Reduction in optimal control with broken symmetry for collision and obstacle avoidance of multi-agent system on Lie groups
Optimization and Control
2022-07-15 v1 Systems and Control
Systems and Control
Abstract
We study the reduction by symmetry for optimality conditions in optimal control problems of left-invariant affine multi-agent control systems, with partial symmetry breaking cost functions for continuous-time and discrete-time systems. We recast the optimal control problem as a constrained variational problem with a partial symmetry breaking Lagrangian and obtain the reduced optimality conditions from a reduced variational principle via symmetry reduction techniques in both settings, continuous-time, and discrete-time. We apply the results to a collision and obstacle avoidance problem for multiple vehicles evolving on in the presence of a static obstacle.
Keywords
Cite
@article{arxiv.2207.06806,
title = {Reduction in optimal control with broken symmetry for collision and obstacle avoidance of multi-agent system on Lie groups},
author = {Efstratios Stratoglou and Alexandre Anahory Simoes and Leonardo J. Colombo},
journal= {arXiv preprint arXiv:2207.06806},
year = {2022}
}
Comments
20 pages