利用光谱功率分布法预测LED灯的流明和色度维持寿命

C. Qian, J. J. Fan, X. Fan, A. Chernyakov, G. Zhang
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引用次数: 9

摘要

本研究开发了一种基于光谱功率分布(SPD)的方法来分析和预测发光二极管(LED)灯的可靠性特性,如流明和色度维护寿命。通常,LED灯的整个SPD可以看作是不对称蓝光与荧光粉转换光谱的叠加,每一个都可以通过不对称高斯(AGaussian)模型进行拟合。在老化过程中,从LED灯的测试数据中提取分解后的SPD模型参数,进一步拟合到指数退化模型中。然后在任意时刻,通过预测LED灯的SPD,可以计算出流明维持φ和颜色坐标u'和v'。为了证明所提出的方法的应用,一批装有四个荧光粉转换白光LED (pc-白光LED)的10个LED PAR20灯在25°C下老化4000小时。并进行统计分析,计算φ和du'v'的上边界(5百分位)和下边界(95百分位)的中位数(50百分位)。结果表明,大部分实测的φ和du'v'都能被该模型预测的下边界曲线所包络。此外,利用所提出的方法和已发表的统计方法对φ曲线的预测结果都很好。最后,对流明和色度维持寿命预测的比较表明,在选定的测试样品中,光通量衰减失效可能是比色移更重要的问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lumen and chromaticity maintenance lifetime prediction for LED lamps using a spectral power distribution method
In this study, a spectral power distribution (SPD) based method is developed to analyze and predict reliability characteristics of Light Emitting Diode (LED) lamps, such as lumen and chromaticity maintenance lifetimes. Usually, an entire SPD of a LED lamp can be regarded as the superposition of an asymmetric blue with a phosphor converted spectrum, each of which can be fitted by an Asymmetric Gaussian (AGaussian) model. During the ageing process, the decomposed SPD model parameters extracted from the test data of a LED lamp are fitted further to an exponential degradation model. Then at any given time, the lumen maintenance φ and color coordinates u' and v' can be calculated by predicting the SPD of a LED lamp. In order to demonstrate the application of the proposed method, a batch of ten LED PAR20 lamps equipped with four phosphor converted white LEDs (pc-white LEDs) were aged at 25 °C for 4000 hours. And a statistical analysis was performed to calculate the median values (50 percentile) of φ and du'v' with both upper boundary (5 percentile) and lower boundary (95 percentile). The results show that most of the measured φ and du'v' can be enveloped within the lower boundary curves predicted by the proposed model. In addition, there is a good prediction result of the φ curves by using the proposed method and a published statistical method. At last, the comparison between lumen and chromaticity maintenance lifetime predictions shows that the luminous flux depreciation failure may be the primary concern than the color shift in the selected test samples.
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