Harmony: Harmonizing Audio and Video Generation through Cross-Task Synergy
Abstract
The synthesis of synchronized audio-visual content is a key challenge in generative AI, with open-source models facing challenges in robust audio-video alignment. Our analysis reveals that this issue is rooted in three fundamental challenges of the joint diffusion process: (1) Correspondence Drift, where concurrently evolving noisy latents impede stable learning of alignment; (2) inefficient global attention mechanisms that fail to capture fine-grained temporal cues; and (3) the intra-modal bias of conventional Classifier-Free Guidance (CFG), which enhances conditionality but not cross-modal synchronization. To overcome these challenges, we introduce Harmony, a novel framework that mechanistically enforces audio-visual synchronization. We first propose a Cross-Task Synergy training paradigm to mitigate drift by leveraging strong supervisory signals from audio-driven video and video-driven audio generation tasks. Then, we design a Global-Local Decoupled Interaction Module for efficient and precise temporal-style alignment. Finally, we present a novel Synchronization-Enhanced CFG (SyncCFG) that explicitly isolates and amplifies the alignment signal during inference. Extensive experiments demonstrate that Harmony establishes a new state-of-the-art, significantly outperforming existing methods in both generation fidelity and, critically, in achieving fine-grained audio-visual synchronization.
Cite
@article{arxiv.2511.21579,
title = {Harmony: Harmonizing Audio and Video Generation through Cross-Task Synergy},
author = {Teng Hu and Zhentao Yu and Guozhen Zhang and Zihan Su and Zhengguang Zhou and Youliang Zhang and Yuan Zhou and Qinglin Lu and Ran Yi},
journal= {arXiv preprint arXiv:2511.21579},
year = {2025}
}