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Enhanced Hybrid Modular Multilevel Converter With Improved Reliability and Performance Characteristics

机译:增强的混合模块化多电平转换器,具有改进的可靠性和性能特征

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This paper proposes an enhanced hybrid modular multilevel converter (MMC), which utilizes a combination of half-bridge submodules (HBSM) and at least one full-bridge submodule (FBSM). In the proposed structure, FBSMs work with half of the HBSMs nominal voltage in each arm. Due to the presence of FBSMs, HBSMs switching frequency drops significantly, which reduces the converter power loss compared to half-bridge based MMCs. Furthermore, because of redundant FBSMs, (2N + 1)-modulation can be employed to generate the output voltage without increasing the circulating current, thus, the converter performance is improved notably. Besides, with the redundant FBSMs, the converter can continue its operation even if a fault occurs in one of HBSM switches. All the control procedure is accomplished using model predictive control strategy and performance of the proposed converter is verified by several simulation and experimental studies. The obtained results confirm the feasibility of the proposed scheme in reducing the converter loss, improving its performance and fault-tolerant operation.
机译:本文提出了一种增强的混合模块化多级转换器(MMC),其利用半桥子模块(HBSM)和至少一个全桥潜水线(FBSM)的组合。在所提出的结构中,FBSMS在每个臂中的HBSMS标称电压的一半工作。由于FBSMS的存在,HBSMS开关频率显着降低,与基于半桥的MMC相比,降低了转换器功率损耗。此外,由于冗余的FBSMS(2n + 1) - 可以采用制Modulation来产生输出电压而不增加循环电流,因此,显着的转换器性能得到改善。此外,通过冗余FBSMS,即使HBSM交换机中的一个发生故障,转换器也可以继续运行。所有控制程序都是使用模型预测控制策略完成的,并且通过若干模拟和实验研究验证所提出的转换器的性能。所获得的结果证实了提出的方案在降低转换器损失方面的可行性,提高其性能和容错操作。

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