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Short-circuit current of grid-connected voltage source converters: Multi-timescale analysis method

机译:并网电压源转换器的短路电流:多时标分析方法

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Grid-connected voltage-source converters (VSCs) exhibit very different short-circuit behaviors from synchronous generators (SGs). This paper analyzes the short-circuit current (SCC) of VSC, especially considering the typical vector control strategy and the transient control scheme during grid fault. The SCC characteristics are obtained in multi-timescale, including both AC current control and DC voltage control timescales. Further, a simple SCC expression is obtained similar to the sub-transient and transient processes of traditional SG. In addition, the influences of different controllers' parameters and fault degree on the SCC characteristics are discussed. The analytical results are helpful to understand the stress distribution of power electronics devices and design of relay protection in power systems with high penetration of wind/solar power generations that are integrated into grid via VSCs.
机译:并网电压源转换器(VSC)的短路行为与同步发电机(SG)完全不同。本文分析了VSC的短路电流(SCC),特别是考虑了典型的矢量控制策略和电网故障期间的瞬态控制方案。 SCC特性是在多个时间范围内获得的,包括交流电流控制和直流电压控制时间范围。此外,类似于传统SG的子瞬变和瞬变过程,可以获得简单的SCC表达式。此外,还讨论了不同控制器的参数和故障程度对SCC特性的影响。分析结果有助于了解电力电子设备的应力分布,以及通过VSC将高发电量的风能/太阳能发电渗透到电网中的电力系统中的继电保护设计。

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