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Robust Aggressive Load-Frequency Control of Networked Electric Power Systems

机译:网络电力系统的强大攻击负载频率控制

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This article addresses the design problem of aggressive load frequency controllers which are robust against load disturbances. The controller design is comprised of three components and the design is formulated as a multiobjective LMI optimization problem. The first component places the closed loop poles in a predefined convex LMI region while providing fast transient response and disturbance rejection. The second component implements the required integral action and determines the closed–loop bandwidth, while the third component places a limit on the control energy. H/mixed–sensitivity methodologies are employed in a state–space formulation leading to a tuning strategy with an engineering interpretation Simulation studies are offered to illustrate the efficiency of the control design.
机译:本文解决了侵蚀性负载频率控制器的设计问题,这是对负载扰动的强大。 控制器设计由三个组件组成,并且该设计被制定为多目标LMI优化问题。 第一组件将闭环极在预定义的凸起LMI区域中放置,同时提供快速瞬态响应和干扰抑制。 第二组件实现所需的积分作用并确定闭环带宽,而第三组件将限制放置在控制能量上。 H /混合敏感性方法在状态空间制剂中采用,导致具有工程解释仿真研究的调谐策略,以说明控制设计的效率。

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