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Proportional-Integral passivity-based control design of perturbed non-standard Hamiltonian systems

机译:基于比例 - 积分的无扰动非标哈密顿系统控制设计

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This paper proposes a proportional-integral passivity-based control strategy to stabilize the transformed model of a chemical reaction system, described by vessel extents. It is shown that the transformed model belongs to a class of perturbed non-standard Port-Hamiltonian systems with time-varying unmatched (endogenous) disturbance, thereby limiting the applicability of the integral-action-based design method proposed by Donaire and Junco [A. Donaire and S. Junco. Automatica, 2009] because of a lack of interconnection. The developed method adapts a change of coordinates for the design to add an appropriate interconnection between relative-degree-one states and higher-relative-degree states that allows injecting a necessary damping to achieve asymptotic stability and preserving the PH representation of extended closed-loop system. A reversible reaction system is used to illustrate the proposed approach.
机译:本文提出了一种比例 - 积分的基于主的控制策略,以稳定由容器范围描述的化学反应体系的转化模型。 结果表明,转换模型属于一类具有时变无与伦比(内源性)干扰的扰动非标准端口-Hamiltonian系统,从而限制了唐纳尔和Junco提出的积分基于动作的设计方法的适用性[a 。 Donaire和S. Junco。 自动,2009]因为缺乏互联。 开发方法适用于设计的坐标的变化,以在相对程度 - 一个状态和更高的相对程度状态之间添加适当的互连,其允许注入必要的阻尼以实现渐近稳定性并保留延伸闭环的pH表示 系统。 可逆反应系统用于说明所提出的方法。

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