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Limits and artefacts of reflective imaging goniophotometers for complex solar facade systems

机译:反射式太阳能测角光度计在复杂太阳能立面系统中的局限性和伪像

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The design of systems for solar light collection, modulation and/or distribution requires a thorough knowledge of their optical properties. The angular distribution of the scattered incident light flux, described by the Bidirectional Scattering Distribution Function (BSDF), can be measured with a step-by-step scanning goniophotometer but requires considerable time, especially when aiming at high angular resolution over a wide range and numerous incidence angles like in typical solar applications. Considerably faster measurements can be achieved with a so-called imaging goniophotometer, which simultaneously measures light fluxes in all scattered directions by dispatching them over different portions of a two-dimensional sensor array. In this contribution, we revisit the widely accepted principle of a reflective imaging goniophotometer (RIG), which is based on a hemispherical (or ellipsoidal) mirror and a fisheye camera. Specifically developed ray-tracing tools allowed us to obtain accurate figures relative to the influence of key design parameters on angular resolution. Our calculations reveal that the measurement accuracy is too low for samples larger than a few tens of millimeters. Most importantly, we found significant limitations and artefacts in the angular-to-spatial mapping function inherent to the RIG principle, which generally severely bias BSDF measurements.
机译:设计用于太阳光收集,调制和/或分配的系统需要对它们的光学特性有透彻的了解。双向散射分布函数(BSDF)描述的散射入射光束的角度分布可以通过逐步扫描测角光度计进行测量,但是需要相当长的时间,尤其是在大范围内实现高角度分辨率时,尤其如此。像典型的太阳能应用中一样有许多入射角。使用所谓的成像测角光度计可以实现相当快的测量,该成像测角光度计通过将它们分配在二维传感器阵列的不同部分上,同时测量所有散射方向上的光通量。在此贡献中,我们将回顾基于半球形(或椭圆形)反射镜和鱼眼镜头的反射式成像测角光度计(RIG)的广泛接受的原理。专门开发的光线跟踪工具使我们可以获得相对于关键设计参数对角分辨率的影响的准确数字。我们的计算表明,对于大于几十毫米的样品,测量精度太低。最重要的是,我们发现RIG原理固有的角度到空间映射功能存在明显的局限性和伪影,这些功能通常会严重影响BSDF的测量。

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