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Modeling of Sensor Faults in Power Electronics Inverters and Impact Assessment on Power Quality

机译:电力电子逆变器传感器故障建模及电能质量影响评价

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Sensors are crucial for the operation of power electronics converters. Voltage and current sensors, widely used in power electronic converter systems, are prone to malfunction or failure mainly due to varying environmental conditions, broken connectors, and ageing of electronic circuit components. Therefore, it is important to characterize the behavior of these sensors under a number of possible faulty conditions and study their impact on the performance of the system. Further, the distinct behavior of such sensors, under different fault types, encourages us to correlate them with the generic fault models. In this paper, a root cause analysis for each type of sensor fault is presented and experimental validation for five fault models is performed, where the parameters of key components in the power electronics voltage and current sensor are intentionally modified to emulate a specific type of fault. Moreover, the impact of each fault on the power quality of Grid Side Converter (GSC) under various types and magnitudes of sensor faults are assessed and validated experimentally. The results of this work are useful to ensure the design for the reliability approach in power electronics converters and provide an assessment of the impact of a sensor failure in the overall operation of power electronics converters. Further, the impact of sensor faults in the overall operation of a power electronics converters give some directions to design algorithms that can improve the reliability and robustness of the power electronics converters.
机译:传感器对于电力电子转换器的运行至关重要。电压和电流传感器广泛用于电力电子转换器系统,易于发生故障或故障,主要是由于不同的环境条件,断路器和电子电路组件老化。因此,重要的是在许多可能的错误条件下表征这些传感器的行为,并研究其对系统性能的影响。此外,在不同故障类型下,这种传感器的不同行为促使我们将它们与通用故障模型相关联。在本文中,提出了对每种类型的传感器故障的根本原因分析,并进行了五种故障模型的实验验证,其中有意修改了电力电子电压和电流传感器中的关键部件参数以模拟特定类型的故障。此外,通过实验评估和验证各种类型的电网侧转换器(GSC)功率质量对电网侧转换器(GSC)的影响。这项工作的结果可用于确保电力电子转换器中可靠性方法的设计,并对传感器故障的影响进行评估在电力电子转换器的整体运行中。此外,传感器故障在电力电子转换器的整体运行中的影响提供了一些方向,可以设计算法,可以提高电力电子转换器的可靠性和鲁棒性。

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