Task-Aware KV Compression For Cost-Effective Long Video Understanding
Minghao Qin, Yan Shu, Peitian Zhang, Kun Lun, Huaying Yuan, Juenjie Zhou, Shitao Xiao, Bo Zhao, Zheng Liu

TL;DR
Video-X^2L introduces a task-aware KV compression method that preserves critical information for long-video understanding, significantly reducing computational costs while maintaining high performance across multiple benchmarks.
Contribution
The paper proposes a novel bi-level KV compression and selective re-loading approach that enhances information retention without additional training, improving efficiency in long-video understanding.
Findings
Outperforms existing KV compression methods on multiple benchmarks
Significantly reduces computational costs
Maintains high accuracy in long-video understanding tasks
Abstract
Long-video understanding (LVU) remains a severe challenge for existing multimodal large language models (MLLMs), primarily due to the prohibitive computational cost. Recent approaches have explored KV compression to mitigate this issue, but they often suffer from significant information loss at high compression ratios. In this paper, we introduce Video-X^2L, which flexibly preserves critical video information for each LVU task. Video-X^2L involves two key operations. The first one is called bi-level KV compression. During the MLLM's pre-filling stage, Video-X^2L generates two types of compressed KVs: low-compression KVs (L-KVs) to capture fine-grained video details and high-compression KVs (H-KVs) to offer compact video representations. The second one is called selective KV re-loading. During the MLLM's decoding stage, Video-X^2L selectively re-loads L-KVs for the most critical video…
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Taxonomy
TopicsAdvanced Data Compression Techniques · Video Coding and Compression Technologies · Embedded Systems Design Techniques
