English

Rigging the Lottery: Making All Tickets Winners

Machine Learning 2021-07-26 v3 Computer Vision and Pattern Recognition Machine Learning

Abstract

Many applications require sparse neural networks due to space or inference time restrictions. There is a large body of work on training dense networks to yield sparse networks for inference, but this limits the size of the largest trainable sparse model to that of the largest trainable dense model. In this paper we introduce a method to train sparse neural networks with a fixed parameter count and a fixed computational cost throughout training, without sacrificing accuracy relative to existing dense-to-sparse training methods. Our method updates the topology of the sparse network during training by using parameter magnitudes and infrequent gradient calculations. We show that this approach requires fewer floating-point operations (FLOPs) to achieve a given level of accuracy compared to prior techniques. We demonstrate state-of-the-art sparse training results on a variety of networks and datasets, including ResNet-50, MobileNets on Imagenet-2012, and RNNs on WikiText-103. Finally, we provide some insights into why allowing the topology to change during the optimization can overcome local minima encountered when the topology remains static. Code used in our work can be found in github.com/google-research/rigl.

Keywords

Cite

@article{arxiv.1911.11134,
  title  = {Rigging the Lottery: Making All Tickets Winners},
  author = {Utku Evci and Trevor Gale and Jacob Menick and Pablo Samuel Castro and Erich Elsen},
  journal= {arXiv preprint arXiv:1911.11134},
  year   = {2021}
}

Comments

Published in Proceedings of the 37th International Conference on Machine Learning. Code can be found in github.com/google-research/rigl

R2 v1 2026-06-23T12:26:49.573Z