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Diagnosing Lumen Depreciation in LED Lighting Systems: An Estimation Approach

机译:诊断LED照明系统的流明衰减:一种估算方法

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Lumen depreciation, the condition that the light output falls below a fraction of its peak output, is known to be the main failure mode in light emitting diodes (LEDs). In lighting systems comprising multiple LEDs, lumen depreciation leads to reduced average illuminance and a distorted illumination rendering. Diagnosing lumen depreciation in LED lighting systems is thus an important problem. We propose an estimation approach to diagnosing individual LED failures using a photosensor system. We specifically study the impact of perturbations in the photosensor positions on diagnosability by analyzing the sensor output matrix—the matrix relating the luminous flux values of the multiple LEDs to the measurements at the photosensor system. The conditions on diagnosability are first derived in terms of bounds on the smallest singular value of the sensor output matrix. Subsequently, sufficient conditions are derived on the photosensor positions to ensure that individual LED lumen depreciations are diagnosable. Numerical results are provided to validate our analytical results.
机译:流明折旧是光输出下降到其峰值输出的一小部分以下的条件,已知是发光二极管(LED)的主要故障模式。在包括多个LED的照明系统中,流明降低导致平均照度降低和照明渲染失真。因此,诊断LED照明系统中的流明衰减是一个重要的问题。我们提出了一种使用光电传感器系统诊断单个LED故障的估算方法。我们通过分析传感器输出矩阵(该矩阵将多个LED的光通量值与光电传感器系统的测量值相关联)来专门研究光电传感器位置的摄动扰动对可诊断性的影响。首先根据传感器输出矩阵的最小奇异值的界限导出可诊断性条件。随后,在光电传感器位置上获得了足够的条件,以确保可以诊断出各个LED流明的下降。提供了数值结果以验证我们的分析结果。

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