虚拟同步机控制与虚拟电阻增强短路能力

Christoph Glockler, D. Duckwitz, Friedrich Welck
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引用次数: 16

摘要

电力电子变流器在可再生能源发电中所占份额的增加对电力系统的稳定性提出了挑战。对于非常高的份额,最先进的电流控制方法应该被网格形成控制方案所取代。虚拟同步机(VSM)方法是一种网格形成方法,与传统的基于同步机的发电厂完全兼容。同步电机的高故障电流也被复制并导致半导体的额定电流过高。在故障发生时,电流控制可以再次应用,但在最需要的时候,电流控制失去了成网特性。我们提出了一个具有虚拟电阻的VSM,在保持网格形成功能的同时减少故障电流。对于最严重的故障,峰值电流幅值降低到标称电流的2.5倍。详细研究了摆动模式和高频稳定性。这些结果已被实验证实。通过虚拟电阻器的应用,可以大大降低过流要求和元件成本。尽管如此,需要增加硬件的电流额定值来处理严重故障。应进行系统研究,以在系统层面上确认该方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Virtual synchronous machine control with virtual resistor for enhanced short circuit capability
Increasing shares of power electronic converters in renewable generation challenge power system stability. For very high shares the state of the art current-control approach should be replaced by grid forming control schemes. The virtual synchronous machine (VSM) approach is grid forming and fully compatible to conventional synchronous-machine-based power plants. The high fault currents of synchronous machines are also replicated and lead to excessive current ratings of the semiconductors. Current control could be applied again during faults, however the grid-forming property is lost when it is most needed. We propose a VSM with a virtual resistor that reduces fault currents while the grid forming functionality is maintained. For the most severe fault the peak current amplitude is reduced to 2.5 times the nominal current. Swing mode and high-frequency stability is investigated in detail. The results have been confirmed by experiments. The over-current requirements and thus component cost can be reduced drastically through the application of a virtual resistor. Nonetheless, an increased current rating of the hardware is required to handle severe faults. System studies should be performed to confirm the method on system level.
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