車両マニピュレータシステムのポート・ハミルトン構造
The Port-Hamiltonian Structure of Vehicle Manipulator Systems
本論文は、空中・水中・宇宙・移動マニピュレータを含む車両マニピュレータシステム(VMS)のポート・ハミルトン定式化を提案し、エネルギー構造を明示する標準形と制御設計に適した慣性分離形の2つの定式化を導出した。
著者: Ramy Rashad
分類: eess.SY, cs.RO, cs.SY, math.DG
原文アブストラクト
This paper presents a port-Hamiltonian formulation of vehicle-manipulator systems (VMS), a broad class of robotic systems including aerial manipulators, underwater manipulators, space robots, and omnidirectional mobile manipulators. Unlike existing Lagrangian formulations that obscure the underlying energetic structure, the proposed port-Hamiltonian formulation explicitly reveals the energy flow and conservation properties of these complex mechanical systems. We derive the port-Hamiltonian dynamics from first principles using Hamiltonian reduction theory. Two complementary formulations are presented: a standard form that directly exposes the energy structure, and an inertially-decoupled form that leverages the principal bundle structure of the VMS configuration space and is particularly suitable for control design and numerical simulation. The coordinate-free geometric approach we follow avoids singularities associated with local parameterizations of the base orientation. We rigorously establish the mathematical equivalence between our port-Hamiltonian formulations and existing reduced Euler-Lagrange and Boltzmann-Hamel equations found in the robotics and geometric mechanics literature.