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Calibration and Measurement Uncertainty Estimation of Radiometric Data

机译:辐射数据的校准和测量不确定度估计

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Evaluating the performance of photovoltaic cells, modules, and arrays that form large solar deployments relies on accurate measurements of the available solar resource. Therefore, determining the accuracy of these solar radiation measurements provides a better understanding of investment risks. This becomes especially important as deployment size and investment costs grow to hundreds of millions of dollars. The accuracy of measurements is also important for acceptance testing and operations. Radiometers such as pyranometers are used to measure global horizontal irradiance or plane of array irradiance, whereas pyrheliometers are used to measure direct normal irradiance. Currently, most radiometric data users rely on manufacturers' specifications of calibration uncertainty to quantify the uncertainty of measurements. However, the accuracy of solar radiation measured by radiometers depends not only on the specifications of the instrument but also on the (a) calibration procedure, (b) measurement conditions and maintenance, and (c) environmental conditions. Therefore, statements about the overall measurement uncertainty can be made only on an individual basis, taking all relevant factors into account. This paper provides guidelines and recommended procedures for estimating the uncertainty in calibrations and measurements by radiometers using methods that follow the Guide to the Expression of Uncertainty (GUM). Standardized analysis based on these procedures ensures that the uncertainty quoted is well documented.
机译:评估形成大型太阳能部署的光伏电池,模块和阵列的性能依赖于可用太阳能资源的精确测量。因此,确定这些太阳辐射测量的准确性提供了更好地理解投资风险。这变得尤为重要,因为部署规模和投资成本增长到数亿美元。测量的准确性对于接受测试和操作也很重要。诸如显烟区的辐射仪用于测量全局水平辐照度或阵列辐照度,而纤维仪用于测量直接正常辐照度。目前,大多数辐射数据用户依赖于制造商的校准不确定性规范来量化测量的不确定性。然而,通过辐射仪测量的太阳辐射的精度不仅取决于仪器的规格,而且取决于(a)校准程序,(b)测量条件和维护,以及(c)环境条件。因此,关于整体测量不确定性的陈述只能在个人基础上进行,以考虑所有相关因素。本文提供了指导方针和推荐程序,用于使用辐射计的方法估算校准和测量的校准和测量的不确定性,这些方法使用遵循指南来表达不确定的方法(口香糖)。基于这些程序的标准化分析可确保引用的不确定性被充分记录。

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