hwan;Yu, Gwon-Jong
    • Journal of the Korean Solar Energy Society
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    • v.28 no.5
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    • pp.8-13
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    • 2008
  • In this study, we analyze the electrical optical characteristics of transparent glass for photovoltaic and glass-glass module application. The elemental facts from raw glass to laminated glass with solar cells are analyzed using UV spectrophotometer and spectroradiometer. From the data of transmittance and reflectance, the optimum PV module processing condition and selection of material for fabrication should be considered deeply for obtaining high module efficiency. Also we introduce two glasses which has 2%$\sim$4% higher transmittance using coating technology with anti-reflection material. From this experiment, we try to give some basic information for PV module manufacturing industry. The detail description is specified as the following paper.

The Electrical Characteristics of Shading Effect in Photovoltaic Module (PV모듈에서 그림자에 의한 전기적 특성)

  • Kim, Seung-Tae;Kang, Gi-Hwan;Park, Ji-Hong;Ahn, Hyung-Keun;Yu, Gwon-Jong;Han, Deuk-Young
    • 한국태양에너지학회:학술대회논문집
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    • 2008.04a
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    • pp.257-262
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    • 2008
  • In this paper, we study the electric characteristics of shading effects in photovoltaic module in case of outdoor operation. When fabricating PV module, solar cells are connected serially to obtain the high voltage because of its low open circuit voltage. And total current is determined by lowest current among solar cells. When the shading happens on PV module's surface, the current of shaded solar cell determine the total current flow. Because of this, generally by-pass diode is installed on junction box. The bypass diode operate when revered and shaded solar cell's voltage is over 0.6 voltage. The reverse-biased solar cell gives reduced maximum power of PV module and might give negative effect on durability. So, adequate by-pass installation and selection is needed.

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A Control Method and Test Results of Utility-Interactive Photovoltaic Power Generation Systems (계통연계 태양광발전시스템의 제어기법 및 연계운전특성)

  • 황인호;안교상;임희천;김신섭
    • The Transactions of the Korean Institute of Power Electronics
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    • v.5 no.2
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    • pp.123-129
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    • 2000
  • This paper desclibes a design method and test results of grid-connected photovoltaic power 당eneration s systems, which consists of solar cells, DCI AC inverter, utility grid. A 50 kW photovoltaic power generation s system including a 3-phase DCI AC inverter is designed and made in order to investigate the system l pelionnance for glid connection. Also the control scheme of a three phase cmrent-controlled PWM inverter W with PI controller is presented by using d-q transformation. The experimental waveforms show that the p proposed system has stable behavior with em unit power factor in utility-interactive operation.

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Study on Improving Surface Structure with Changing RF Power Conditions in RIE (reactive ion etching) (반응성 이온 건식식각에서 RF Power 변화에 따른 표면 조직화 개선 연구)

  • Park, Seok-Gi;Lee, Jeong In;Kang, Min Gu;Kang, Gi-Hwan;Song, Hee-eun;Chang, Hyo Sik
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.29 no.8
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    • pp.455-460
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    • 2016
  • A textured front surface is required in high efficiency silicon solar cells to reduce reflectance and to improve light trapping. Wet etching with alkaline solution is usually applied for mono crystalline silicon solar cells. However, alkali texturing method is not appropriate for multi-crystalline silicon wafers due to grain boundary of random crystallographic orientation. Accordingly, acid texturing method is generally used for multi-crystalline silicon wafers to reduce the surface reflectance. To reduce reflectivity of multi-crystalline silicon wafers, double texturing method with combination of acid and reactive ion etching is an attractive technical solution. In this paper, we have studied to optimize RIE condition by different RF power condition (100, 150, 200, 250, 300 W).

