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Sequence Impedance Modeling and Stability Comparative Analysis of Voltage-Controlled VSGs and Current-Controlled VSGs

机译:电压控制的VSG和电流控制的VSG的序列阻抗建模和稳定性比较分析

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摘要

The premise that the virtual synchronous generator (VSG) can actively support the weak grid is that the VSG can operate stably. In this paper, the small-signal sequence impedance models of the voltage-controlled VSG and the current-controlled VSG are built and the sequence impedance characteristics of these two types of VSGs are compared and analyzed. The sequence impedance of the voltage-controlled VSG, being consistent with the grid impedance characteristics, is generally inductive. By contrast, the sequence impedance of the current-controlled VSG is mainly negative impedance in the middle- and high-frequency area and the impedance amplitude is quite low. Based on the built sequence impedance models and the impedance stability criterion, the influence of the weakness of the grid on the stability of these two types of VSG grid-connected system is analyzed. The results of stability analysis show that the current-controlled VSG is prone to instability while the voltage-controlled VSG remains stable. Therefore, the voltage-controlled VSG is more suitable than the current-controlled VSG for grid-connected renewable energy generation in an ultraweak grid from the point of view of system stability. Finally, experiment results validate the stability analysis.
机译:虚拟同步发电机(VSG)可以主动支持弱电网的前提是VSG可以稳定运行。本文建立了电压控制的VSG和电流控制的VSG的小信号序列阻抗模型,并对这两种类型的VSG的序列阻抗特性进行了比较和分析。与电网阻抗特性一致的压控VSG的顺序阻抗通常是感性的。相比之下,电流控制的VSG的顺序阻抗在中高频区域主要为负阻抗,并且阻抗幅度非常低。基于建立的序列阻抗模型和阻抗稳定准则,分析了电网弱点对这两类VSG并网系统稳定性的影响。稳定性分析结果表明,电流控制的VSG容易不稳定,而电压控制的VSG则保持稳定。因此,从系统稳定性的角度来看,在超弱电网中,电压控制的VSG比电流控制的VSG更适合于并网可再生能源发电。最后,实验结果验证了稳定性分析。

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