ImageWAM: Do World Action Models Really Need Video Generation, or Just Image Editing?
Classification
View four quadrants- Major category
- WAMs
- Quadrant
- Q4 · Dual-system × IDM
- Architecture
- Dual-system
- Prediction paradigm
- IDM
- Source review status
- Verified from primary sources
Contribution
We propose ImageWAM, a simple WAM framework that repurposes pretrained image editing models for robot action prediction. ImageWAM outperforms standard VLA baselines and matching competitive WAMs without additional policy pretraining across different simulator and real-world experiments.
Abstract
World Action Models (WAMs) commonly rely on video generation to bridge visual world modeling and robot control. However, video-based WAMs face three coupled limitations: dense multi-frame future tokens make inference costly, full video prediction spends capacity on action-irrelevant temporal and appearance details, and long-horizon future imagination may introduce errors that mislead action prediction. These issues raise a simple question: Does world action model really need video generation? We propose ImageWAM, a simple WAM framework that repurposes pretrained image editing models for robot action prediction. In contrast to video generation, image editing provides a better-matched prior: it only needs to model a target-frame transformation, focuses on action-relevant current-to-target visual differences, and grounds task instructions to localized visual changes through edit pretraining. In practice, ImageWAM does not decode the target frame at inference time; instead, it conditions a flow-matching action expert on the KV caches produced by image-editing denoising, using them as a compact world-action context. ImageWAM outperforms standard VLA baselines and matching competitive WAMs without additional policy pretraining across different simulator and real-world experiments. It also reduces FLOPs to 1/6 and latency to 1/4 of video-based WAMs. Attention analysis further shows that editing caches focus on task-relevant change regions, supporting image editing as an effective alternative to video-based world-action modeling.
Affiliations
1Shanghai Jiao Tong University, 2Eastern Institute of Technology, 3Tencent Robotics X, 4Tsinghua; University, 5Zhongguancun Academy