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Algorithm for Fault-Tolerant Operation of Cascaded H-Bridge Multilevel Inverter

机译:级联H-Bridge多级逆变器容错运行算法

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This paper presents a fault-tolerance switching technique for operation of a three-phase cascaded H-bridge multilevel inverter topology during internal fault. The MLI has many switches involved during power conditioning, which increases the possibility of fault event occurrence. The most common reliability problem in MLIs are short circuit and open-switch fault in H-bridges during the operation. A quick and precise fault detection-isolation strategy improves the system reliability and also avoids the shutdown and mal operation of the load connected. The proposed algorithm uses the root mean square values of the H-bridge voltages as the diagnostic variable at the time of fault. The fault detection algorithm is simple and can detect the fault location accurately. In addition, the proposed algorithm is able to provide rated balanced output voltage during fault without adding any additional components within one cycle. The performance of the proposed algorithm and closed loop voltage control has been verified in MATLAB/Simulink environment for a three-phase seven level cascaded H-bridge multilevel inverter.
机译:本文介绍了内部故障期间三相级联H桥多级逆变器拓扑运行的容错交换技术。 MLI在功率调节过程中涉及许多交换机,这增加了故障事件发生的可能性。 MLIS中最常见的可靠性问题是在操作期间H桥的短路和开关故障。快速精确的故障检测隔离策略可提高系统可靠性,并避免了连接的负载的关机和弹性操作。所提出的算法使用H桥电压的根均方值作为故障时的诊断变量。故障检测算法简单,可以准确地检测故障位置。此外,所提出的算法能够在故障期间提供额定平衡输出电压,而无需在一个周期内添加任何附加组件。在MATLAB / SIMULINK环境中验证了所提出的算法和闭环电压控制的性能,用于三相七级级联H桥多级逆变器。

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