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A method for improving global pyranometer measurements by modeling responsivity functions

机译:一种通过对响应函数建模来改善全局总辐射表测量的方法

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Accurate global solar radiation measurements are crucial to climate change research and the development of solar energy technologies. Pyranometers produce an electrical signal proportional to global irradiance. The signal-to-irradi-ance ratio is the responsivity (RS) of the instrument (RS = signal/irradiance = microvolts/(W/m~2)). Most engineering measurements are made using a constant RS. It is known that RS varies with day of year, zenith angle, and net infrared radiation. This study proposes a method to find an RS function to model a pyranometer's changing RS. Using a reference irradiance calculated from direct and diffuse instruments, we found instantaneous RS for two global pyranometers over 31 sunny days in a two-year period. We performed successive independent regressions of the error between the constant and instantaneous RS with respect to zenith angle, day of year, and net infrared to obtain an RS function. An alternative method replaced the infrared regression with an independently developed technique to account for thermal offset. Results show improved uncertainties with the function method than with the single-calibration value. Lower uncertainties also occur using a black-and-white (8-48), rather than all-black (PSP), shaded pyranometer as the diffuse reference instrument. We conclude that the function method is extremely effective in reducing uncertainty in the irradiance measurements for global PSP pyranometers if they are calibrated at the deployment site. Furthermore, it was found that the function method accounts for the pyranometer's thermal offset, rendering further corrections unnecessary. The improvements in irradiance data achieved in this study will serve to increase the accuracy of solar energy assessments and atmospheric research.
机译:准确的全球太阳辐射测量对气候变化研究和太阳能技术的发展至关重要。辐射计会产生与总辐照度成比例的电信号。信噪比是仪器的响应度(RS)(RS =信号/辐照度=微伏/(W / m〜2))。大多数工程测量都是使用恒定RS进行的。众所周知,RS随一年中的天数,天顶角和净红外辐射而变化。这项研究提出了一种找到RS函数的方法,以对总辐射表的变化RS进行建模。使用从直接和漫射仪器计算出的参考辐照度,我们发现在两年的31个晴天中,两个全球总辐射表的瞬时RS。我们对天顶角,一年中的天数和净红外的恒定和瞬时RS之间的误差进行了连续的独立回归,以获得RS函数。一种替代方法用独立开发的技术代替了红外回归,以解决热失调问题。结果表明,与单次校准值相比,函数方法的不确定性得到了改善。使用黑白(8-48)而不是全黑(PSP)的阴影总辐射计作为漫射参考仪器时,不确定性也较低。我们得出的结论是,如果在部署地点进行了校准,则函数方法对于减少全球PSP总辐射表的辐照度测量中的不确定性非常有效。此外,还发现函数方法考虑了日射强度计的热偏移,从而无需进一步校正。在这项研究中获得的辐照度数据的改进将有助于提高太阳能评估和大气研究的准确性。

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