Small-Signal Impedance Analysis of the Impact of Grid-Forming Controllers on their DC and AC Dynamics

Ishita Ray, L. Tolbert
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引用次数: 3

Abstract

Grid-forming converters have recently been gaining more interest as a viable alternative to replace bulk synchronous generation for supporting and sustaining medium to low voltage grids. While the ability of grid-connected converters to support bulk generation has been thoroughly investigated, the capacity and behavior of converters that would replace bulk generation are not well defined. In an inverter-dominated system with one or more grid-forming inverters, maintaining dc-link stability is equally, if not more, important as maintaining frequency stability. To this end, and to better understand the behavior of grid-forming converters with different types of controllers, this paper derives the small-signal models for converters with nested and single-loop control structures, and compares their input and output impedance characteristics with and without synchronization. The analysis of input impedance provides insight into the impact of each grid-forming converter controller on upstream (dc) elements such as the dc-link and non-stiff dc sources, while the analysis of output impedance provides insight into the interaction of the controller with downstream (ac) elements of the grid such as the line impedance and loads. The analytical results are verified using simulation and experimental measurements.
成网控制器对其直流和交流动力学影响的小信号阻抗分析
成网变流器作为支持和维持中低压电网的大量同步发电的可行替代方案,最近获得了更多的兴趣。虽然并网变流器支持批量发电的能力已经得到了深入的研究,但替代批量发电的变流器的容量和行为尚未得到很好的定义。在一个由一个或多个逆变器组成的逆变器主导的系统中,保持直流链路稳定性与保持频率稳定性同等重要,如果不是更重要的话。为此,为了更好地理解不同类型控制器下并网变换器的行为,本文推导了嵌套式和单环控制结构变换器的小信号模型,并比较了其在同步和不同步情况下的输入和输出阻抗特性。输入阻抗的分析可以深入了解每个电网形成转换器控制器对上游(dc)元件(如直流链路和非刚性直流电源)的影响,而输出阻抗的分析可以深入了解控制器与电网下游(ac)元件(如线路阻抗和负载)的相互作用。通过仿真和实验验证了分析结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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