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Fault-Tolerant Control of Cascaded H-Bridge Converters Using Double Zero-Sequence Voltage Injection and DC Voltage Optimization

机译:级联H桥转换器的容错控制,采用双零序电压注入和直流电压优化

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摘要

Cascaded H-Bridge (CHB) converters can be directly connected to medium-voltage grids without using transformers and they possess the advantages of large capacity and low harmonics. They are significant tools for providing grid connections in large-capacity renewable energy systems. However, the reliability of a grid-connected CHB converter can be seriously influenced by the number of power switching devices that exist in the structure. This paper proposes a fault-tolerant control strategy based on double zero-sequence voltage injection and DC voltage optimization to improve the reliability of star-connected CHB converters after one or more power units have been bypassed. By injecting double zero-sequence voltages into each phase cluster, the DC voltages of the healthy units can be rapidly balanced after the faulty units are bypassed. In addition, optimizing the DC voltage increases the number of faulty units that can be tolerated and improves the reliability of the converter. Simulations and experimental results are shown for a seven-level three-phase CHB converter to validate the efficiency and feasibility of this strategy.
机译:级联H桥(CHB)转换器无需使用变压器即可直接连接到中压电网,并且具有大容量和低谐波的优点。它们是在大容量可再生能源系统中提供电网连接的重要工具。但是,并网CHB转换器的可靠性会受到结构中存在的功率开关器件数量的严重影响。本文提出了一种基于双零序电压注入和直流电压优化的容错控制策略,以在旁路一个或多个功率单元后提高星形连接的CHB转换器的可靠性。通过将双零序电压注入到每个相簇中,可以在旁路故障单元后迅速平衡健康单元的直流电压。另外,优化直流电压会增加可以容忍的故障单元的数量,并提高转换器的可靠性。显示了一个七电平三相CHB转换器的仿真和实验结果,以验证该策略的效率和可行性。

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