Fast Distributed Coordinate Descent for Non-Strongly Convex Losses
Optimization and Control
2014-07-29 v2 Machine Learning
Abstract
We propose an efficient distributed randomized coordinate descent method for minimizing regularized non-strongly convex loss functions. The method attains the optimal convergence rate, where is the iteration counter. The core of the work is the theoretical study of stepsize parameters. We have implemented the method on Archer - the largest supercomputer in the UK - and show that the method is capable of solving a (synthetic) LASSO optimization problem with 50 billion variables.
Cite
@article{arxiv.1405.5300,
title = {Fast Distributed Coordinate Descent for Non-Strongly Convex Losses},
author = {Olivier Fercoq and Zheng Qu and Peter Richtárik and Martin Takáč},
journal= {arXiv preprint arXiv:1405.5300},
year = {2014}
}