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Damping of power swings in large-scale AC power system by simultaneous control of HVDC links and series FACTS devices

机译:通过同时控制HVDC链路和串联事实设备,通过同时控制大规模交流电力系统中电力摆动的阻尼

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The paper presents the algorithm of a simultaneous control of multiple HVDC links and series FACTS devices (such as phase angle regulator) to improve stability of an AC power system. The purpose of the study is to demonstrate that such stabilizing control, optimal from the perspective of the whole AC power system and insensitive to the loading condition and network configuration (robust control) may be clearly determined mathematically. The proposed method of control was derived using the direct Lyapunov method. The control system is a multi-loop control system using state variables as input signal, activated in the transient state and supplementary to the main steady-state control designed for regulating the power flow. Efficiency of the methods was confirmed with computer simulations. The algorithm perfectly damps the inter-area power swings, showing at this very high robustness to changes in network configuration, loading conditions. Moreover, the proposed control produces additive damping i.e. each controlled HVDC line and/or FACTS device contributes to positive damping in AC power system.
机译:本文介绍了多个HVDC链路和串联事实装置(如相角调节器)的同时控制的算法,以提高交流电力系统的稳定性。该研究的目的是证明这种稳定控制,从整个交流电力系统的角度最佳,并且可以在数学上清楚地确定对装载条件和网络配置(鲁棒控制)的不敏感的。使用Direct Lyapunov方法推导出拟议的控制方法。控制系统是使用状态变量作为输入信号的多环控制系统,在瞬态状态下激活,并补充专为调节功率流的主稳态控制。通过计算机模拟确认了该方法的效率。该算法完全抑制了区域间功率摇摆,在这种非常高的稳健性上显示了网络配置的变化,加载条件。此外,所提出的控制产生添加剂阻尼I.。每个受控的HVDC线和/或事实器件有助于AC电力系统的正阻阻尼。

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