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Modeling of Time Domain Analysis for Single and Double Open-Circuit Inverter Switch Faults in Three-Phase Induction Motor Drives

机译:三相感应电动机驱动器中单双开路逆变器开关故障时域分析模拟

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摘要

In recent years, most of the induction motor applications require inverter-based drives for a more efficient and precise speed control. Nonetheless, the use of power electronics came with an increased possibility of the drive failure, mainly caused by the switching device itself. To address this reliability issue, various methods have been widely discussed for inverter fault detection and localization (FDL). The development process of the FDL algorithms often involve some fairly complicated mathematical models. Hence, this work is intended to present an approach of utilizing MATLAB and Simulink software to assist in the process of simulating the induction motor drive operation under healthy and faulty inverter conditions. Twenty-one combinations of open-circuit fault are simulated, the data are then used for FDL specifically using time domain current vector trajectory analysis. The simulation results show that the model produces the expected fault signature and the FDL algorithm is capable to distinguish each different condition with the detection speed of around one fundamental phase current period even under variable load operation.
机译:近年来,大多数感应电机应用需要基于逆变器的驱动器,以获得更有效和精确的速度控制。尽管如此,电力电子器件的使用随着驱动器故障的可能性而增加,主要由开关装置本身引起。为解决这种可靠性问题,已广泛讨论各种方法以用于变频器故障检测和定位(FDL)。 FDL算法的开发过程通常涉及一些相当复杂的数学模型。因此,这项工作旨在提供利用MATLAB和SIMULINK软件来帮助在健康和故障逆变器条件下模拟感应电动机驱动操作的过程的方法。模拟了二十一组合的开路故障,然后使用时域电流矢量轨迹分析专门用于FDL的数据。仿真结果表明,该模型产生预期的故障签名,即使在可变负载操作下,FDL算法也能够将每个不同条件与围绕一个基本相电流时段的检测速度区分。

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