English

DSelect-k: Differentiable Selection in the Mixture of Experts with Applications to Multi-Task Learning

Machine Learning 2022-01-04 v3 Optimization and Control Machine Learning

Abstract

The Mixture-of-Experts (MoE) architecture is showing promising results in improving parameter sharing in multi-task learning (MTL) and in scaling high-capacity neural networks. State-of-the-art MoE models use a trainable sparse gate to select a subset of the experts for each input example. While conceptually appealing, existing sparse gates, such as Top-k, are not smooth. The lack of smoothness can lead to convergence and statistical performance issues when training with gradient-based methods. In this paper, we develop DSelect-k: a continuously differentiable and sparse gate for MoE, based on a novel binary encoding formulation. The gate can be trained using first-order methods, such as stochastic gradient descent, and offers explicit control over the number of experts to select. We demonstrate the effectiveness of DSelect-k on both synthetic and real MTL datasets with up to 128128 tasks. Our experiments indicate that DSelect-k can achieve statistically significant improvements in prediction and expert selection over popular MoE gates. Notably, on a real-world, large-scale recommender system, DSelect-k achieves over 22%22\% improvement in predictive performance compared to Top-k. We provide an open-source implementation of DSelect-k.

Keywords

Cite

@article{arxiv.2106.03760,
  title  = {DSelect-k: Differentiable Selection in the Mixture of Experts with Applications to Multi-Task Learning},
  author = {Hussein Hazimeh and Zhe Zhao and Aakanksha Chowdhery and Maheswaran Sathiamoorthy and Yihua Chen and Rahul Mazumder and Lichan Hong and Ed H. Chi},
  journal= {arXiv preprint arXiv:2106.03760},
  year   = {2022}
}

Comments

Appeared in NeurIPS 2021

R2 v1 2026-06-24T02:55:19.701Z