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Tracking Control of Chaotic Systems via Optimized Active Disturbance Rejection Control

机译:通过优化主动干扰抑制控制的混沌系统跟踪控制

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For tracking control of chaotic systems, we develop an active disturbance rejection (ADR) control method. Using the first state of the system as the only available state, a time-varying bandwidth extended state observer reconstructs the remaining states and the total disturbance. A time-varying bandwidth feedback controller forces all the states of the system to follow exactly the reference signal and its derivative. The parameters of the ADR controller are optimized using a genetic algorithm. As the objective function, we chose the weighted sum of the integral of the absolute error and the integral of the absolute control signal. Two chaotic systems-the Duffing system and the Genesio-Tesi system-are considered in computer simulation tests. Results of these simulations are presented to demonstrate the effectiveness of the ADRC method in controlling chaotic systems.
机译:为了跟踪混沌系统的控制,我们开发了一种主动干扰抑制(ADR)控制方法。使用系统的第一个状态作为唯一可用状态,时变带宽扩展状态观察器将重构其余状态和总干扰。时变带宽反馈控制器会强制系统的所有状态严格遵循参考信号及其导数。使用遗传算法优化ADR控制器的参数。作为目标函数,我们选择了绝对误差积分和绝对控制信号积分的加权和。计算机仿真测试中考虑了两个混沌系统-Duffing系统和Genesio-Tesi系统。给出了这些仿真的结果,以证明ADRC方法在控制混沌系统中的有效性。

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