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TCSC wide-area damping controller to enhance the damping of inter-area oscillation for power systems with considering the time delay of wide-area signals

机译:TCSC广域阻尼控制器,通过考虑广域信号的时间延迟来增强电力系统的域间振荡的阻尼

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The aim of this paper is to investigate the design method of robust thyristor controlled series capacitor (TCSC) wide-area damping controller (WADC) to enhance the stability of power system with considering time delay of wide-area signals. Although wide-area measurement system (WMAS) is being widely applied to monitor and control the interconnected power systems, which can enable the use of measured signals from remote locations for centralized control purpose, the impact of time delays introduced by remote signal transmission and processing in WAMS cannot be ignored. So this paper describes the TCSC wide-area damping controller design problem of power system as a public time-delay feedback control problem. Based on the established time-delay power system model, the TCSC wide-area damping controller is proposed by the free-weighting matrices method, which is expressed with a set of linear matrix inequality (LMI) constraints, and the pole placement method. Finally, the simulation results on a two-area four-machine test system are illustrated by comparing with various time delays of wide-area signals. It demonstrates that the designed TCSC damping controller not only inhibits inter-area oscillation evidently, but also is robust to various time delays.
机译:本文旨在研究鲁棒晶闸管控制串联电容器(TCSC)广域阻尼控制器(WADC)的设计方法,以考虑广域信号的时延来增强电力系统的稳定性。尽管广域测量系统(WMAS)已广泛应用于监视和控制互连的电源系统,这可以使远程位置的测量信号用于集中控制目的,但远程信号传输和处理会引入时延的影响在WAMS中不能忽略。因此,本文将电力系统的TCSC广域阻尼控制器设计问题描述为公共时滞反馈控制问题。基于已建立的时延电力系统模型,通过自由加权矩阵法(以一组线性矩阵不等式(LMI)约束表示)和极点布置法,提出了TCSC广域阻尼控制器。最后,通过与广域信号的各种时间延迟进行比较,说明了在两区域四机测试系统上的仿真结果。结果表明,所设计的TCSC阻尼控制器不仅明显抑制了区域间振荡,而且对各种时间延迟具有鲁棒性。

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