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Feedback-linearization and feedback-feedforward decentralized control for multimachine power system

机译:多机电源系统的反馈线性化和反馈前馈分散控制

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摘要

In this paper a decentralized nonlinear controller for large-scale power systems is investigated. The proposed controller design is based on the input-output feedback linearization methodology. In order to overcome computational difficulties in adopting such methodology, the overall interconnected nonlinear system, given as n-order, is analyzed as a cascade connection of an n_1 -order nonlinear subsystem and an n_2-order linear subsystem. The controller design is obtained by applying input-output feedback linearization to the nonlinear subsystem and adopting a tracking control scheme, based on feedback-feedforward technique, for the linear subsystem. In the assumed system model, which is characterised by an interconnected structure between generating units, a decentralised adaptive controller is implemented by decentralizing these constraints. The use of a totally decentralised controller implies a system performance decay with respect to performance when the system is equipped with a centralised controller. Fortunately, the robustness of the proposed controller, based on input-output feedback procedure, guarantees good performance in terms of disturbance even when disturbances are caused by decentralization of interconnection constraints. Test results, provided on the IEEE 30 bus test system, demonstrate the effectiveness and practical applicability of proposed methodology.
机译:本文研究了一种用于大型电力系统的分散非线性控制器。所提出的控制器设计基于输入-输出反馈线性化方法。为了克服采用这种方法的计算困难,将整体互连的非线性系统(n阶)分析为n_1阶非线性子系统和n_2阶线性子系统的级联。控制器设计是通过将输入输出反馈线性化应用于非线性子系统并采用基于反馈前馈技术的线性子系统跟踪控制方案而获得的。在以发电单元之间的互连结构为特征的假设系统模型中,通过分散这些约束条件来实现分散的自适应控制器。当系统配备了集中式控制器时,使用完全分散的控制器意味着系统性能相对于性能下降。幸运的是,基于输入输出反馈程序的控制器的鲁棒性,即使在干扰是由互连约束分散引起的情况下,也能保证良好的干扰性能。 IEEE 30总线测试系统上提供的测试结果证明了所提出方法的有效性和实际适用性。

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