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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Fault detection and diagnosis algorithms for HV-LED lamp driven by segmented linear solution using first-order difference calculation and peak-detection methods
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Fault detection and diagnosis algorithms for HV-LED lamp driven by segmented linear solution using first-order difference calculation and peak-detection methods

机译:使用一阶差分计算和峰值检测方法通过分段线性解决方案驱动的HV-LED灯故障检测和诊断算法

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摘要

Fault detection and diagnosis (FDD) algorithms based on first-order difference calculation and peak-detection methods for HV-LED lamp driven by segmented linear solution is proposed. The proposed FDD algorithms analyze the illuminance fluctuation characteristics of HV-LED lamp, and then identify whether the HV-LED lamp occurs fault or not and confirm the fault-type. The proposed FDD algorithms can be divided into five steps: illuminance signal smoothing, illuminance signal process using first-order difference calculation, difference-value sequence smoothing, peak detection of difference-value sequence, and fault-type recognition. Taking the HV-LED lamp driven by four-segment linear driver for example, the illuminance data sets of the fault-free and three different faults are investigated for algorithm verification experiments. The experimental results demonstrate the proposed FDD algorithms can effectively detect and diagnose the fault-type of HV-LED lamp driven by segmented linear driver, and locate the faulty HV-LED sub-strings.
机译:提出了基于由分段线性解决方案驱动的HV-LED灯的一阶差分计算和峰值检测方法的故障检测和诊断(FDD)算法。所提出的FDD算法分析了HV-LED灯的照度波动特性,然后识别HV-LED灯是否发生故障并确认故障类型。所提出的FDD算法可分为五个步骤:照度信号平滑,照度信号过程使用一阶差值计算,差值序列平滑,差值序列的峰值检测和故障类型识别。通过例如由四段线性驱动器驱动的HV导向灯,例如,研究了无故障和三种不同故障的照度数据集以进行算法验证实验。实验结果证明了所提出的FDD算法可以有效地检测和诊断由分段线性驱动器驱动的HV导向灯的故障型,并定位故障的HV-LED子字符串。

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