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A Gain-Scheduled State Feedback Control Method For The Transcient Stability Control of A Single-Machine Infinite-Bus Power System

机译:单机无穷大电力系统暂态稳定控制的增益调度状态反馈控制方法

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In this paper, a new approach is proposed for the transient stability control of a single-machine infinite-bus power system. The proposed method is based on the concept of linear parameter varying (LPV) model and linear matrix inequality (LMI) based gain-scheduling control. It is well-known that when the disturbances are large, the nonlinearity inherent in the power system can no longer be ignored and the performance of closed-loop system designed based on linear approximation degrades severely in such case. Here, we propose a control method which handles the nonlinear model directly and is able to assign the convergence rate. First, we show that the nonlinear model can be transformed into an LPV system with the rotor angle as the time-varying parameter. Then, a gain-scheduled controller is designed by using the gain-scheduling control method. In particular, the input saturation is taken into consideration in the design. Simulation results verify that the proposed method is effective
机译:本文提出了一种用于单机无限母线电力系统暂态稳定控制的新方法。所提出的方法基于线性参数变化(LPV)模型和基于线性矩阵不等式(LMI)的增益调度控制的概念。众所周知,当扰动较大时,电力系统固有的非线性将不再被忽略,在这种情况下,基于线性逼近设计的闭环系统的性能会严重下降。在这里,我们提出一种控制方法,该方法可以直接处理非线性模型,并且能够指定收敛速度。首先,我们证明了可以将非线性模型转换为以转子角为时变参数的LPV系统。然后,通过使用增益调度控制方法来设计增益调度控制器。特别是在设计中要考虑输入饱和度。仿真结果验证了该方法的有效性。

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