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OmniInfer: System-Wide Acceleration Techniques for Optimi...
[Submitted on 27 Nov 2025 (v1), last revised 7 Aug 2026 (this ve · 2025-11-27 · via cs.DC updates on arXiv.org

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Abstract:Large Language Models drive a wide range of modern AI applications but impose substantial challenges on large-scale serving systems due to intensive computation, strict latency constraints, and throughput bottlenecks. We introduce OmniInfer, a unified system-level acceleration framework designed to maximize end-to-end serving efficiency through fine-grained optimization of expert placement, cache compression, and scheduling. OmniInfer integrates three complementary components: OmniPlacement for load-aware Mixture-of-Experts scheduling, OmniAttn for sparse attention acceleration, and OmniProxy for disaggregation-aware request scheduling. Built atop vLLM, OmniInfer delivers system-wide performance gains through adaptive resource disaggregation, efficient sparsity exploitation, and global coordination across prefill and decode phases. Evaluated on DeepSeek-R1 within a 10-node Ascend 910C cluster, OmniInfer achieves 616 QPM, where the unified framework reduces TPOT by 36\%, and the superimposition of OmniProxy further slashes TTFT by 38\%. The project is open-sourced at [this https URL](this https URL).

Submission history

From: Jun Wang [view email]
[v1] Thu, 27 Nov 2025 14:13:47 UTC (470 KB)
[v2] Fri, 7 Aug 2026 15:12:27 UTC (825 KB)