Implementation and analysis of a control scheme for damping of oscillations in VSC-based HVDC grids

S. D'arco, J. Suul, M. Molinas
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引用次数: 41

Abstract

This paper proposes a simple method for damping of oscillations in dc grids based on Voltage Source Converters (VSCs). The damping effect is achieved by a control loop for counteracting measured dc voltage oscillations by acting on the active current reference of the ac-side VSC controller. The design of the damping method is supported by participation factor analysis and parametric sensitivities of a small-signal model representing an investigated test case. This investigated system is consisting of a single HVDC converter station connected to a dc cable equivalent and an ac grid. The validity of the developed small-signal model is verified by comparison to a simulation model including nonlinear effects of the investigated converter configuration. The small-signal model is then used to analyze the stability and dynamic characteristics of the system with and without the proposed active damping and to identify a suitable tuning of the damping controller.
基于vsc的高压直流电网振荡阻尼控制方案的实现与分析
本文提出了一种基于电压源变换器(VSCs)的直流电网振荡阻尼方法。阻尼效果是通过控制回路通过作用于交流侧VSC控制器的有源电流基准来抵消测量的直流电压振荡来实现的。通过参与因子分析和一个小信号模型的参数灵敏度来支持阻尼方法的设计。本系统由一个高压直流换流站和一个交流电网组成。通过与包含所研究变换器结构非线性效应的仿真模型的对比,验证了所建立的小信号模型的有效性。然后利用小信号模型分析了系统在有主动阻尼和没有主动阻尼时的稳定性和动态特性,并确定了阻尼控制器的合适调谐。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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