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

机译:固定和单轴跟踪表面上的比色计和参考单元的比较

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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:光伏(PV)系统性能由多种传感器监控。这些仪器的范围从二级标准日射强度计到基于光电二极管的日射强度计再到参考电池,尽管这些仪器安装在模块阵列的平面中,但已经获得了广泛的结果。假定其中一些差异来自与辐照度传感器相关的系统不确定性。本研究试图通过比较选定的基于热电堆的日射强度计与基于光电二极管的日射强度计和水平面上的参考电池的输出来量化这些差异。固定倾斜表面和一个单轴跟踪表面。该分析着重于来自两个气候条件不同的地点的晴空结果。观察到一些重要特征。尽管两种仪器都是基于测量太阳能电池的短路电流,但在晴朗的天空下,尤其是在较大的入射角下,基于光电二极管的日射强度计和参考电池会产生截然不同的结果。差异是由于光线穿过参考单元的玻璃窗或光敏二极管日射强度计的扩散光时发生散射而引起的。与基于热电堆的日射强度计相比,这两种仪器对辐照度的光谱分布具有相似的响应,后者的响应几乎与PV模块使用的光的波长无关。

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