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How to guess a gradient

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arxiv 2312.04709 v1 pith:CIGLBWOG submitted 2023-12-07 cs.LG cs.NE

classification cs.LGcs.NE
keywords gradientsderivativesdirectionalexactgradientnetworkoptimizationanswer
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How much can you say about the gradient of a neural network without computing a loss or knowing the label? This may sound like a strange question: surely the answer is "very little." However, in this paper, we show that gradients are more structured than previously thought. Gradients lie in a predictable low-dimensional subspace which depends on the network architecture and incoming features. Exploiting this structure can significantly improve gradient-free optimization schemes based on directional derivatives, which have struggled to scale beyond small networks trained on toy datasets. We study how to narrow the gap in optimization performance between methods that calculate exact gradients and those that use directional derivatives. Furthermore, we highlight new challenges in overcoming the large gap between optimizing with exact gradients and guessing the gradients.

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  1. Position: Curvature Matrices Should Be Democratized via Linear Operators

    cs.LG 2025-01 conditional novelty 6.0 of 10

    Linear operators are argued to be the right abstraction for curvature matrices in deep learning, and the curvlinops library shows that one interface can cover exact and approximate curvature across many applications.

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