Analysis of Thermal and Luminous Performance of MR-16 LED Lighting Module

W. Chi, T. Chou, Cheng-Nan Han, Shin-Yueh Yang, K. Chiang
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引用次数: 43

Abstract

Light emitting diode (LED) with a long lifetime, low power consumption, and low pollution has been successfully applied in many products. However, due to its low electro-optical conversion efficiency, high percentage of input power transformed to redundant heat, thus increasing the LED temperature. This phenomenon decreases the luminous flux, changing light color, and useful life span of LED. Therefore, thermal management becomes an important issue in high power LED. In this paper, the variation of luminous flux and light color for different LED lighting modules under long time operation has been measured and discussed. In addition, a detailed finite element model of LED lighting module, MR-16, with a corresponding input power and suitable boundary conditions is established by using the ANSYS finite element analysis program. Furthermore, to validate the simulation results, the current-voltage-temperature method for characterization of a diode is utilized to measure the junction temperature of LED chip indirectly and compare with simulation results. After the simulation is validated, various thermal performance assessments under the different design parameters of the LED package and lighting module are also investigated in this paper. The methodology and analysis results of this paper can provide a guideline for the LED lighting module such as MR-16 design in the future.
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MR-16 LED照明模组的散热及发光性能分析
发光二极管(LED)具有长寿命、低功耗、低污染等优点,已成功应用于许多产品中。然而,由于其电光转换效率低,输入功率转化为冗余热量的比例很高,从而提高了LED的温度。这种现象降低了LED的光通量,改变了光色,降低了LED的使用寿命。因此,热管理成为大功率LED的一个重要问题。本文对不同LED照明模组在长时间工作下的光通量和光色变化进行了测量和讨论。此外,利用ANSYS有限元分析程序建立了具有相应输入功率和合适边界条件的LED照明模块MR-16的详细有限元模型。此外,为了验证仿真结果,采用电流-电压-温度表征二极管的方法间接测量LED芯片的结温,并与仿真结果进行比较。仿真验证后,本文还研究了LED封装和照明模块在不同设计参数下的各种热性能评估。本文的方法和分析结果可以为今后MR-16等LED照明模块的设计提供指导。
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