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Comparison of Pyranometers and Reference Cells on Fixed and One-axis Tracking Surfaces

机译:粘连仪和参考电池对固定和单轴跟踪表面的比较

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Photovoltaic (PV) system perfomance is monitored by a wide variety of sensors. These instruments range from secondary standard pyranometers to photodiode-based pyranometers to reference cells Although instruments are mounted in the plane of array of the modules a wide range of results have been obtained. Some of these difference have been assumed to come from systematic uncertainties associated with the irradiance sensors This study is an attempt to quantify these differences by comparing the output of selected thermopile-based pyranometers to photodiode-based pyranometers and reference cells on a horizontal surface, a fixed-tilt surface, and a one-axis tracking surface. This analysis focuses on clear-sky results from two sites with different climatic conditions. Several important features were observed. Photodiode-based pyranometers and reference cells produce widely different results under clear skies, especially at larger angles-of-incidence even though both instruments are based on measuring the short circuit current of solar cells. The difference is caused by the scattering of light as it passes through the glazing of the reference cell or the diffuserlens of the photodioded-base pyranometer. Both instruments are shown to have similar response to the spectral distribution of the irradiance when compared to the thermopile-based pyranometer that has a response nearly independent of the wavelength of light used by PV modules.
机译:通过各种传感器监测光伏(PV)系统性能。这些仪器的范围从次级标准的焦点计到光电二极管的焦点计到参考电池,尽管仪器安装在模块阵列的平面中,但已经获得了广泛的结果。已经假设一些这些差异来自与辐照传感器相关的系统的不确定性,这项研究是通过将所选热潜水酰基的焦虑计的输出与基于光电二极管的显色度的粘膜计和水平表面上的参考电池进行比较来定量这些差异来计算这些差异。固定倾斜表面和单轴跟踪表面。该分析侧重于两个具有不同气候条件的两个站点的清晰天空结果。观察到几个重要的特征。基于光电二极管的粘膜仪和参考电池在透明的天空下产生广泛不同的结果,特别是在较大的入射率,即使两个仪器都基于测量太阳能电池的短路电流。差异是由光的散射引起的,因为它通过参考电池的玻璃窗或光电二极管碱基仪的漫射器的玻璃窗。与热电堆的粘合仪相比,两种仪器都显示出对辐照度的光谱分布类似的响应,其具有几乎与光伏模块使用的光的波长几乎独立的响应。

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