Mind the Gap: Understanding the Modality Gap in Multi-Modal Contrastive Representation Learning

Abstract

We present modality gap, an intriguing geometric phenomenon of the representation space of multi-modal models. Specifically, we show that different data modalities (e.g. images and text) are embedded at arm's length in their shared representation in multi-modal models such as CLIP. Our systematic analysis demonstrates that this gap is caused by a combination of model initialization and contrastive learning optimization. In model initialization, we show empirically and theoretically that the representation of a common deep neural network is restricted to a narrow cone. As a consequence, in a multi-modal model with two encoders, the representations of the two modalities are clearly apart when the model is initialized. During optimization, contrastive learning keeps the different modalities separate by a certain distance, which is influenced by the temperature parameter in the loss function. Our experiments further demonstrate that varying the modality gap distance has a significant impact in improving the model's downstream zero-shot classification performance and fairness.

Cite

Text

Liang et al. "Mind the Gap: Understanding the Modality Gap in Multi-Modal Contrastive Representation Learning." Neural Information Processing Systems, 2022.

Markdown

[Liang et al. "Mind the Gap: Understanding the Modality Gap in Multi-Modal Contrastive Representation Learning." Neural Information Processing Systems, 2022.](https://mlanthology.org/neurips/2022/liang2022neurips-mind/)

BibTeX

@inproceedings{liang2022neurips-mind,
  title     = {{Mind the Gap: Understanding the Modality Gap in Multi-Modal Contrastive Representation Learning}},
  author    = {Liang, Victor Weixin and Zhang, Yuhui and Kwon, Yongchan and Yeung, Serena and Zou, James Y},
  booktitle = {Neural Information Processing Systems},
  year      = {2022},
  url       = {https://mlanthology.org/neurips/2022/liang2022neurips-mind/}
}