Finite Time Robust Control of the Sit-to-Stand Movement for Powered Lower Limb Orthoses
Systems and Control
2020-11-26 v1
Abstract
This study presents a technique to safely control the Sit-to-Stand movement of powered lower limb orthoses in the presence of parameter uncertainty. The weight matrices used to calculate the finite time horizon linear-quadratic regulator (LQR) gain in the feedback loop are chosen from a pool of candidates as to minimize a robust performance metric involving induced gains that measure the deviation of variables of interest in a linear time-varying (LTV) system, at specific times within a finite horizon, caused by a perturbation signal modeling the variation of the parameters. Two relevant Sit-to-Stand movements are simulated for drawing comparisons with the results documented in a previous work.
Keywords
Cite
@article{arxiv.1805.09914,
title = {Finite Time Robust Control of the Sit-to-Stand Movement for Powered Lower Limb Orthoses},
author = {Octavio Narvaez-Aroche and Andrew Packard and Murat Arcak},
journal= {arXiv preprint arXiv:1805.09914},
year = {2020}
}
Comments
8 pages, 14 figures, ACC 2018 Submission