arXiv:2507.02245cs.RO2025-07

构建车路协同感知系统,提升恶劣天气下自动驾驶的环境感知能力

CoInfra: A Large-Scale Cooperative Infrastructure Perception System and Dataset for Vehicle-Infrastructure Cooperation in Adverse Weather

  • 部署14个路边传感器节点,通过真实5G网络实现多节点协同感知
  • 在四种天气下采集超29万帧点云数据,关键帧完整率提升至86%-100%
  • 适合研究车路协同、自动驾驶安全感知与通信约束下的融合算法

车路协同感知可显著扩展自动驾驶系统的感知范围、覆盖度和鲁棒性,尤其在遮挡和恶劣天气环境下。然而,现有基准难以量化其实际价值,因缺乏大规模多节点部署、真实通信条件及恶劣天气运行数据。本文提出CoInfra,一个由14个路边传感器节点通过商用5G网络连接的可部署协同基础设施感知平台,配套大规模数据集与开源系统栈。系统支持同步多节点感知与延迟感知融合,符合真实5G通信约束。释放的数据集涵盖八个节点的城市环岛场景,覆盖晴天、雨天、大雪和冻雨四种天气,包含294,000帧LiDAR数据、589,000张相机图像和332,000个全局一致的3D边界框。还包含与自动驾驶车辆同步采集的V2I子集。除常规感知评估外,进一步验证了基础设施感知对交通冲突场景中关键交通参与者识别的提升效果。在结构化冲突场景中,车路协同使关键帧完整率从车载感知的33%-46%提升至86%-100%。结果表明,多节点基础设施感知在车载感知受限的高冲突交通场景中能显著提升态势感知能力。

原文摘要 · Abstract (English)

Vehicle-infrastructure (V2I) cooperative perception can substantially extend the range, coverage, and robustness of autonomous driving systems beyond the limits of onboard-only sensing, particularly in occluded and adverse-weather environments. However, its practical value is still difficult to quantify because existing benchmarks do not adequately capture large-scale multi-node deployments, realistic communication conditions, and adverse-weather operation. This paper presents CoInfra, a deployable cooperative infrastructure perception platform comprising 14 roadside sensor nodes connected through a commercial 5G network, together with a large-scale dataset and an open-source system stack for V2I cooperation research. The system supports synchronized multi-node sensing and delay-aware fusion under real 5G communication constraints. The released dataset covers an eight-node urban roundabout under four weather conditions (sunny, rainy, heavy snow, and freezing rain) and contains 294k LiDAR frames, 589k camera images, and 332k globally consistent 3D bounding boxes. It also includes a synchronized V2I subset collected with an autonomous vehicle. Beyond standard perception benchmarks, we further evaluate whether infrastructure sensing improves awareness of safety-critical traffic participants during roundabout interactions. In structured conflict scenarios, V2I cooperation increases critical-frame completeness from 33%-46% with vehicle-only sensing to 86%-100%. These results show that multi-node infrastructure perception can significantly improve situational awareness in conflict-rich traffic scenarios where vehicle-only sensing is most limited.

车路协同感知融合恶劣天气5G通信

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