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New emerging voltage source converter for high-voltage application: hybrid multilevel converter with dc side H-bridge chain links

机译:用于高压应用的新型电压源转换器:具有直流侧H桥链节的混合多电平转换器

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摘要

Hybrid multilevel converters (HMCs) are more attractive than the traditional multilevel converters, such as modular converters, because they offer all the features needed in a modern voltage source converter-based dc transmission system with reduced size and weight, at a competitive level of semiconductor losses. Therefore this study investigates the viability of a HMC that uses dc side H-bridge chain links, for high-voltage dc and flexible ac transmission systems. In addition, its operating principle, modulation and capacitor voltage balancing, and control are investigated. This study focuses on response of this HMC to ac and dc network faults, with special attention paid to device issues that may arise under extreme network faults. Therefore the HMC with dc side chain links is simulated as one station of point-to-point dc transmission system that operates in an inversion mode, with all the necessary control systems incorporated. The major results and findings of subjecting this version of the hybrid converter to ac and dc networks faults are presented and discussed.
机译:混合多电平转换器(HMC)比传统的多电平转换器(例如模块化转换器)更具吸引力,因为它们提供了具有竞争力的半导体级别的,基于现代电压源转换器的直流传输系统所需的所有功能,具有减小的尺寸和重量。损失。因此,本研究调查了使用高压直流和柔性交流传输系统的直流侧H桥链链接的HMC的可行性。此外,还研究了其工作原理,调制和电容器电压平衡以及控制。这项研究的重点是该HMC对交流和直流网络故障的响应,并特别注意极端网络故障下可能出现的设备问题。因此,具有直流侧链链接的HMC被模拟为以反转模式运行的点对点直流传输系统的一个站点,并结合了所有必要的控制系统。介绍和讨论了使此版本的混合转换器遭受交流和直流网络故障的主要结果和发现。

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