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Wide-area damping control of power systems using clustering and FACTS-based redesigns

机译:使用聚类和基于FACTS的重新设计进行电力系统的广域阻尼控制

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In this paper we present a FACTS (Flexible AC Transmission Systems)-based control design for electromechanical oscillation damping in large power systems, facilitated by aggregate models that can be constructed using Synchronized phasor measurements. Our approach consists of three steps, namely — 1. Model Reduction, where Synchrophasors are used to identify second-order models of the oscillation clusters of the power system retaining the inter-ties on which FACTS devices such as Thyristor Controlled Series Compensators (TCSC) are installed, 2. Aggregate Control, where feedback controllers are designed to achieve a desired closed-loop transient response between every pair of clusters, and finally 3. Control Inversion, where the aggregate control design is distributed and tuned to actual TCSC controllers in the full-order model until its inter-area responses match the respective inter-machine responses of the reduced-order system. It is shown that the inversion problem can be posed equivalently as decomposing the swing dynamics into fast and slow states, and designing the controllers such that the slow dynamics can optimally track a desired closed-loop signal designed for the aggregate model.
机译:在本文中,我们提出了一种基于FACTS(柔性交流输电系统)的控制系统,用于大型电力系统中的机电振荡阻尼,可通过可使用同步相量测量构建的集合模型来促进控制。我们的方法包括三个步骤,即-1.模型简化,其中同步相量用于识别电力系统振荡簇的二阶模型,并保留诸如FACTS器件(如晶闸管控制串联补偿器(TCSC))之间的相互联系。安装完成; 2.集合控制,其中反馈控制器被设计为在每对集群之间实现所需的闭环瞬态响应,最后是3.控制反转,其中集合控制设计被分发并调整到实际的TCSC控制器中。全阶模型,直到其区域间响应与降阶系统的相应机器间响应匹配为止。结果表明,反演问题可以等效地摆成将摇摆动力学分解为快速和慢速状态,并设计控制器,使慢速动力学可以最佳地跟踪为总体模型设计的所需闭环信号。

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  • 来源
    《American Control Conference;ACC》|2012年|p.4446- 4451|共6页
  • 会议地点 Montreal(CA)
  • 作者

    Chakrabortty, Aranya;

  • 作者单位

    Electrical & Computer Engineering North Carolina State University;

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