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首页> 外文期刊>Photovoltaics, IEEE Journal of >The Impact of Reflectance Variation in Silicon Heterojunction Solar Cells and Modules on the Perception of Color Differences
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The Impact of Reflectance Variation in Silicon Heterojunction Solar Cells and Modules on the Perception of Color Differences

机译:硅杂交结变太阳能电池和模块对颜色差异感的反射变化的影响

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摘要

The color produced by visible light that reflects from the photovoltaic modules can influence visual aesthetics for colored photovoltaic applications, such as the building integrated photovoltaic and the vehicles integrated photovoltaic. How two colors lying close together can be perceived by the human eye is important for aesthetic design. In this article, we investigate the reflectance spectra variation caused by the variation of indium tin oxide thickness and incidence angle of sunlight based on the well-known silicon heterojunction solar cells and modules. By converting the reflectance spectra into the Delta E 2000 value, we quantify whether differences in color can be perceived. The colors are also predicted based on the standard red, green, and blue color space. The results show that the reflectance variation because of an ITO thickness deviation of 5 nm in SHJ solar cells leads to a perceptible color difference, which can be suppressed after encapsulation but is still perceptible on close observation. The ITO thickness deviation should be controlled within 3 nm to produce a nearly imperceptible visual appearance. The color difference of SHJ modules with an ITO thickness of 70 nm is nearly imperceptible if the incidence angle is below 70 degrees. For comparison, the color differences of the passivated emitter and rear contact solar cells using SiNx as an antireflection layer is also investigated.
机译:由光伏模块反射的可见光产生的颜色可以影响彩色光伏应用的视觉美观,例如建筑物集成光伏和集成光伏的车辆。人体眼睛可以感知两个颜色贴在一起的颜色对于美学设计来说是重要的。在本文中,我们研究了基于众所周知的硅异质结太阳能电池和模块的氧化铟锡厚度和阳光发生率的变化引起的反射光谱变化。通过将反射光谱转换为Delta E 2000值,我们量化了是否可以感知颜色的差异。还基于标准的红色,绿色和蓝色空间来预测颜色。结果表明,由于SHJ太阳能电池中的5nm的ITO厚度偏差为5nm的反射率变化导致了可察觉的色差,这可以在封装之后抑制,但在密切观察中仍然令人察觉。应在3 nm内控制ITO厚度偏差,以产生几乎难以察觉的视觉外观。如果入射角低于70度,则具有70nm的ITO厚度为70nm的SHJ模块的色差几乎是难以察觉的。为了比较,还研究了钝化发射极和后接触太阳能电池作为抗反射层的钝化发射极和后接触太阳能电池的颜色差异。

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