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CoSDH: Communication-Efficient Collaborative Perception via Supply-Demand Awareness and Intermediate-Late Hybridization

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arxiv 2503.03430 v1 pith:T4ZPBEY4 submitted 2025-03-05 cs.CV

classification cs.CV
keywords perceptioncollaborativecommunicationaccuracycollaborationintermediate-latesupply-demandagents
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Multi-agent collaborative perception enhances perceptual capabilities by utilizing information from multiple agents and is considered a fundamental solution to the problem of weak single-vehicle perception in autonomous driving. However, existing collaborative perception methods face a dilemma between communication efficiency and perception accuracy. To address this issue, we propose a novel communication-efficient collaborative perception framework based on supply-demand awareness and intermediate-late hybridization, dubbed as \mymethodname. By modeling the supply-demand relationship between agents, the framework refines the selection of collaboration regions, reducing unnecessary communication cost while maintaining accuracy. In addition, we innovatively introduce the intermediate-late hybrid collaboration mode, where late-stage collaboration compensates for the performance degradation in collaborative perception under low communication bandwidth. Extensive experiments on multiple datasets, including both simulated and real-world scenarios, demonstrate that \mymethodname~ achieves state-of-the-art detection accuracy and optimal bandwidth trade-offs, delivering superior detection precision under real communication bandwidths, thus proving its effectiveness and practical applicability. The code will be released at https://github.com/Xu2729/CoSDH.

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Cited by 1 Pith paper

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  1. Is Intermediate Fusion All You Need for UAV-based Collaborative Perception?

    cs.CV 2025-04 conditional novelty 5.0 of 10

    A late-intermediate fusion method that transmits only 2D and 3D detection boxes and confidence scores among UAVs, then injects them into the receiver's BEV features, achieves 72.1% mAP on UAV3D with minimal bandwidth.

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