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Predictive variable structure control and application in power systems

机译:预测变结构控制及其在电力系统中的应用

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A new predictive variable structure control (PVSC) using the phase plane is proposed and applied to the third-order nonlinear model of the uncertain single machine infinite bus system (SMIBS). Due to the discontinuity of the control switches, chattering in the traditional variable structure control is avoided in PVSC. Two global coordinate transformations are used to change SMIBS into a second-order model. The limits of the system's uncertainties are used for robustness. The control switches according to the predictive abscissa value of one point in the phase trajectory, which guarantees the trajectory enters a special area in the phase plane within limited time, remains in it and converges to the equilibrium point at an exponential rate. Simulation results show that the system can quickly converge to the original equilibrium point and that the control law is robust.
机译:提出了一种使用相平面的新型预测变结构控制(PVSC),并将其应用于不确定单机无限母线系统(SMIBS)的三阶非线性模型。由于控制开关的不连续性,在PVSC中避免了传统的可变结构控制中的抖动。使用两个全局坐标转换将SMIBS更改为二阶模型。系统不确定性的限制用于增强鲁棒性。控制根据相轨迹中某一点的预测横坐标值进行切换,以确保轨迹在有限的时间内进入相平面中的特定区域,并保持在其中并以指数速率收敛至平衡点。仿真结果表明,该系统可以快速收敛到原始平衡点,并且控制律鲁棒。

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