English

TinyCLIP: CLIP Distillation via Affinity Mimicking and Weight Inheritance

Computer Vision and Pattern Recognition 2023-09-22 v1

Abstract

In this paper, we propose a novel cross-modal distillation method, called TinyCLIP, for large-scale language-image pre-trained models. The method introduces two core techniques: affinity mimicking and weight inheritance. Affinity mimicking explores the interaction between modalities during distillation, enabling student models to mimic teachers' behavior of learning cross-modal feature alignment in a visual-linguistic affinity space. Weight inheritance transmits the pre-trained weights from the teacher models to their student counterparts to improve distillation efficiency. Moreover, we extend the method into a multi-stage progressive distillation to mitigate the loss of informative weights during extreme compression. Comprehensive experiments demonstrate the efficacy of TinyCLIP, showing that it can reduce the size of the pre-trained CLIP ViT-B/32 by 50%, while maintaining comparable zero-shot performance. While aiming for comparable performance, distillation with weight inheritance can speed up the training by 1.4 - 7.8 ×\times compared to training from scratch. Moreover, our TinyCLIP ViT-8M/16, trained on YFCC-15M, achieves an impressive zero-shot top-1 accuracy of 41.1% on ImageNet, surpassing the original CLIP ViT-B/16 by 3.5% while utilizing only 8.9% parameters. Finally, we demonstrate the good transferability of TinyCLIP in various downstream tasks. Code and models will be open-sourced at https://aka.ms/tinyclip.

Keywords

Cite

@article{arxiv.2309.12314,
  title  = {TinyCLIP: CLIP Distillation via Affinity Mimicking and Weight Inheritance},
  author = {Kan Wu and Houwen Peng and Zhenghong Zhou and Bin Xiao and Mengchen Liu and Lu Yuan and Hong Xuan and Michael Valenzuela and Xi and Chen and Xinggang Wang and Hongyang Chao and Han Hu},
  journal= {arXiv preprint arXiv:2309.12314},
  year   = {2023}
}

Comments

Accepted By ICCV 2023

R2 v1 2026-06-28T12:28:40.673Z