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首页> 外文期刊>Photonics Journal, IEEE >Two-Part Gauss Simulation of Phosphor-Coated LED
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Two-Part Gauss Simulation of Phosphor-Coated LED

机译:磷涂层LED的两部分高斯模拟

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摘要

Gauss simulation is an effective tool for designing light-emitting-diode (LED) light sources. This paper proposes a new two-part Gauss simulation model to simulate a YAG:Ce phosphor-coated LED (PC-LED). This model divides the emission spectra of YAG:Ce phosphor into two parts, and they use different half spectral widths in the Gauss function to accurately simulate the spectra of YAG:Ce PC-LED. The simulated spectra are similar to the measured spectra of packaged LEDs; most correlated color temperature (CCT) error is less than 4%, color rendering index (CRI) error is less than 2, and luminous efficacy of radiation (LER) error is less than 3% for simulation results. This is a vast improvement on an ordinary single Gauss simulation model. Using the model to analyze the combination of common blue LED and YAG:Ce phosphor helps the design of new white LEDs.
机译:高斯仿真是设计发光二极管(LED)光源的有效工具。本文提出了一个新的由两部分组成的高斯仿真模型,用于模拟YAG:Ce磷光涂层LED(PC-LED)。该模型将YAG:Ce荧光粉的发射光谱分为两部分,并且它们在高斯函数中使用不同的半光谱宽度来精确模拟YAG:Ce PC-LED的光谱。模拟光谱与封装LED的实测光谱相似;对于仿真结果,最相关的色温(CCT)误差小于4%,显色指数(CRI)误差小于2,辐射的发光效率(LER)误差小于3%。这是对普通单高斯仿真模型的巨大改进。使用该模型分析常见的蓝色LED和YAG:Ce荧光粉的组合有助于设计新的白色LED。

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