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Evaluation of Blue Light Hazard of Luminaires by Spline Function Fitting

机译:用样条函数配件评估灯具的蓝光危险

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White LEDs are usually excited by blue light. The wide spread use of LED table lamps, made people pay more and more attention to blue light hazard of luminaires. In fact, blue light harms human retina only if irradiation exceeds a certain limit. The problem is therefore to precisely characterize the blue light hazard of a luminaire. In general, blue light hazard is amenable to measurements, but the corresponding detection schemes are complex and expensive. In order to overcome this issue, we put forward a mathematical fitting method to evaluate blue light hazard. It consists of fitting the spectrum of a lamp using spline functions to obtain the lamp brightness. At the same time, spline function approach is also used to obtain the weight function expression of blue light hazard starting from data listed in IEC/EN62471. Finally, a blue light hazard function with wavelength as an independent variable is introduced. The damage due to blue light exposure may be then evaluated by integrating this function. In this way, as long as the absolute light power spectrum of a luminaire is known, quantification of blue light hazard may be directly obtained without measurements. Our method provides a convenient technique to evaluate and analyze the safety level of lamps before production. In order to assess the reliability of our method, we use it to evaluate the blue light hazard of two lamps, which belong to IEC/EN62471 safety level RG0 and RG1 respectively. Results are in good agreement with those measured by authoritative departments. In this way, evaluation of blue light hazard may be obtained by the knowledge of absolute physical properties of the source, a feature which definitely provides an optional approach to assess the photobiological safety of LED lamps.
机译:白光灯通常由蓝光兴奋。 LED台灯的广泛散布使用,让人们越来越多地关注蓝光危险的灯具。实际上,只有在辐射超过一定限度时,蓝光才会损害人类视网膜。因此,问题是精确地表征了灯具的蓝光危险。通常,蓝色光危险可用于测量,但相应的检测方案是复杂且昂贵的。为了克服这个问题,我们提出了一种数学拟合方法来评估蓝光危险。它包括使用样条型函数拟合灯的光谱来获得灯泡亮度。同时,样条函数方法还用于获得从IEC / EN62471中列出的数据开始的蓝光危险的重量函数表达。最后,介绍了具有波长作为独立变量的蓝色光危险功能。然后可以通过集成该功能来评估由于蓝光曝光引起的损坏。以这种方式,只要已知灯具的绝对光功率谱,就可以在没有测量的情况下直接获得蓝光危险的量化。我们的方法提供了一种方便的技术来评估和分析生产前灯的安全水平。为了评估我们方法的可靠性,我们使用它来评估两个灯的蓝光危险,分别属于IEC / EN62471安全水平RG0和RG1。结果与权威部门衡量的结果吻合良好。以这种方式,通过对源的绝对物理性质的知识可以获得对蓝光危害的评估,该特征肯定提供了评估LED灯的光生物安全性的可选方法。

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