Photovoltaic Properties of Poly[(9,9-dioctylfluorenyl-2,7-vinylene )-co-{2-(3'-dimethyldodecylsilylphenyl)-1,4-phenylenevinylene}] for Electro-Active Devices

  • Jin Sung-Ho;Shim Jong-Min;Jung, Seung-Jin;Kim, Sung-Chul;Naidu B. Vijaya Kumar;Shin, Won-Suk;Gal Yeong-Soon;Lee, Jae-Wook;Kim, Ji-Hyeon;Lee, Jin-Kook
    • Macromolecular Research
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    • v.14 no.5
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    • pp.524-529
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    • 2006
  • New, thermally robust, arylenevinylene conjugated polymers, including poly(9,9-dioctylfluorenyl-2,7-vinylene) [poly(FV)] and poly[2-(3'-dimethyldodecylsilylphenyl)-1,4-phenylenevinylene] [poly(m-SiPhPV)], were synthesized and used for the fabrication of efficient photovoltaic cells. Bulk heterojunction photovoltaic cells fabricated by blending one of the polymers, [poly(FV)], [poly(m-SiPhPV)], and poly(FV-co-m-SiPhPV), with the fullerene derivative [6,6]-phenyl-$C_{61}$-butyric acid methyl ester (PCBM) were found to have a power conversion efficiency of up to 0.038%..

Charge Transport Characterization of PbS Quantum Dot Solids for High Efficiency Solar Cells

  • Jeong, Young Jin;Jang, Jihoon;Song, Jung Hoon;Choi, Hyekyoung;Jeong, Sohee;Baik, Seung Jae
    • Journal of the Optical Society of Korea
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    • v.19 no.3
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    • pp.272-276
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    • 2015
  • The PbS quantum dot is an emerging photovoltaic material, which may provide high efficiency breakthroughs. The most crucial element for the high efficiency solar cells's development is to understand charge transport characteristics of PbS quantum dot solids, which are also important in planning strategic research. We have investigated charge transport characteristics of PbS quantum dot solids thin films using space charge limited conduction analysis and assessed thickness dependent photovoltaic performances. The extracted carrier drift mobility was $low-10^{-2}cm^2/Vs$ with the estimated diffusion length about 50 nm. These and recently reported values were compared with those from a commercial photovoltaic material, and we present an essential element in further development of PbS quantum dot solids materials.

A Study on the Contamination of Photovoltaic Cells by Fine Dust in the Air (공기 중의 미세먼지에 의한 태양전지의 오염에 관한 연구)

  • HAN, JIN MOK;CHOI, SOOKWANG;KIM, SEWOONG;JUNG, YOUNGUAN
    • Transactions of the Korean hydrogen and new energy society
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    • v.29 no.3
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    • pp.292-298
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    • 2018
  • The contamination of photovoltaic (PV) cells reduces the incidence of sunlight and reduces the power generation output of PV cells. The main factor influencing the contamination of PV cells installed outdoors is the fine dust in the air, but the influence of temperature, humidity, rain and wind can be considered. In this paper, experiments on the contamination of PV cells according to the fine dust density, the temperature and humidity of air were investigated. As results of this study, the contamination area of PV cells increases with contamination time and cumulative fine dust density in the air. The contamination of PV cells increases when the temperature is low and the humidity is high. Also, as the contamination of PV cells is affected to the wind, the deviation of contamination area is happened.

Review on Tin Perovskite Solar Cells: Material and Device Properties (주석 페로브스카이트 태양전지에 관한 고찰: 재료 및 장치적 특성)

  • Dayeong Choi;Seyeong Lim;Hangyeol Kim
    • Current Photovoltaic Research
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    • v.11 no.1
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    • pp.18-26
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    • 2023
  • Tin perovskite solar cells have attracted a lot of attention due to their potential to address the toxicity of lead, which is the biggest barrier to commercialization of perovskite solar cells. Unlike other lead-free perovskite, tin perovskite have a direct bandgap, which is suitable for use as light harvesting, and relatively good stability, which has led to a lot of attention. Since the first tin perovskite solar cell was reported in 2014, it has achieved an impressive power conversion efficiency of 14.81%. However, this efficiency is still low compared to that of lead perovskite solar cells, and the stability of tin perovskite solar cells is also an issue that needs to be addressed. In this review, we will discuss the basic properties of the tin atom in comparison to the lead atom, and then discuss the crystal structure, phase transition, and basic properties of tin perovskite. We will then discuss the advantages, applications, challenges, and strategies of tin perovskite, In particular, we will focus on how to prevent the oxidation of tin, which is arguably the biggest challenge for using tin perovskite solar cells. At the end, we summarize the key factors that need to be addressed for higher efficiency and stability, emphasizing what is needed to commercialize tin perovskite solar cells.