Contraction and Robustness of Continuous Time Primal-Dual Dynamics
Abstract
The Primal-Dual (PD) algorithm is widely used in convex optimization to determine saddle points. While the stability of the PD algorithm can be easily guaranteed, strict contraction is nontrivial to establish in most cases. This work focuses on continuous, possibly non-autonomous PD dynamics arising in a network context, in distributed optimization, or in systems with multiple time-scales. We show that the PD algorithm is indeed strictly contracting in specific metrics and analyze its robustness establishing stability and performance guarantees for different approximate PD systems. We derive estimates for the performance of multiple time-scale multi-layer optimization systems, and illustrate our results on a primal-dual representation of the Automatic Generation Control of power systems.
Cite
@article{arxiv.1803.05975,
title = {Contraction and Robustness of Continuous Time Primal-Dual Dynamics},
author = {Hung D. Nguyen and Thanh Long Vu and Konstantin Turitsyn and Jean-Jacques Slotine},
journal= {arXiv preprint arXiv:1803.05975},
year = {2018}
}
Comments
6 pages, 1 figures, published on LCSS and CDC 2018