Width is Less Important than Depth in ReLU Neural Networks
February 08, 2022 ยท Declared Dead ยท ๐ Annual Conference Computational Learning Theory
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Authors
Gal Vardi, Gilad Yehudai, Ohad Shamir
arXiv ID
2202.03841
Category
cs.LG: Machine Learning
Cross-listed
cs.NE,
stat.ML
Citations
12
Venue
Annual Conference Computational Learning Theory
Last Checked
5 months ago
Abstract
We solve an open question from Lu et al. (2017), by showing that any target network with inputs in $\mathbb{R}^d$ can be approximated by a width $O(d)$ network (independent of the target network's architecture), whose number of parameters is essentially larger only by a linear factor. In light of previous depth separation theorems, which imply that a similar result cannot hold when the roles of width and depth are interchanged, it follows that depth plays a more significant role than width in the expressive power of neural networks. We extend our results to constructing networks with bounded weights, and to constructing networks with width at most $d+2$, which is close to the minimal possible width due to previous lower bounds. Both of these constructions cause an extra polynomial factor in the number of parameters over the target network. We also show an exact representation of wide and shallow networks using deep and narrow networks which, in certain cases, does not increase the number of parameters over the target network.
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