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Accelerated Degradation Test Investigation for Life-Time Performance Analysis of LED Luminaires

机译:LED灯具寿命时间绩效分析加速降解试验研究

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摘要

LED luminaires are a common lighting source used in general lighting application as they are energy-efficient and long-lasting. However, the reliability of an LED luminaire is not well established, and no standard method for estimating the performance of an LED luminaire is developed. This article presents an investigation to understand the performance of LED luminaires at the accelerated degradation test (ADT) condition and analyzes the reliability of LED luminaires. An LED luminaire has two subsystems, an LED light engine and the LED constant current driver that are subjected to ADT, and the light engine factors, lumen output, and Duv changes are analyzed. Similarly, the driver output stage electrolytic capacitor capacitance and equivalent series resistance (ESR) are estimated. The study of continuous operation in time and study when subjected to switching cycles to quantify reliability in terms of operating cycles is performed. All four key parameters-lumen maintenance, Duv, capacitance, and ESR-are estimated up to their specified threshold and reliability is analyzed. The LED light engine lumen output is found to degrade very quickly compared with other factors. LED luminaire failure at ADT is mainly due to lumen depreciation followed by color shift and, after significant intervals of time and cycles, the driver capacitor ESR follows as reason for the failure of the LED luminaire. A scanning electron microscope (SEM) energy dispersive spectroscopy (EDS) analysis is performed on the LED package, and results show that LED silver (Ag) mirror tarnish is the main reason for a significant reduction in light output.
机译:LED照明器是一般照明应用中使用的常见照明源,因为它们是节能和持久的亮度。然而,LED灯具的可靠性不确定,并且没有开发用于估计LED照明器性能的标准方法。本文提出了了解在加速降解测试(ADT)条件下了解LED照明器的性能,并分析LED照明器的可靠性。 LED灯具具有两个子系统,LED灯发动机和经过ADT的LED恒流驱动器,并分析了光发动机因子,腔输出和DUV变化。类似地,估计驾驶员输出级电解电容器电容和等效串联电阻(ESR)。进行了在时间和研究中进行连续操作的研究,当进行切换周期以量化操作周期方面的可靠性。所有四个关键参数 - 流明维护,DUV,电容和ESR - 估计为指定的阈值,分析可靠性。与其他因素相比,发现LED灯发动机管腔输出速度很快。 ADT的LED灯具故障主要是由于腔折旧之后是颜色移位,并且经过显着的时间间隔和周期间隔,驱动器电容ESR是因为LED照明器失败的原因。在LED封装上进行扫描电子显微镜(SEM)能量分散光谱(EDS)分析,结果表明,LED银(AG)镜子玷污是光输出显着降低的主要原因。

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