arXiv:2604.09681cs.NIcs.CV2026-04

动态调整视频推理任务分配,降低延迟与成本

R2E-VID: Two-Stage Robust Routing via Temporal Gating for Elastic Edge-Cloud Video Inference

论文配图:R2E-VID: Two-Stage Robust Routing via Temporal Gating for Elastic Edge-Cloud Video Inference
图 1 · 摘自论文原文
  • 分两阶段路由:先用时间门控分析视频动态,再优化资源分配
  • 相比云端主导方案,总成本降60%,延迟降低35%-45%
  • 适合实时视频分析场景,尤其在资源波动时表现稳定

随着大规模视频分析应用的快速发展,边缘-云协同系统已成为实时推理的主流范式。然而,现有方法难以动态适应异构视频内容和波动的资源条件,导致路由效率低下且计算成本高。本文提出R2E-VID,一种基于时间门控的两阶段鲁棒路由框架,用于弹性边缘-云视频推理。第一阶段引入时间门控机制,建模输入视频流的时间一致性和运动动态,预测每段视频的最优路由模式,实现边缘与云节点间推理负载的细粒度时空弹性划分。第二阶段通过多模型自适应的鲁棒路由优化模块,在网络和工作负载动态变化下联合最小化推理延迟与资源消耗。在公开数据集上的大量实验表明,R2E-VID相比云中心基线最多可降低60%的总体成本,并在延迟上比现有先进边缘-云方案降低35%-45%,同时推理准确率提升2%-7%。

原文摘要 · Abstract (English)

With the rapid growth of large-scale video analytics applications, edge-cloud collaborative systems have become the dominant paradigm for real-time inference. However, existing approaches often fail to dynamically adapt to heterogeneous video content and fluctuating resource conditions, resulting in suboptimal routing efficiency and high computational costs. In this paper, we propose R2E-VID, a two-stage robust routing framework via temporal gating for elastic edge-cloud video inference. In the first stage, R2E-VID introduces a temporal gating mechanism that models the temporal consistency and motion dynamics of incoming video streams to predict the optimal routing pattern for each segment. This enables adaptive partitioning of inference workloads between edge and cloud nodes, achieving fine-grained spatiotemporal elasticity. In the second stage, a robust routing optimization module refines the allocation through multi-model adaptation, jointly minimizing inference delay and resource consumption under dynamic network and workload variations. Extensive experiments on public datasets demonstrate that R2E-VID achieves up to 60% reduction in overall cost compared to cloud-centric baselines, and delivers 35-45% lower delay while improving inference accuracy by 2-7% over state-of-the-art edge-cloud solutions.

边缘计算视频推理动态路由弹性分配

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