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Analysis and Damping Control of Small-Signal Oscillations for VSC Connected to Weak AC Grid During LVRT

机译:LVRT期间连接到弱交流电网的VSC的小信号振荡的分析和阻尼控制

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The instability issues of grid-connected voltage source converters (VSC) may easily occur during low voltage ride-through (LVRT), especially when connected to a weak ac grid. In this study, a small-signal model of the grid-connected VSC system was developed to deal with the stability problems during deep voltage sags. Based on the model, the interaction between the phase-locked loop (PLL) and current control has been illustrated. In addition, the eigenvalue and modal analysis method was employed to investigate the influencing factors of the VSC system stability, which include the bandwidths of the PLL and current control loop, grid strength, and voltage sags. Furthermore, on the basis of the interaction between PLL and current control loop, a novel additional damping controller that is placed in the active current control loop was proposed and designed. Finally, experiments were conducted to verify the theoretical analysis and proposed control strategy for enhancing VSC system stability during LVRT with a high impedance grid connection.
机译:在低压穿越(LVRT)期间,尤其是当连接至弱交流电网时,并网电压源转换器(VSC)的不稳定性问题很容易发生。在这项研究中,开发了一个并网VSC系统的小信号模型来处理深电压骤降期间的稳定性问题。基于该模型,说明了锁相环(PLL)和电流控制之间的相互作用。此外,采用特征值和模态分析方法研究了VSC系统稳定性的影响因素,包括PLL的带宽和电流控制环路,电网强度和电压骤降。此外,基于锁相环和电流控制回路之间的相互作用,提出并设计了一种新型的附加阻尼控制器,该控制器置于有源电流控制回路中。最后,进行了实验以验证理论分析和提出的控制策略,以提高高阻抗电网连接的LVRT期间VSC系统的稳定性。

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