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Fault Tolerant Control of DC-Link Voltage Sensor for Three-Phase AC/DC/AC PWM Converters

机译:三相AC / DC / AC PWM转换器的直流链路电压传感器的容错控制

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摘要

In this paper, a fault detection scheme for DC-link voltage sensor and its fault tolerant control strategy for three-phase AC/DC/AC PWM converters are proposed, where the Luenberger observer is applied to estimate the DC-link voltage. The Luenberger observer is based on a converter model, which is derived from the voltage equations of a grid-side converter and the power balance on a DC link. A fault of the voltage sensor is detected by comparing the measured value of the DC-link voltage with the estimated one. When a sensor fault is detected, a fault tolerant control strategy is performed, where the estimated DC-link voltage is used for the feedback control. The estimation error from the observer is about 1.5 V, which is sufficiently accurate for feedback control. In addition, it is shown that the observer performance is robust to parameter variations of the converter. The validity of the proposed method has been verified by simulation and experimental results.
机译:本文提出了一种用于直流母线电压传感器的故障检测方案及其针对三相AC / DC / AC PWM转换器的容错控制策略,其中采用Luenberger观测器来估计直流母线电压。 Luenberger观测器基于转换器模型,该转换器模型是从电网侧转换器的电压方程式和DC链路上的功率平衡得出的。通过将直流母线电压的测量值与估算值进行比较,可以检测到电压传感器的故障。当检测到传感器故障时,将执行容错控制策略,其中将估计的直流母线电压用于反馈控制。来自观察者的估计误差约为1.5 V,对于反馈控制而言足够准确。另外,示出了观察者的表现对于转换器的参数变化是鲁棒的。仿真和实验结果验证了该方法的有效性。

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