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The role of spectral response of photosensors in daylight responsive systems

机译:光电传感器的光谱响应在日光响应系统中的作用

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Lighting control technologies using photosensors have a great potential for energy savings in areas with high levels of daylight. Although the proper application of these controls can exploit this potential, unfortunately, it has been accomplished in a small percentage of new projects. One reason is the difficulty in justification of energy savings, which in turn, is directly linked with the simulation of the behaviour of these lighting controls. The core of these systems is the photosensor, which adjusts the electric light output in proportion to the amount of the daylight that detects, using its spatial and spectral response. The aim of this study is to quantify the impact of photosensor spectral response on its illuminance values, by taking into account various daylight spectra as these are modified due to various types of coloured glazing. Five commercial photosensors were selected and their spectral response was measured. In addition, spectral transmittance of 16 commercial types of glazing was measured as well. Using these data, a set of simulations were performed using three colour channels in a typical office room and the relative differences in illuminance - and thus energy savings - among the photosensors are presented. The results show that differences are significant ranging from 36 to 118%, a fact that can affect the estimated payback period of a lighting control system.
机译:使用光传感器的照明控制技术在日光高的地区具有巨大的节能潜力。尽管适当地使用这些控件可以挖掘这种潜力,但不幸的是,只有一小部分新项目已实现了这种潜力。原因之一是难以证明节能的合理性,而这又直接与模拟这些照明控件的行为有关。这些系统的核心是光电传感器,该光电传感器利用其空间和光谱响应,与检测到的日光量成比例地调整电光输出。这项研究的目的是通过考虑各种日光光谱来量化光传感器光谱响应对其照度值的影响,这些日光光谱由于各种类型的彩色玻璃而被修改。选择了五个商用光电传感器,并测量了它们的光谱响应。另外,还测量了16种商业类型的玻璃的光谱透射率。利用这些数据,在一个典型的办公室房间中使用三个颜色通道进行了一组模拟,并提出了光传感器之间的相对照度差异-从而节省了能源。结果表明,差异很大,范围从36%到118%,这可能会影响照明控制系统的估计投资回收期。

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