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Global output regulation for a class of single input Port-controlled Hamiltonian disturbed systems

机译:一类单输入端口控制的汉密尔顿扰动系统的全球产出监管

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The problem of global output regulation for a class of single input Port-controlled Hamiltonian disturbed systems is studied. A composite control method is developed by combining the damping injection and the nonlinear disturbance observer techniques together. A series of coordinate transformation is presented to transform the system with mismatched disturbance into matched disturbance system. By means of Lyapunov stability theorems, global stability analysis for the closed-loop Hamiltonian system is presented. It is shown that the system output is regulated to zero asymptotically in the presence of mismatched disturbance without larger overshoots and longer settling time caused by integral action. Study on two examples with simulation results demonstrates the effectiveness of the proposed control method. (C) 2018 Elsevier Inc. All rights reserved.
机译:研究了一类单一输入端口控制的哈密尔顿干扰系统的全局输出调节问题。 通过将阻尼喷射和非线性干扰观察者技术组合在一起,开发了一种复合控制方法。 提出了一系列坐标转换以将系统变形与匹配的扰动系统失配。 通过Lyapunov稳定定理,提出了闭环汉密尔顿系统的全局稳定性分析。 结果表明,在不匹配的干扰存在下,系统输出被调节到渐近渐近,而没有更大的过冲和由整体作用引起的沉降时间更长。 仿真结果的两个例子研究表明了所提出的控制方法的有效性。 (c)2018年Elsevier Inc.保留所有权利。

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