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Paper · arXiv 2401.14404

Deconstructing Denoising Diffusion Models for Self-Supervised Learning

Xinlei Chen, Zhuang Liu, Saining Xie, Kaiming He

18 upvotesJanuary 25, 2024arXiv 预印本
AI 摘要

A study on Denoising Diffusion Models reveals that only a few modern components are essential for self-supervised representation learning, leading to a simplified model resembling a Denoising Autoencoder.

Denoising Diffusion ModelsDDMDenoising AutoencoderDAEself-supervised representation learning

Abstract

In this study, we examine the representation learning abilities of Denoising Diffusion Models (DDM) that were originally purposed for image generation. Our philosophy is to deconstruct a DDM, gradually transforming it into a classical Denoising Autoencoder (DAE). This deconstructive procedure allows us to explore how various components of modern DDMs influence self-supervised representation learning. We observe that only a very few modern components are critical for learning good representations, while many others are nonessential. Our study ultimately arrives at an approach that is highly simplified and to a large extent resembles a classical DAE. We hope our study will rekindle interest in a family of classical methods within the realm of modern self-supervised learning.

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