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Nonlinear dynamic analysis and surface sliding mode controller based on low pass filter for chaotic oscillation in power system with power disturbance

机译:基于低通滤波器的功率系统混沌振荡的非线性动力学分析和表面滑动模式控制器

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摘要

Chaotic oscillation in the power system often poses a great threat to the stability of the power grid, and the dynamic behaviors of fourth-order power system with power disturbance, which is more in line with the actual situation, are investigated firstly through Lyapunov exponent spectrums and bifurcation diagrams. It is found that the power system with power disturbance has more complex dynamic behaviors and larger domains of chaos. The disturbance terms also result in dynamic behaviors different from those of power system without disturbance, which sometimes brings system motions to period orbits with perturbation-related parameters limited in specific range. Moreover, a dynamic surface sliding mode controller with low pass filter is designed for chaotic suppression, and the relay characteristic function is selected as switching function to inhibit high-frequency chattering. Numerical simulations show that the sliding mode controller owns good effectiveness and strong robustness.
机译:电力系统中的混沌振荡经常对电网的稳定性构成很大威胁,并且第四阶电力系统具有电力干扰的动态行为,首先通过Lyapunov指数频谱来研究实际情况。 和分叉图。 发现具有电力干扰的电力系统具有更复杂的动态行为和更大的混沌域。 干扰术语还导致与没有干扰的电力系统不同的动态行为,这有时会使系统动作与特定范围内有限的扰动相关参数带来的周期轨道。 此外,具有低通滤波器的动态表面滑动模式控制器被设计用于混沌抑制,并且中继特性功能被选择为开关功能以抑制高频抖动。 数值模拟表明滑模控制器拥有良好的效果和强大的鲁棒性。

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