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Centimeter-Grade Metropolitan Positioning for Lane-Level Intelligent Transportation Systems Based on the Internet of Vehicles

机译:基于车联网的车道级智能交通系统厘米级城市定位

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摘要

This paper presents a centimeter-grade metropolitan positioning (CGMP) framework for achieving lane-level localization through Internet of Vehicles (IoV) communications. The CGMP framework integrates vehicle-to-roadside (V2R) and vehicle-to-vehicle (V2V) communications with installed roadside/intersection cameras to provide positioning information to vehicles on the road. This framework can be used to estimate the precise position of a vehicle and detect the lane of each vehicle. The estimated positions and detected lanes can be broadcast to nearby vehicles through V2R and V2V communications. According to our review of relevant research, CGMP is the first positioning system to provide the following features: centimeter-grade positioning accuracy through IoV communications that can detect a vehicle's current lane; the employment of existing roadside/intersection cameras, thus keeping additional construction costs low; and an innovative infrastructure for the application of next-generation intelligent transportation systems that can enable lane-level traffic control, collision avoidance, and vehicle navigation. A prototype based on wireless access in vehicular environments/dedicated short-range communications is implemented to verify the feasibility and effectiveness of the proposed framework. The experimental results indicate that fully deployed CGMP can achieve centimeter-grade positioning accuracy with the error around 10 cm, and partially deployed CGMP can significantly reduce the positioning errors of existing localization methods.
机译:本文提出了一种用于通过车联网(IoV)通信实现车道级定位的厘米级大城市定位(CGMP)框架。 CGMP框架将车辆到路边(V2R)和车辆到车辆(V2V)通信与已安装的路边/交叉路口摄像头集成在一起,以向道路上的车辆提供定位信息。该框架可用于估计车辆的精确位置并检测每辆车的车道。估计的位置和检测到的车道可以通过V2R和V2V通信广播到附近的车辆。根据我们对相关研究的评论,CGMP是第一个提供以下功能的定位系统:通过IoV通信可以检测车辆当前车道的厘米级定位精度;使用现有的路边/交叉路口摄像机,从而使额外的建设成本保持较低水平;以及用于下一代智能交通系统的创新基础架构,可实现车道级交通控制,避免碰撞和车辆导航。实施了基于车辆环境/专用短程通信中的无线访问的原型,以验证所提出框架的可行性和有效性。实验结果表明,完全部署的CGMP可以达到厘米级的定位精度,误差在10 cm左右,而部分部署的CGMP可以大大减少现有定位方法的定位误差。

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