EZ-CLIP: EFFICIENT ZERO-SHOT VIDEO ACTION RECOGNITION
Shahzad Ahmad, Sukalpa Chanda, Yogesh S Rawat
OpenReview ground truth
TL;DR — EZ-CLIP: revolutionizes zero-shot action recognition, delivering state-of-the-art performance with just 5.2 million tunable parameters.
Abstract
Recent advancements in large-scale pre-training of visual-language models on paired image-text data have demonstrated impressive generalization capabilities for zero-shot tasks. Building on this success, efforts have been made to adapt these image-based visual-language models, such as CLIP, for videos extending their zero-shot capabilities to the video domain. While these adaptations have shown promising results, they come at a significant computational cost and struggle with effectively modeling the crucial temporal aspects inherent to the video domain. In this study, we present EZ-CLIP, a simple and efficient adaptation of CLIP that addresses these challenges. EZ-CLIP leverages temporal visual prompting for seamless temporal adaptation, requiring no fundamental alterations to the core CLIP architecture while preserving its remarkable generalization abilities. Moreover, we introduce a novel learning objective that guides the temporal visual prompts to focus on capturing motion, thereby enhancing its learning capabilities from video data. We conducted extensive experiments on five different benchmark datasets, thoroughly evaluating EZ-CLIP for zero-shot learning and base-to-novel video action recognition, and also demonstrating its potential for few-shot generalization. Impressively, with a mere 5.2 million learnable parameters (as opposed to the 71.1 million in the prior best model), EZ-CLIP can be efficiently trained on a single GPU, outperforming existing approaches in several evaluations.
Author context
Most prolific author: 1 submissions (credibility 1.00).
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Ranking trajectory
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Battle history — 42 comparisons
Ranked above opponent in 48% of matchups.
- ▲ beat Referring Expression Matters: Multi-referr… ×4
- ▲ beat PREDICTING ACCURATE LAGRANGIAN MULTIPLIERS… ×4
- ▼ lost to Effective pruning of web-scale datasets ba… ×4
- ▲ beat MoAT: Multi-Modal Augmented Time Series Fo… ×4
- ▼ lost to Sparling: Learning Latent Representations … ×4
Judge assessments
Mean overall score 0.0 ± 0.0 (n = 42)