CVMay 25

StreamOV: Streaming Omni-Video Understanding via Evidence-Guided Memory and Response Triggering

arXiv:2605.2562197.9
Predicted impact top 4% in CV · last 90 daysOriginality Highly original
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This work addresses the under-explored problem of continuous, real-time omni-video understanding for streaming applications, providing both a novel framework and the first comprehensive benchmark for online multi-turn evaluation.

StreamOV introduces a streaming omni-video understanding framework with evidence-guided memory and response triggering, achieving state-of-the-art performance across diverse streaming and omni-video benchmarks.

While streaming omni-video understanding demands continuous perception and proactive, real-time interaction, this crucial area remains largely under-explored. Current omni-modal methods are inherently designed for offline settings, limiting their applicability in streaming scenarios due to two fundamental flaws. First, they lack robust mechanisms to manage continuously growing audio-visual context over long horizons and cannot autonomously initiate responses at opportune moments. Second, existing benchmarks are predominantly confined to offline, single-turn question answering, failing to capture continuous, multi-turn streaming interactions. To bridge these gaps, we propose StreamOV, a novel Streaming Omni-Video understanding framework for efficient online audio-visual reasoning with bounded memory and proactive response triggering. Specifically, StreamOV introduces a multimodal evidence-guided long-short term memory that condenses historical audio-visual context into compact informative evidence under a fixed budget. It further employs a hidden-state-driven trigger to decide when to respond, avoiding explicit silence-token generation and external routers. We also curate SOVBench, the first comprehensive benchmark for online, multi-turn omni-modal evaluation. Extensive experiments show that StreamOV achieves state-of-the-art performance across diverse streaming and omni-video benchmarks, demonstrating its effectiveness for both online and offline video understanding.

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