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Design and validation of a compact embedded photometric device for real-time daylighting computing in office buildings

机译:紧凑型嵌入式测光设备的设计和验证,可用于办公大楼中的实时日光计算

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Studies have shown that the exposure to daylight can have substantial visualon-visual benefits for building occupants. To optimise daylighting provision while maintaining a comfortable visual environment, daylighting control systems have been investigated by architectural design and academic research for a number of years. However, real-time regulation of daylighting in buildings requires transient daylighting simulation with high accuracy and, daylighting simulation, as performed to date, is significantly impacted by the employed sky luminance distribution models which only crudely reproduce the real sky characteristics due to oversimplification and limited luminance sampling inputs.In this paper, an embedded photometric device is proposed to combine high dynamic range (HDR) imaging based high-resolution sky luminance monitoring with quasi real-time on-board daylighting computing, composed of a low-cost image sensor and a field programmable gate array (FPGA) micro-processor. A deliberate calibration procedure of the whole imaging system, regarding its spectral response (spectral correction error f1 = 8.89%), vignetting effect and signal response, was formulated and validated experimentally. The device was made to measure a wide luminance range (150 dB) including that of the direct solar disk, sky vault, and landscape simultaneously. Finally, experiments during predominant clear and overcast sky conditions were conducted respectively to assess its performance in daylighting simulation, both qualitatively and quantitatively. The experimental results demonstrated its quality in solar tracking as well as its capability to reduce daylighting simulation error to 1/7 similar to 1/3 of that of a common practice using the conventional Perez all-weather sky model for workplane illuminance calculation in office buildings.
机译:研究表明,暴露在日光下可以对建筑居民产生实质性的视觉/非视觉益处。为了在保持舒适的视觉环境的同时优化日光供应,已经进行了多年的建筑设计和学术研究,研究了日光控制系统。然而,建筑物中日光的实时调节需要高精度的瞬态日光模拟,并且迄今为止所采用的日光模拟受到所采用的天空亮度分布模型的极大影响,由于过度简化和局限性,该模型仅粗略地再现了真实的天空特征本文提出了一种嵌入式测光设备,该设备将基于高动态范围(HDR)成像的高分辨率天空亮度监控与准实时机载日光计算相结合,该设备由低成本图像传感器和现场可编程门阵列(FPGA)微处理器。制定并通过实验验证了整个成像系统的校准程序,该程序涉及其光谱响应(光谱校正误差f1 = 8.89%),渐晕效果和信号响应。该设备可同时测量较宽的亮度范围(150 dB),包括直接太阳盘,天穹和景观的亮度范围。最后,分别在主要晴天和阴天条件下进行了实验,以定性和定量评估其在采光模拟中的性能。实验结果证明了其在太阳跟踪方面的质量以及将日光模拟误差降低到1/7的能力,这与使用常规Perez全天候天空模型进行办公楼工作面照度计算的常规做法的1/3相似。 。

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