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The Alternate Arm Converter: A New Hybrid Multilevel Converter With DC-Fault Blocking Capability

机译:备用臂转换器:具有直流故障阻止功能的新型混合多电平转换器

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摘要

This paper explains the working principles, supported by simulation results, of a new converter topology intended for HVDC applications, called the alternate arm converter (AAC). It is a hybrid between the modular multilevel converter, because of the presence of H-bridge cells, and the two-level converter, in the form of director switches in each arm. This converter is able to generate a multilevel ac voltage and since its stacks of cells consist of H-bridge cells instead of half-bridge cells, they are able to generate higher ac voltage than the dc terminal voltage. This allows the AAC to operate at an optimal point, called the “sweet spot,” where the ac and dc energy flows equal. The director switches in the AAC are responsible for alternating the conduction period of each arm, leading to a significant reduction in the number of cells in the stacks. Furthermore, the AAC can keep control of the current in the phase reactor even in case of a dc-side fault and support the ac grid, through a STATCOM mode. Simulation results and loss calculations are presented in this paper in order to support the claimed features of the AAC.
机译:本文介绍了一种新的用于HVDC应用的转换器拓扑(称为交流电臂转换器(AAC)),并在仿真结果的支持下说明了其工作原理。它是由于存在H桥单元而在模块化多级转换器与两级转换器(每个支路中的导向开关形式)之间的混合体。该转换器能够产生多电平交流电压,并且由于其电池堆由H桥电池而不是半桥电池组成,因此它们能够产生比直流端子电压更高的交流电压。这使AAC可以在交流电和直流电相等的最佳点工作,即“最佳点”。 AAC中的导向器开关负责交替每个臂的导通时间,从而显着减少堆叠中电池的数量。此外,即使在直流侧发生故障的情况下,AAC也可以通过STATCOM模式保持对相电抗器中电流的控制,并支持交流电网。本文提供了仿真结果和损耗计算,以支持AAC要求保护的功能。

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