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Hybrid modular multilevel converter with reduced three-level cells in hvdc transmission system

机译:高压直流输电系统中具有减少的三级单元的混合模块化多级转换器

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摘要

A hybrid MMC with reduced three-level (TL) cells is proposed. As well as the dc fault blocking capability, the proposed hybrid MMC provides the benefits of: lower conduction losses; fewer diode and switching devices, and; fewer shoot-through modes. Guidelines are developed to determine the required number of three-level cells to block a dc-side fault. It is also demonstrated that a further reduction in the number a three-level cells is possible if a rise in cell current and voltage is acceptable. This reduction is investigated. A lower number of three-level cells reduces losses and capital cost further. The hybrid MMC with the reduced number of three-level cells proves to be the most attractive approach compared with other MMCs and hybrid MMCs. The semiconductor count and conduction loss are 92.1% and 90.3% respectively of that of the MMC based entirely on full-bridge cells, without exposing the semiconductors to significant fault currents and over-voltages. The simulation results demonstrate the feasibility of the proposed hybrid converter.
机译:提出了具有减少的三级(TL)单元的混合MMC。除具有直流故障阻止功能外,拟议的混合MMC还具有以下优势:更低的传导损耗;二极管和开关器件更少;以及更少的直通模式。制定了指南,以确定阻止直流侧故障所需的三级电池数量。还表明如果电池电流和电压的增加是可以接受的,则三级电池的数量可以进一步减少。研究了这种减少。较少数量的三级单元可进一步减少损耗和资本成本。与其他MMC和混合MMC相比,三层单元数量减少的混合MMC被证明是最有吸引力的方法。完全基于全桥单元,半导体的数量和传导损耗分别为MMC的92.1%和90.3%,而不会使半导体遭受明显的故障电流和过电压。仿真结果证明了提出的混合变换器的可行性。

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