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Hybrid Multilevel Converter With Cascaded H-bridge Cells for HVDC Applications: Operating Principle and Scalability

机译:用于HVDC应用的具有级联H桥单元的混合多电平转换器:工作原理和可扩展性

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摘要

Hybrid multilevel converters are contemplated in an attempt to optimize the performance of voltage source converters in terms of magnitude of semiconductor losses and converter footprint, and to achieve additional features such as dc short circuit proof, which is essential for a high integrity multiterminal HVDC grid. Therefore, this paper considers an emerging hybrid cascaded converter that offers the dc side short circuit proof feature at reduced loss and footprint compared to the existing multilevel and other hybrid converters. Its operating principle, modulation, and capacitor voltage balancing strategies are described in detail. Furthermore, hybrid converter scalability to high voltage applications is investigated. The validity of the modulation and capacitor voltage strategy presented are confirmed using simulation and experimentation. The hybrid cascaded converter is extendable to a large number of cells, making it applicable to high voltage applications, and operation is independent of modulation index and power factor. On these ground, the converter is expected to be applicable for both real and reactive power applications.
机译:考虑了混合多电平转换器,以试图就半导体损耗的大小和转换器占位面积来优化电压源转换器的性能,并实现诸如直流短路证明之类的附加功能,这对于高完整性多端子HVDC电网是必不可少的。因此,本文考虑了一种新兴的混合级联转换器,与现有的多级和其他混合转换器相比,该转换器可提供直流侧短路保护功能,并减少了损耗和占用的空间。详细描述了其工作原理,调制和电容器电压平衡策略。此外,还研究了混合转换器对高压应用的可扩展性。仿真和实验证实了所提出的调制和电容器电压策略的有效性。混合级联转换器可扩展到大量单元,使其适用于高压应用,并且其操作不受调制指数和功率因数的影响。因此,该转换器有望同时适用于有功和无功应用。

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