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An empirical validation of daylighting tools: Assessing radiance parameters and simulation settings in Ladybug and Honeybee against field measurements

机译:日光工具的经验验证:评估瓢虫和蜜蜂的辐射参数和仿真设置,反对现场测量

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摘要

Most of the new studies in Radiance rely on industry-accepted values for setting Radiance parameters. Although Radiance is validated against the analytical test cases of CIE 171:2006, there is no scientific basis for these settings. Therefore, the aim of this study is to assess the effect of Radiance parameters and model-related components on the accuracy of simulation results in Radiance by comparing field measurements and simulation results. This study uses a point by point illuminance comparison of simulation results and field measurements under an overcast sky with measured illuminance in HoneybeePlus version 0.0.04 which uses Radiance version 5.1. The accuracy is rechecked with three other measured illuminance levels at different times under the same sky. Furthermore, this study assesses the effect of simulation parameters and model settings on the accuracy of simulation results. Results show that the recommended Radiance settings for having accurate results are accurate enough with a bias below 15%. Setting ambient bounces to more than 8 and disabling interpolation by setting ambient accuracy to 0 does not significantly affect the simulation results. By disabling interpolation, Monte Carlo ray tracing provides accurate results for simple geometries. Moreover, +/- 0.1 difference in reflectance factors has a significant effect on the accuracy of results. This study makes a scientific basis for setting Radiance parameters and measuring reflectance factors in future studies. The outcome of this paper creates a validated model for future studies on shaders, light shelves, and related designable components that rely on daylight in general.
机译:光发射的大多数新研究依赖于行业接受的值来设置辐射参数。虽然辐射验证了CIE 171:2006的分析测试用例,但这些设置没有科学依据。因此,本研究的目的是通过比较现场测量和仿真结果,评估辐射参数和模型相关组分对模拟精度的影响。本研究使用了仿真结果的点照度比较,在阴天天空下的仿效和现场测量,在蜜蜂版本0.0.04中测量的照度,它使用Radiance 5.1。在同一天空下不同时间的三个其他测量照度水平重新检查。此外,该研究评估了模拟参数和模型设置对模拟结果精度的影响。结果表明,具有准确结果的推荐光线设置足以足够精确,偏差低于15%。将环境变为超过8个以上并通过将环境精度设置为0,禁用插值不会显着影响模拟结果。通过禁用插值,Monte Carlo Ray跟踪为简单的几何形状提供准确的结果。此外,反射因子的+/- 0.1差异对结果的准确性有显着影响。本研究为在未来的研究中设置光辐射参数和测量反射因子进行了科学依据。本文的结果为未来的着色器,轻质货架和相关的可名称组件依靠常规的历史,创造了验证的模型。

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