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A Simplified SVM-Based Fault-Tolerant Strategy for Cascaded H-Bridge Multilevel Converters

机译:基于SVM的级联H-Bridge多级转换器的基于SVM的容错策略

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摘要

The cascaded H-bridge multilevel converter (CHMC) is a promising topology for medium- and high-voltage applications, as it features modularity and scalability. In this letter, a simplified space vector modulation (SVM)-based reconfiguration strategy is proposed to enable fault-tolerant operation of a CHMC. Assuming that the faulty power cells are bypassed, the proposed strategy decomposes the asymmetric CHMC into two parts, i.e., healthy part with healthy modules and unhealthy part with faulty modules. Consequently, the basic reference vector (BRV) and the remainder reference vector (RRV) are generated from the reference vector (RV) to achieve balanced line-to-line voltages and currents with optimized harmonic performance. The proposed strategy can be easily implemented online. Performance and effectiveness of the proposed strategy is verified by experimental results.
机译:级联H桥多电平转换器(CHMC)是一种有前途的中型和高压应用的拓扑,因为它具有模块化和可扩展性。在这封信中,提出了一种简化的空间矢量调制(SVM)的重新配置策略,以实现CHMC的容错操作。假设绕过了故障的电池,所提出的策略将不对称CHMC分解成两部分,即健康部分,具有健康的模块和不健康的模块。因此,基本参考向量(BRV)和剩余的参考矢量(RRV)由参考向量(RV)产生,以实现具有优化谐波性能的平衡线到线电压和电流。拟议的策略可以在线轻松实现。通过实验结果验证了拟议策略的性能和有效性。

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