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Constructive Interconnection and Damping Assignment for Port-Controlled Hamiltonian Systems

机译:端口控制的哈密顿系统的构造性互连和阻尼分配

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The Interconnection and Damping Assignment Passivity-Based Control (IDA-PBC) problem for port-controlled Hamiltonian systems is revisited. We propose a methodology that exploits the novel notion of algebraic solution of the so-called matching equation. This notion is instrumental for the construction of an energy function, defined on an extended state-space, which does not rely upon the solution of any partial differential equation. This yields, differently from the classical solution, a dynamic state feedback that stabilizes a desired equilibrium point. In addition, conditions that allow to preserve the port-controlled Hamiltonian structure in the extended closed-loop system are provided. The theory is validated on two physical systems: the magnetic levitated ball and a third order food-chain system. A dynamic control law is constructed for both these systems by assigning a damping factor that cannot be assigned by the classical IDA-PBC.
机译:重新研究了端口控制的哈密顿系统的基于互连和阻尼分配无源性的控制(IDA-PBC)问题。我们提出了一种利用所谓匹配方程的代数解新概念的方法。该概念对于在扩展状态空间中定义的能量函数的构建非常有用,该状态空间不依赖于任何偏微分方程的解。与经典解决方案不同,这产生了稳定所需平衡点的动态状态反馈。另外,提供了允许在扩展的闭环系统中保留端口控制的哈密顿结构的条件。该理论在两个物理系统上得到了验证:磁悬浮球和三阶食物链系统。通过分配经典IDA-PBC无法分配的阻尼因子,为这两个系统构建了动态控制律。

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