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Data regression on sphere for luminance map creation from sky scanner measurements

机译:球面数据回归以通过天空扫描仪测量创建亮度图

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Sky luminance distribution acquired by a whole-sky scanner has well-known constraints in resolution because of the restricted field of view and limited number of measured sky elements. The interpolating methods on measured data can significantly reduce the uncertainties of the scanners to create more accurate sky luminance maps depending on the mathematical approach. The general lack of many regressions is their low adaptability to significant sky luminance changes, e.g. on the cloud edges or near the sun disk. Three regression methods like inverse distance to a power, smoothing splines on the sphere and hybrid adaptive splines were tested on real skies measured with a self-made portable spectral sky scanner. Data regressions are compared and verified by the luxmeter in terms of calculated diffuse horizontal illuminance. (C) 2015 Elsevier Ltd. All rights reserved.
机译:由于视野有限和测量的天空元素数量有限,全天扫描仪获取的天空亮度分布在分辨率方面具有众所周知的限制。对测量数据的插值方法可以显着减少扫描仪的不确定性,从而根据数学方法创建更准确的天空亮度图。许多回归的普遍缺乏是它们对明显的天空亮度变化的适应性低,例如在云边缘或太阳盘附近。在用自制的便携式光谱天空扫描仪测量的真实天空上,测试了三种回归方法,例如与功率的反距离,球面上的平滑样条线和混合自适应样条线。照度计根据计算的漫射水平照度对数据回归进行比较和验证。 (C)2015 Elsevier Ltd.保留所有权利。

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