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Quantitative Analysis of Full Spectrum LEDs for High Quality Lighting

机译:高品质照明全谱LED的定量分析

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With the latest progress in new generation of phosphor and packaging design, higher quality, full spectrum, white LEDs become possible. By engineering the spectrum power distribution (SPD), we have developed full spectrum light sources and proposed methods for evaluating thelight sources' color quality, spectral continuity, and eye-safety. The spectral continuity, which is termed as Cs, quantifies the color quality of a light source in comparison to the reference illuminants. The calculation is based on a spectral area coincidence between the measured light source and the reference light source. In order to provide a guidance of minimizing harmful blue light of a spectral power distribution of a LED, we also defined the hazard blue light ratio which is termed as Br and formulated by combining the methods used by IEC/EN 62471 standard and TUV Rheinland. Several approaches of creating full spectrum LEDs have been studied and evaluated from aspects including color rendering index (CRI), IES TM-30-15, spectral continuity Cs, blue light hazard ratio Br. These assessments provide a helpful method to guide the optimization of future light sources.
机译:随着新一代磷光体和包装设计的最新进展,质量更高,全谱,白光LED成为可能。通过工程频谱配电(SPD),我们开发了全谱光源和提出的方法,用于评估语音质量,光谱连续性和眼睛安全。频谱连续性,被称为c s ,与参考光伏膜相比,量化光源的颜色质量。该计算基于测量的光源和参考光源之间的光谱区域重合。为了提供最小化LED光谱配电的有害蓝光的指导,我们还定义了被称为B的危险蓝光比 r 并通过组合IEC / EN 62471标准和TUV Rheinland使用的方法配制。已经研究了创建全谱LED的几种方法,并从包括颜色渲染指数(CRI),IES TM-30-15,光谱连续性C的方面进行了评估和评估 s ,蓝光危险比b r 。这些评估提供了一种有用的方法,以指导未来光源的优化。

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