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Hazard Warning Performance in Light of Vehicle Positioning Accuracy and Map-Less Approach Path Matching

机译:车辆定位精度和较少地图接近路径匹配的危险警告性能

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Vehicle to Vehicle Communication use case performance heavily relies on market penetration rate. The more vehicles support a use case, the better the customer experience. Enabling these use cases with acceptable quality on vehicles without built-in navigation systems, elaborate map matching and highly accurate sensors is challenging. This paper introduces a simulation framework to assess system performance in dependency of vehicle positioning accuracy for matching approach path traces in Decentralized Environmental Notification Messages (DENMs) in absence of navigation systems supporting map matching. DENMs are used for distributing information about hazards on the road network. A vehicle without navigation system and street map can only match its position trajectory with the trajectory carried in the DENM. The framework supports simulating random and systematic positioning error influences, network effects, and different algorithms for approach path trace matching and DENM approach path trace generation. The tool allows assessing the observable system performance in terms of correct and incorrect matching of approach path traces resulting in true and false, positive and negative hazard warnings provided to the user. We provide an exemplary sensitivity analysis with a simple approach path trace matching implementation depending on varying positioning error influences and develop error bounds for acceptable system performance depending on typical street network geometry in the USA and Germany. The presented framework supports both a frontend for visualization, as well as headless operation for conducting large scale Monte-Carlo simulation runs.
机译:车辆到车辆通信用例性能严重依赖市场渗透率。越多的车辆支持用例,客户体验越好。在没有内置导航系统的车辆上启用这些用例,在没有内置导航系统的情况下,详细说明地图匹配和高精度传感器是具有挑战性的。本文介绍了一种仿真框架,用于评估车辆定位精度的系统性能,以便在不存在支持地图匹配的导航系统中的分散环境通知消息(DENMS)中的匹配方法路径迹线。丹姆斯用于分发有关道路网络危害的信息。没有导航系统和街道地图的车辆只能将其位置轨迹与丹麦中携带的轨迹匹配。该框架支持模拟随机和系统定位误差影响,网络效果和不同算法,用于接近路径跟踪匹配和丹麦方法路径跟踪生成。该工具允许在正确和不正确的接近路径迹线的匹配方面评估可观察系统性能,从而导致向用户提供的真假和假,正负危险警告。我们提供了一种具有简单方法路径跟踪匹配实现的示例性灵敏度分析,具体取决于不同定位误差影响,并根据美国和德国典型的街道网络几何来影响可接受的系统性能的错误界限。呈现的框架支持前端进行可视化,以及用于进行大规模Monte-Carlo仿真运行的无头操作。

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