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Stability Analysis and Capacity Distribution of Multi-paralleled Current-Controlled Inverters and Voltage-Controlled VSGs Grid-Connected System

机译:多并联电流控制逆变器的稳定性分析和电压控制VSGS网格连接系统的容量分布

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The large-scale access of current-controlled inverters (CCIs) has caused weak grids and a series of instability issues. On the contrary, because of can actively support the weak grid, voltage-controlled VSGs (VC-VSGs) have become a potential choice for high-penetration renewable energy power generation. Multi-paralleled CCI and VC-VSG grid-connected systems (MCVGSs) are account for an increasing proportion of the distributed generation systems. This paper focused on the influence of short-circuit capacity ratio (SCR) and VC-VSG capacity ratio (VSGCR) on the MCVGS small-signal stability. Then, this paper proposes an SCR-based VC-VSG capacity distribution method, which can determine the VC-VSG capacity required to maintain a certain MCVGS stability margin in a weak grid. Finally, simulation results validate the analysis and the proposed method.
机译:电流控制的逆变器(CCIS)的大规模访问引起了薄网格和一系列不稳定问题。 相反,由于可以主动支持弱电网,电压控制的VSG(VC-VSG)已成为高渗透可再生能源发电的潜在选择。 多并行CCI和VC-VSG网格连接系统(MCVGS)占分布式发电系统的增加。 本文侧重于短路容量比(SCR)和VC-VSG容量比(VSGCR)对MCVGS小信号稳定性的影响。 然后,本文提出了一种基于SCR的VC-VSG容量分配方法,其可以确定在弱网格中维持某个MCVGS稳定性余量所需的VC-VSG容量。 最后,仿真结果验证了分析和所提出的方法。

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