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Decentralized nonlinear coordinated excitation and steam valve adaptive control for multi-machine power systems

机译:多机动力系统的分散非线性协调激励与蒸汽阀自适应控制

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摘要

In this paper, a decentralized nonlinear coordinated excitation and steam valve adaptive control combined with a modified high-order sliding mode differentiator is designed for multi-machine power system stability enhancement. The proposed control scheme is based on Lyapunov's direct method and requires only local information on the physically available measurements of relative angular speed, active electric power and terminal voltage with the assumption that the power angle and mechanical power input are not available for measurement. Each synchronous generator is considered as a classical fifth order model that includes turbine dynamics. The simplicity of the proposed scheme and its robustness with respect to large perturbations, change in operating point and parameter uncertainties constitute the main positive features. Simulation results in the case of the Kundur 4-machines 2-area power system show the effectiveness, robustness and superiority of the proposed scheme over the classical AVR/PSS. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文设计了一种分散非线性非线性协调激励和汽阀自适应控制结合改进的高阶滑模微分器,以提高多机电力系统的稳定性。提出的控制方案基于李雅普诺夫(Lyapunov)的直接方法,并且仅需要有关相对角速度,有功功率和端电压的物理可用测量的本地信息,并假设无法测量功率角和机械功率输入。每个同步发电机都被视为包含涡轮动力学的经典五阶模型。所提出的方案的简单性及其在较大扰动,工作点变化和参数不确定性方面的鲁棒性构成了主要的积极特征。在Kundur 4机2区域电力系统的情况下的仿真结果表明,与传统的AVR / PSS相比,该方案的有效性,鲁棒性和优越性。 (C)2015 Elsevier Ltd.保留所有权利。

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