English

ROMA: Real-time Omni-Multimodal Assistant with Interactive Streaming Understanding

Computer Vision and Pattern Recognition 2026-01-16 v1 Computation and Language

Abstract

Recent Omni-multimodal Large Language Models show promise in unified audio, vision, and text modeling. However, streaming audio-video understanding remains challenging, as existing approaches suffer from disjointed capabilities: they typically exhibit incomplete modality support or lack autonomous proactive monitoring. To address this, we present ROMA, a real-time omni-multimodal assistant for unified reactive and proactive interaction. ROMA processes continuous inputs as synchronized multimodal units, aligning dense audio with discrete video frames to handle granularity mismatches. For online decision-making, we introduce a lightweight speak head that decouples response initiation from generation to ensure precise triggering without task conflict. We train ROMA with a curated streaming dataset and a two-stage curriculum that progressively optimizes for streaming format adaptation and proactive responsiveness. To standardize the fragmented evaluation landscape, we reorganize diverse benchmarks into a unified suite covering both proactive (alert, narration) and reactive (QA) settings. Extensive experiments across 12 benchmarks demonstrate ROMA achieves state-of-the-art performance on proactive tasks while competitive in reactive settings, validating its robustness in unified real-time omni-multimodal understanding.

Keywords

Cite

@article{arxiv.2601.10323,
  title  = {ROMA: Real-time Omni-Multimodal Assistant with Interactive Streaming Understanding},
  author = {Xueyun Tian and Wei Li and Bingbing Xu and Heng Dong and Yuanzhuo Wang and Huawei Shen},
  journal= {arXiv preprint arXiv:2601.10323},
  year   = {2026}
}

Comments

Our project page is available at https://eureka-maggie.github.io/ROMA_show

R2 v1 2026-07-01T09:05:44.001Z