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Research note: The accuracy of the mean spherical semi-cubic illuminance approach for determining scalar illuminance

机译:研究报告:意思是球形的准确性semi-cubic照度的方法来确定标量照度

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In a previous study comparing alternative approaches for determining scalar illuminance from cubic illuminance data, the approach using mean spherical semi-cubic illuminances (representing the positive and the negative x-, y-, z-axes) was found to have the highest accuracy. However, this approach, referred to as Approach 2, becomes less accurate as more point sources are introduced into the scene. This research note reports the results of calculations of additional scenes with up to 20 point sources so as to evaluate the accuracy limit of the said approach, in comparison with the original approach using vector and symmetric components as proposed by Cuttle (Approach 1). It is concluded that for a very large number of point sources, the mean and standard deviation of the ratio between the calculated and the true scalar illuminance using Approach 2 will converge respectively to 0.86 and 0.015. Approach 2 in general yields more accurate predictions of scalar illuminance only when the number of sources is small. Overall, Approach 1 is to be preferred for its consistency.
机译:在之前的研究中比较另类方法确定标量照度从立方照度数据,使用的方法意思是球形semi-cubic照度(代表积极的和消极的x -,y、z轴)被发现有最高的准确性。方法2,变得不那么准确点来源是引入现场。研究报告中报告计算的结果额外的场景20点光源,以评估精度的限制与原有的方法,相比方法使用向量和对称的组件提出的墨鱼(方法1)。结论对于大量的点光源,平均值和标准偏差的比例计算和真正的标量照度使用方法2可以收敛分别为0.86和0.015。一般的收益率更准确的预测标量照度只有当的数量小源。首选的一致性。

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