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Optimization of Thermal Management by Integration of an SCGM, a Finite-Element Method, and an Experiment on a High-Power LED Array

机译:通过集成SCGM,有限元方法和大功率LED阵列的实验优化热管理

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摘要

This paper proposes an original idea to minimize heat concentrations of high-power light-emitting diode (LED) arrays. The purpose of this paper is to investigate temperature distribution with and without an optimal process of high-power LED arrays by experiment and a numerical method in order to achieve an optimal design of LED arrays for thermal management. This paper develops an effective method to design each LED position for decreasing thermal concentrations in high-power LED arrays. In this paper, temperature profiles are measured by a thermal infrared camera and a thermocouple and compared with simulated results under different power. The optimal method is adopted by a simplified conjugate gradient method combined with a finite-element method. This method proves reliability of simulated results in advance. Through this optimal method, efficiency of heat removal will be enforced as an extra cooling device is added. The important part is that this optimal design will not affect brightness through an illumination analysis.
机译:本文提出了一种使高功率发光二极管(LED)阵列的热量集中最小化的原始想法。本文的目的是通过实验和数值方法研究有无大功率LED阵列的最佳工艺的温度分布,以实现用于热管理的LED阵列的最佳设计。本文提出了一种有效的方法来设计每个LED位置,以降低大功率LED阵列中的热量集中。在本文中,通过红外热像仪和热电偶测量温度曲线,并将其与不同功率下的模拟结果进行比较。通过简化的共轭梯度法与有限元法相结合来采用最优方法。该方法预先证明了仿真结果的可靠性。通过这种最佳方法,将增加一个额外的冷却设备,从而提高散热效率。重要的是,这种最佳设计不会通过照明分析影响亮度。

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