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Tracking error plus damping injection control of non-minimum phase processes

机译:非最小相位过程的跟踪误差加阻尼注入控制

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This work proposes a passivity-based approach to deal with the output-tracking-error problem for a large class of nonlinear chemical processes including non-minimum phase systems. More precisely, in that framework, the system dynamics is firstly written into the relaxing (pseudo) port-Hamiltonian representation which does not necessarily require the positive semi-definite property of the damping matrix. Then, a reference trajectory associated with a certain structure passing through a desired equilibrium point (i.e., the set-point) is chosen so that the error dynamics can be globally asymptotically stabilized at the origin thanks to the assignment of an appropriate damping injection. This method is subsequently illustrated for a benchmark of multiple reactions systems, namely Van de Vusse reaction system. The numerical simulations show the applications of the proposed approach.
机译:这项工作提出了一种基于无源性的方法来处理包括非最小相系统在内的一大类非线性化学过程的输出跟踪误差问题。更确切地说,在该框架中,系统动力学首先被写入松弛(伪)端口-哈密尔顿方程,这不一定需要阻尼矩阵的正半确定性。然后,选择与通过期望的平衡点(即设定点)的特定结构相关的参考轨迹,以便由于分配了适当的阻尼注入,误差动态可以在原点处全局渐近稳定。随后举例说明该方法,以作为多个反应系统(即Van de Vusse反应系统)的基准。数值仿真表明了该方法的应用。

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