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HERO: Hierarchical Extrapolation and Refresh for Efficient World Models

About

Generation-driven world models create immersive virtual environments but suffer slow inference due to the iterative nature of diffusion models. While recent advances have improved diffusion model efficiency, directly applying these techniques to world models introduces limitations such as quality degradation. In this paper, we present HERO, a training-free hierarchical acceleration framework tailored for efficient world models. Owing to the multi-modal nature of world models, we identify a feature coupling phenomenon, wherein shallow layers exhibit high temporal variability, while deeper layers yield more stable feature representations. Motivated by this, HERO adopts hierarchical strategies to accelerate inference: (i) In shallow layers, a patch-wise refresh mechanism efficiently selects tokens for recomputation. With patch-wise sampling and frequency-aware tracking, it avoids extra metric computation and remain compatible with FlashAttention. (ii) In deeper layers, a linear extrapolation scheme directly estimates intermediate features. This completely bypasses the computations in attention modules and feed-forward networks. Our experiments show that HERO achieves a 1.73$\times$ speedup with minimal quality degradation, significantly outperforming existing diffusion acceleration methods.

Quanjian Song, Xinyu Wang, Donghao Zhou, Jingyu Lin, Cunjian Chen, Yue Ma• 2025

Related benchmarks

TaskDatasetResultRank
Video Depth EstimationSintel
Delta Threshold Accuracy (1.25)50.2
235
Camera pose estimationSintel dataset
ATE0.181
35
Camera pose estimationAether
Absolute Trajectory Error (ATE)0.181
9
Image-to-World generationHunyuanVoyager-13B (test)
WorldScore Static62.37
9
Video Depth EstimationAether
Absolute Relative Error (Abs Rel)0.347
9
Image-to-World generationAether-5B (test)
WorldScore Static58.62
9
Visual PlanningVBench RealEstate10K (val)
Subject Consistency93.42
7
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