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A Parameter Alternating VSG Controller of VSC-MTDC Systems for Low Frequency Oscillation Damping

机译:用于低频振荡阻尼的VSC-MTDC系统的参数交流VSG控制器

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The virtual synchronous generator (VSG) has been widely applied for mimicking the dynamic performance of a synchronous generator (SG) by power-electronic interfaced power sources. When the VSG is implemented in VSC-based multi-terminal direct current (VSC-MTDC) systems, the impact of VSG on both ac- and dc-grid dynamics, i.e., the low frequency oscillatory (LFO) modes and dc voltage stability should be taken into consideration. This paper investigates the participation of the VSG controller in low frequency oscillatory (LFO) modes and the impact on dc voltage stability. The influence of VSG parameters on the system dynamics is investigated by the Singular Value Decomposition (SVD) analysis and modal analysis. A parameter alternating VSG (AVSG) controller is proposed to improve the damping performance to LFO modes and mitigating the negative impact of VSG on dc voltage stability. The effectiveness of the proposed AVSG controller is validated according to the non-linear simulations on two test systems.
机译:虚拟同步发电机(VSG)已被广泛应用于通过电源接口电源模拟同步发电机(SG)的动态性能。当VSG在基于VSC的多终端直流(VSC-MTDC)系统中实现时,VSG对AC和DC-GRID动力学的影响,即低频振荡(LFO)模式和直流电压稳定性应该被考虑。本文调查了VSG控制器在低频振荡(LFO)模式中的参与以及对直流电压稳定性的影响。通过奇异值分解(SVD)分析和模态分析,研究了VSG参数对系统动态的影响。提出了一个参数交替VSG(AVSG)控制器,以将阻尼性能提高到LFO模式,并减轻VSG对直流电压稳定性的负面影响。根据两个测试系统的非线性模拟验证了所提出的AVSG控制器的有效性。

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