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Performance characteristics of a perforated shadow band under clear sky conditions

机译:晴空条件下穿孔阴影带的性能特征

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A perforated, non-rotating shadow band is described for separating global solar irradiance into its diffuse and direct normal components using a single pyranometer. Whereas shadow bands are normally solid so as to occult the sensor of a pyranometer throughout the day, the proposed band has apertures cut from its circumference to intermittently expose the instrument sensor at preset intervals. Under clear sky conditions the device produces a saw tooth waveform of irradiance data from which it is possible to reconstruct separate global and diffuse curves. The direct normal irradiance may then be calculated giving a complete breakdown of the irradiance curves without need of a second instrument or rotating shadow band. This paper describes the principle of operation of the band and gives a mathematical model of its shading mask based on the results of an optical ray tracing study. An algorithm for processing the data from the perforated band system is described and evaluated. In an extended trial conducted at NREL's Solar Radiation Research Laboratory, the band coupled with a thermally corrected Eppley PSP produced independent curves for diffuse, global and direct normal irradiance with low mean bias errors of 5.6 W/m~2, 0.3 W/m~2 and -2.6 W/m~2 respectively, relative to collocated reference instruments. Random uncertainties were 9.7 W/m~2 (diffuse), 17.3 W/m~2 (global) and 19.0 W/m~2 (direct). When the data processing algorithm was modified to include the ray trace model of sensor exposure, uncertainties increased only marginally, confirming the effectiveness of the model. Deployment of the perforated band system can potentially increase the accuracy of data from ground stations in predominantly sunny areas where instrumentation is limited to a single pyranometer.
机译:描述了一种穿孔的,非旋转的阴影带,该阴影带用于使用单个日射强度计将全球太阳辐照度分为其漫射和直接法向分量。阴影带通常是实心的,以便在一整天内遮盖日射强度计的传感器,而建议的带则具有从其圆周切开的孔,以预设间隔间歇地暴露仪器传感器。在晴朗的天空条件下,该设备会产生辐照度数据的锯齿波形,从中可以重构出单独的全局曲线和漫射曲线。然后可以计算直接法向辐照度,从而无需辐照仪器或旋转阴影带就可以完全分解辐照度曲线。本文描述了波段的工作原理,并基于光线跟踪研究的结果给出了其遮光罩的数学模型。描述并评估了一种用于处理来自穿孔带系统的数据的算法。在NREL太阳辐射研究实验室进行的一项扩展试验中,该波段与经过热校正的Eppley PSP结合,产生了独立的曲线,用于散射,全局和直接法向辐照度,平均偏差分别为5.6 W / m〜2、0.3 W / m〜相对于并置参考仪器分别为2和-2.6 W / m〜2。随机不确定度为9.7 W / m〜2(扩散),17.3 W / m〜2(全局)和19.0 W / m〜2(直接)。当修改数据处理算法以包括传感器曝光的光线跟踪模型时,不确定性仅略有增加,从而证实了该模型的有效性。多孔带系统的部署可以潜在地提高在仪器仅限于一个日射强度计的主要晴天地区地面站的数据准确性。

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