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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Design and modeling of an optical band gap matched temperature controlled indoor concentrated light transmission system for photovoltaic energy production
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Design and modeling of an optical band gap matched temperature controlled indoor concentrated light transmission system for photovoltaic energy production

机译:光伏能源生产光带隙匹配温控室内浓缩透光系统的设计与建模

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摘要

This paper reports, the design, and modeling of a band gap matched, actively temperature controlled indoor photovoltaic optical system for solar spectral irradiance ranging from 350 nm to 870 nm (visible and part of near infrared) by employing Cadmium Sulfide/ Cadmium Telluride (CdS/CdTe) thin layer solar cell. In this case, an existing indoor daylighting system having 45.91% efficiency is remodeled to be a more an efficient light concentrating source with an improved light transmission efficiency of 51.65% for the proposed system. Under band gap matched conditions of the light spectrum and active temperature controlled environment, for a CdS/CdTe solar cell with 0.06%/mV as temperature coefficient, a 0.5% increase in cell efficiency and negation of similar to 1.7% efficiency decay due to 12 degrees C temperature rise is theoretically predicted. A commercially available CdS/CdTe solar cell with 860.73 W/m(2) as integrated input solar irradiance and of 0.085 m(2)area, an outdoor efficiency of 14.52% produces 10.62 W. The modeled system theoretically predicts similar to 1.16 times more energy from the same system in addition to an extended life due to indoor conditions. Modeling and simulation of the proposed system are performed by using MATLAB V-9.2 and OptiSystem V-14.0 software showing a good agreement with theoretically predicted results.
机译:本文通过使用硫化镉/碲化镉(CDS),本文报道,设计和建模,用于太阳能控制室内光伏光学系统,用于太阳光谱辐照度,从350nm到870nm(可见和近红外线的一部分),通过使用硫化镉/碲化镉(Cds / cdte)薄层太阳能电池。在这种情况下,将具有45.91%效率的现有室内日光照射系统被改造为更高效的光学聚光源,该系统的透光效率提高为51.65%。在光谱和活性温控环境的带隙匹配条件下,对于0.06%/ mV的CDS / CDTE太阳能电池为温度系数,细胞效率的增加0.5%,否定与12的否定效率相似。由于12从理论上预测C温度升高。市售CDS / CDTE太阳能电池,具有860.73W / m(2),作为集成输入太阳辐照度和0.085米(2)区域,室外效率为14.52%,产生10.62W。理论上的系统预测类似于1.16倍除了室内条件下,除了延长寿命之外,来自同一系统的能量。所提出的系统的建模和仿真是通过使用MATLAB V-9.2和OptiSystem V-14.0软件来执行与理论上预测结果的良好一致性的。

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