Discrete Mechanics and Optimal Control for Passive Walking with Foot Slippage
Systems and Control
2024-07-01 v1 Systems and Control
Optimization and Control
Abstract
Forced variational integrators are given by the discretization of the Lagrange-d'Alembert principle for systems subject to external forces, and have proved useful for numerical simulation studies of complex dynamical systems. In this paper we model a passive walker with foot slip by using techniques of geometric mechanics, and we construct forced variational integrators for the system. Moreover, we present a methodology for generating (locally) optimal control policies for simple hybrid holonomically constrained forced Lagrangian systems, based on discrete mechanics, applied to a controlled walker with foot slip in a trajectory tracking problem.
Cite
@article{arxiv.2209.14255,
title = {Discrete Mechanics and Optimal Control for Passive Walking with Foot Slippage},
author = {Alexandre Anahory Simoes and Asier López-Gordón and Anthony Bloch and Leonardo Colombo},
journal= {arXiv preprint arXiv:2209.14255},
year = {2024}
}
Comments
8 pages, preprint submitted to a conference. Comments are welcome!