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Research on nonlinear error test of solar radiation measuring instrument

机译:太阳辐射测量仪非线性误差试验研究

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Nonlinearity is an important parameter for judging the performance of the radiation instrument. As the laboratory equipment for testing solar radiation measuring instrument, the stability of solar simulator light source is crucial to nonlinearity testing. In this paper, a mesh attenuation method used for testing nonlinear error of solar radiometers is presented. Different mesh type attenuators with different apertures are designed, then these mesh type attenuators are used in light source of solar simulator separately, and the irradiance at different intensities can be obtained. According to this method, nonlinear errors of 15 sets FS-6S pyranometers are tested. And the results show that such 15 pyranometers reach the first class pyranometer level recommended by WMO and ISO. Moreover, the nonlinear error of CMP21 pyranometer is tested for twice, the result ±0.5% is consistent with the nonlinearity indicator given by the manufacturer, which validates the correctness of mesh attenuation method in testing nonlinear error of solar radiometers.
机译:非线性是判断辐射仪器性能的重要参数。作为用于测试太阳辐射测量仪器的实验室设备,太阳模拟器光源的稳定性对于非线性测试至关重要。本文提出了一种用于测试太阳辐射计非线性误差的网格衰减方法。设计了具有不同孔径的不同网状衰减器,然后将这些网状衰减器分别用于太阳模拟器的光源,可以获得不同强度的辐照度。根据该方法,测试了15套FS-6S总辐射表的非线性误差。结果表明,这15个总辐射表达到了WMO和ISO推荐的一流的总辐射表水平。此外,对CMP21日射强度计的非线性误差进行了两次测试,结果±0.5%与制造商给出的非线性指标一致,验证了网格衰减法在测试太阳辐射计非线性误差中的正确性。

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