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Beyond RAG: Task-Aware KV Cache Compression for Comprehensive Knowledge Reasoning
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Incorporating external knowledge in large language models (LLMs) enhances their utility across diverse applications, but existing methods have trade-offs. Retrieval-Augmented Generation (RAG) fetches evidence via similarity search, but key information may fall outside top ranked results. Long-context models can process multiple documents but are computationally expensive and limited by context window size. Inspired by students condensing study material for open-book exams, we propose task-aware key-value (KV) cache compression, which compresses external knowledge in a zero- or few-shot setup. This enables LLMs to reason efficiently over a compacted representation of all relevant information. Experiments show our approach outperforms both RAG and task-agnostic compression methods. On LongBench v2, it improves accuracy by up to 7 absolute points over RAG with a 30x compression rate, while reducing inference latency from 0.43s to 0.16s. A synthetic dataset highlights that RAG performs well when sparse evidence suffices, whereas task-aware compression is superior for broad knowledge tasks.
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Cited by 1 Pith paper
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StreamMem: Query-Agnostic KV Cache Memory for Streaming Video Understanding
A training-free, query-agnostic KV cache compression method for streaming video MLLMs, using chat-template attention as a saliency proxy, matches or beats prior streaming methods at a fixed 6K memory budget.
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