Range sensor evaluation for use in Cooperative Intersection Collision Avoidance Systems

J. Fischer, A. Menon, A. Gorjestani, C. Shankwitz, M. Donath
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引用次数: 9

Abstract

The Intelligent Transportation Institute at the University of Minnesota is developing a Cooperative Intersection Collision Avoidance System - Stop Sign Assist (CICAS-SSA) for rural intersections as an alternative to signalized intersections. When deployed, the system will provide a driver stopped at a thru-stop intersection information about the available gaps in the mainline road traffic stream. The system uses surveillance sensors alongside the major road to determine the state1 of the intersection; this state information is used to determine whether the gaps that exist are unsafe, thereby triggering a warning to a driver not to initiate the desired maneuver. The system is capable of sending intersection state information to the vehicle (I2V) so that gap information can be displayed in the vehicle. Low cost automotive radar/laser sensors form the basis of the surveillance system. Described herein is a performance evaluation of a Delphi ESR radar sensor (ESR), an Ibeo Lux laser sensor (LUX), and a Smartmicro Umrr9 radar sensor (UMRR9). Each sensor was mounted adjacent to the shoulder on US 52 while a probe vehicle equipped with dual frequency, carrier phase DGPS was driven past. The accuracy of the position and speed measurements for each sensor were determined by comparison with the DGPS position and speed measured at the probe vehicle. An analysis was conducted to determine which sensor provided the best performance:cost ratio when used as a CICAS-SSA mainline sensor.
协同交叉口避碰系统中距离传感器的评估
明尼苏达大学智能交通研究所正在开发一种用于农村交叉路口的协作式交叉口碰撞避免系统——停车标志辅助系统(CICAS-SSA),作为信号交叉路口的替代方案。部署后,该系统将为停在交叉路口的司机提供有关干线道路交通流中可用间隙的信息。该系统使用主要道路旁的监控传感器来确定十字路口的状态;此状态信息用于确定存在的间隙是否不安全,从而触发对驾驶员的警告,使其不要启动所需的机动。该系统能够向车辆发送交叉口状态信息(I2V),从而在车辆中显示间隙信息。低成本的汽车雷达/激光传感器构成了监视系统的基础。本文介绍了德尔福ESR雷达传感器(ESR)、Ibeo Lux激光传感器(Lux)和Smartmicro Umrr9雷达传感器(Umrr9)的性能评估。每个传感器都安装在US 52的肩部附近,同时一辆配备双频载波相位DGPS的探测车被驶过。通过与探测车的DGPS位置和速度测量值进行比较,确定每个传感器的位置和速度测量值的准确性。进行了分析,以确定哪种传感器在用作CICAS-SSA主线传感器时提供了最佳的性能:成本比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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