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Uncertainty of rotating shadowband irradiometers and Si-pyranometers including the spectral irradiance error

机译:旋转阴影带照射仪和Si-Pyranomets的不确定性,包括光谱辐照度误差

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摘要

Concentrating solar power projects require accurate direct normal irradiance (DNI) data including uncertainty specifications for plant layout and cost calculations. Ground measured data are necessary to obtain the required level of accuracy and are often obtained with Rotating Shadowband Irradiometers (RSI) that use photodiode pyranometers and correction functions to account for systematic effects. The uncertainty of Si-pyranometers has been investigated, but so far basically empirical studies were published or decisive uncertainty influences had to be estimated based on experience in analytical studies. One of the most crucial estimated influences is the spectral irradiance error because Si-photodiode-pyranometers only detect visible and color infrared radiation and have a spectral response that varies strongly within this wavelength interval. Furthermore, analytic studies did not discuss the role of correction functions and the uncertainty introduced by imperfect shading. In order to further improve the bankability of RSI and Si-pyranometer data, a detailed uncertainty analysis following the Guide to the Expression of Uncertainty in Measurement (GUM) has been carried out. The study defines a method for the derivation of the spectral error and spectral uncertainties and presents quantitative values of the spectral and overall uncertainties. Data from the PSA station in southern Spain was selected for the analysis. Average standard uncertainties for corrected 10 min data of 2 % for global horizontal irradiance (GHI), and 2.9 % for DNI (for GHI and DNI over 300 W/m²) were found for the 2012 yearly dataset when separate GHI and DHI calibration constants were used. Also the uncertainty in 1 min resolution was analyzed. The effect of correction functions is significant. The uncertainties found in this study are consistent with results of previous empirical studies.
机译:集中的太阳能电力项目需要准确的直接正常辐照度(DNI)数据,包括工厂布局和成本计算的不确定性规范。接地测量数据是获得所需的精度水平,并且通常使用旋转的阴影带照射器(RSI)获得,该旋转阴极颤动计和校正功能算用于系统效应。 Si-Pytanometers的不确定性已经调查,但到目前为止基本上出版了实证研究或基于分析研究经验估算的决定性影响。最重要的估计影响之一是光谱辐照度误差,因为Si-光电二极管 - 颤音计仅检测可见光和彩色红外辐射,并且具有在该波长间隔内强烈变化的光谱响应。此外,分析研究没有讨论校正功能的作用和不完美的阴影引入的不确定性。为了进一步提高RSI和Si-Pyranometer数据的存放性,已经进行了在测量中表达不确定度的指南(GUM)之后的详细不确定性分析。该研究定义了一种用于衍生光谱误差和光谱不确定性的方法,并且具有光谱和总体不确定性的定量值。选择了来自西班牙南部的PSA站的数据进行了分析。当单独的GHI和DHI校准常数单独时,为2012年年度数据集发现了全球水平辐照度(GHI)的平均标准不确定性,为全球水平辐照度(GHI)的2%和2.9%超过300W /m²)的数据用过的。还分析了1分钟分辨率的不确定性。校正功能的影响很大。本研究中发现的不确定性与以前的实证研究结果一致。

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