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Opportunities and limitations for intersection collision intervention-A study of real world 'left turn across path' accidents

机译:交叉路口碰撞干预的机会与局限性-对现实世界中“左转弯”事故的研究

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Turning across the path of oncoming vehicle accidents are frequent and dangerous. To date not many car manufacturers have introduced Automated Emergency Braking (AEB) systems addressing this type of conflict situation, but it is foreseeable that these scenarios will be part of the Euro NCAP 2020 rating. Nine out of ten collisions are caused by the driver of the turning vehicle. An AEB system evaluating the ego and conflict vehicle driver's possibilities to avoid a pending crash by either braking or steering was specified for application in various constellations of vehicle collisions. In virtual simulation, AEB system parameters were varied, covering parameters that are relevant for driver comfort such as longitudinal and lateral acceleration (to define avoidance possibilities), expected steering maneuvers to avoid conflict, and intervention response characteristics (brake delay and ramp up) to assess the safety benefit. The reference simulation showed a potential of the AEB system in the turning vehicle to avoid approximately half of the collisions. An AEB system of the straight going vehicle was less effective. The effectiveness of the turning vehicle's AEB system increases if spatial limitations for the collision-avoidance steering maneuver are known. Such information could be provided by sensors detecting free space in or around the road environment or geographical information shared via vehicle to cloud communication. AEB interventions rarely result in collision avoidance for turning vehicles with speeds above 40 km/h or for straight going vehicles with speeds above 60 km/h. State of the art field-of-views of forward looking sensing systems designed for AEB rear-end interventions are capable of addressing turning across path situations. (C) 2016 Elsevier Ltd. All rights reserved.
机译:越过迎面而来的车辆事故是很常见且危险的。迄今为止,很少有汽车制造商推出可解决此类冲突情况的自动紧急制动(AEB)系统,但是可以预见,这些情况将成为欧洲NCAP 2020评级的一部分。十分之九的碰撞是由转弯车辆的驾驶员造成的。 AEB系统用于评估自我和冲突车辆驾驶员通过制动或转向避免未决碰撞的可能性,被指定用于各种车辆碰撞。在虚拟仿真中,AEB系统参数发生了变化,涵盖了与驾驶员舒适度相关的参数,例如纵向和横向加速度(以定义避免可能性),避免冲突的预期转向操作以及干预响应特性(制动延迟和加速)。评估安全效益。参考模拟显示了AEB系统在转弯车辆中避免约一半碰撞的潜力。直行车辆的AEB系统效果较差。如果已知避免碰撞操纵的空间限制,则转向车辆的自动包围曝光系统的效率会提高。可以通过检测道路环境中或周围的自由空间的传感器或通过车辆到云的通信共享的地理信息来提供此类信息。对于速度超过40 km / h的转弯车辆或速度超过60 km / h的直行车辆,AEB干预很少能避免碰撞。专为AEB后端干预设计的前瞻性传感系统的技术水平能够解决跨路径情况的转弯。 (C)2016 Elsevier Ltd.保留所有权利。

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