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Power-Domain Impedance Theory for the Analysis and Mitigation of Interarea Oscillations

机译:用于分析和减轻Interraea振动的电力域阻抗理论

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This paper presents an impedance-based theory for the analysis and mitigation of interarea oscillations in power systems. Because low-frequency power system oscillations primarily manifest in phasor quantities, including active and reactive power flows, and the magnitude and frequency of bus voltages, a new-type of impedance, called power-domain impedance, is defined in terms of these phasor quantities. The power-domain impedance provides an intuitive framework for the analysis of interarea oscillations without requiring internal details of generators, and it is ideally suited for developing oscillation damping controls in inverter-based resources. The power-domain impedance theory is demonstrated in this paper using PSCAD simulations of a two-area system. The theory is also used for designing damping control in synchronous generators and a wind power plant in the two-area system.
机译:本文介绍了基于阻抗的理论,用于电力系统中的Interraea振动的分析和减轻。由于低频电源系统振荡主要清除在量量中,包括有源和无功流量,以及总线电压的幅度和频率,在这些量量量方面定义了一种名为Power-Diame阻抗的新型阻抗。功率域阻抗提供了一个直观的框架,用于分析Interraea振荡,而无需发生发电机的内部细节,并且非常适合在基于逆变器的资源中开发振荡阻尼控制。本文使用双区域系统的PSCAD模拟证明了功率域阻抗理论。该理论还用于在两域系统中的同步发电机和风力发电厂设计阻尼控制。

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