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Input disturbance suppression for port-controlled hamiltonian system via the internal model method

机译:内模法抑制港口控制哈密顿系统的输入扰动

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This paper investigates the input disturbance suppression problem for nonlinear Port-Controlled Hamiltonian (PCH) system and presents a number of new results on the controllers design via the internal model approach. Different from the existing results on this topic we consider two cases. Firstly, the case of the disturbance generated from a linear Hamiltonian system acts through a channel other than the input channel is studied by adopting a method of decomposing the control into two parts and designing an internal model to zero the effect of the exogenous disturbance. Secondly, the case of the disturbance generated from a bounded nonlinear exosystem is studied by presenting a procedure of designing a nonlinear internal model to cancel the effect of the disturbance under two fundamental assumptions. Moreover, to further improve the suppression, a more effective internal model is also designed under less hypotheses. Finally, as an useful application, a corollary is presented by applying these results on PCH system to general nonlinear affine system. Simulations of a third-order synchronous generator model with disturbance generated from a nonlinear exosystem show the effectiveness of the designed internal model.
机译:本文研究了非线性端口控制哈密顿系统(PCH)的输入扰动抑制问题,并通过内部模型方法给出了控制器设计的许多新结果。与关于该主题的现有结果不同,我们考虑两种情况。首先,通过采用将控制分解为两部分并设计内部模型以将外源干扰的影响归零的方法,研究了由线性哈密顿系统产生的干扰通过输入通道以外的通道起作用的情况。其次,在两个基本假设的基础上,通过提出设计非线性内部模型来消除干扰影响的程序,研究了有界非线性外系统产生干扰的情况。此外,为了进一步改善抑制效果,还以较少的假设设计了更有效的内部模型。最后,作为有用的应用,通过将这些结果应用于PCH系统到一般的非线性仿射系统,可以得出一个推论。通过非线性外部系统产生扰动的三阶同步发电机模型的仿真证明了所设计内部模型的有效性。

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