NeurIPS 2020poster28 citations

Learning compositional functions via multiplicative weight updates

Jeremy Bernstein, Jiawei Zhao, Markus Meister, Ming-Yu Liu, Anima Anandkumar, Yisong Yue

Abstract

Compositionality is a basic structural feature of both biological and artificial neural networks. Learning compositional functions via gradient descent incurs well known problems like vanishing and exploding gradients, making careful learning rate tuning essential for real-world applications. This paper proves that multiplicative weight updates satisfy a descent lemma tailored to compositional functions. Based on this lemma, we derive Madam---a multiplicative version of the Adam optimiser---and show that it can train state of the art neural network architectures without learning rate tuning. We further show that Madam is easily adapted to train natively compressed neural networks by representing their weights in a logarithmic number system. We conclude by drawing connections between multiplicative weight updates and recent findings about synapses in biology.

BibTeX
@inproceedings{NEURIPS2020_9a32ef65,
 author = {Bernstein, Jeremy and Zhao, Jiawei and Meister, Markus and Liu, Ming-Yu and Anandkumar, Anima and Yue, Yisong},
 booktitle = {Advances in Neural Information Processing Systems},
 editor = {H. Larochelle and M. Ranzato and R. Hadsell and M.F. Balcan and H. Lin},
 pages = {13319--13330},
 publisher = {Curran Associates, Inc.},
 title = {Learning compositional functions via multiplicative weight updates},
 url = {https://proceedings.neurips.cc/paper_files/paper/2020/file/9a32ef65c42085537062753ec435750f-Paper.pdf},
 volume = {33},
 year = {2020}
}
Learning compositional functions via multiplicative weight updates · NeurIPS 2020