Extension and Tuning of Virtual Synchronous Machine to Avoid Oscillatory Instability in Isolated Power Networks

M. Ippolito, R. Musca, G. Zizzo, M. Bongiorno
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引用次数: 6

Abstract

The risk of oscillatory instability introduced by virtual synchronous machines (VSM) control in isolated power networks is investigated. The considered control is a common scheme widely studied in literature, in several configurations and for different case studies. The impact of the VSM control on the system stability is examined for the existing power network of a Mediterranean island. The VSM control is implemented within the power converters interfacing the energy storage systems (ESS) installed in the network. Simulations and analysis show the occurrence of oscillatory instability in the system, with the ESS-VSM and the synchronous machines of the network progressively swinging against each other. The reasons of the instability are identified as the lack of damping in the system and the adverse interaction between the VSM converter control and the synchronous machine dynamics. The possibility of extending the VSM control with a corrective action for the stabilization of the system is analyzed and discussed. A proper tuning procedure of the extended control is also provided.
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避免孤立电网振荡不稳定的虚拟同步机扩展与调谐
研究了孤立电网中虚拟同步机控制引起的振荡失稳风险。考虑的控制是文献中广泛研究的一种常见方案,在几种配置和不同的案例研究中。以地中海某岛屿现有电网为例,研究了VSM控制对系统稳定性的影响。VSM的控制实现在与网络中安装的ESS (energy storage system)相连接的电源变换器内部。仿真和分析表明,系统出现振荡不稳定性,网络中的ESS-VSM和同步机逐渐相互摆动。不稳定的原因被确定为系统中缺乏阻尼和VSM变换器控制与同步电机动力学之间的不良相互作用。分析和讨论了用校正动作扩展VSM控制以稳定系统的可能性。并给出了扩展控制的适当调谐程序。
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