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The extended overlap alternate arm converter: a voltage source converter with DC fault ride-through capability and a compact design

机译:扩展重叠交替臂转换器:具有直流故障穿越能力和紧凑设计的电压源转换器

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摘要

The Alternate Arm Converter (AAC) was one of the first modular converter topologies to feature DC-side fault ride-through capability with only a small penalty in power efficiency. However, the simple alternation of its arm conduction periods (with an additional short overlap period) resulted in (i) substantial 6-pulse ripples in the DC current waveform, (ii) large DC-side filter requirements, and (iii) limited operating area close to an energy sweet-spot. This paper presents a new mode of operation called Extended Overlap (EO) based on the extension of the overlap period to 60 ◦ which facilitates a fundamental redefinition of the working principles of the AAC. The EO-AAC has its DC current path decoupled from the AC current paths, a fact allowing (i) smooth DC current waveforms, (ii) elimination of DC filters, and (iii) restriction lifting on the feasible operating point. Analysis of this new mode and EO- AAC design criteria are presented and subsequently verified with tests on an experimental prototype. Finally, a comparison with other modular converters demonstrates that the EO-AAC is at least as power efficient as a hybrid MMC (i.e. a DC fault ride-through capable MMC) while offering a smaller converter footprint because of a reduced requirement for energy storage in the submodules and a reduced inductor volume.
机译:备用臂转换器(AAC)是首批具有直流侧故障穿越功能且功率效率损失很小的模块化转换器拓扑之一。但是,其臂导通周期的简单交替(还有一个较短的重叠周期)会导致(i)直流电流波形中出现大量的6脉冲纹波,(ii)直流侧滤波器的要求较高,以及(iii)操作受限靠近能量最佳区域的区域。本文介绍了一种新的操作模式,称为扩展重叠(EO),它基于重叠周期的延长至60°,这有助于从根本上重新定义AAC的工作原理。 EO-AAC的直流电流路径与交流电流路径解耦,这一事实允许(i)平滑的直流电流波形,(ii)消除直流滤波器,以及(iii)限制可行的工作点。提出了这种新模式的分析和EO-AAC设计标准,并随后在实验原型上进行了测试验证。最后,与其他模块化转换器的比较表明,EO-AAC至少具有与混合MMC(即具有直流故障穿越功能的MMC)相同的功率效率,同时由于减少了对储能的需求,从而提供了更小的转换器占地面积子模块和减小的电感器体积。

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