Performance study of CAM over IEEE 802.11p for cooperative adaptive cruise control

O. Shagdar, F. Nashashibi, S. Tohmé
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引用次数: 10

Abstract

The IEEE 802.11p is the de-facto vehicular radio communication technology for road safety and efficiency applications. With the advancements in the autonomous vehicle technology, studies on applicability of the IEEE 802.11p and the related protocols for the autonomous driving applications are needed. In this paper, we study the impacts of vehicular communication on platooning control considering that the ETSI-standardised message set Cooperative Awareness Message (CAM) and the IEEE 802.11p are used for both the platooning and cooperative awareness applications. We first develop a theoretical model for the probability of a successful CAM transmission over IEEE 802.11p between platoon members by taking account of the existence of non-platoon vehicles on the road. The model is verified by comparing against simulation results obtained from the NS3 simulator. Finally, we investigate the impacts of the communication performance on the behaviour of platoons, specially the chain stability, when hundreds of vehicles share the wireless channel. The theoretical model reveals that thanks to the capture effect, communications between platoon members drastically outperform communications between arbitrary two vehicles on the road. The simulation results show that in contrast to an adaptive cruise control (ACC), which does not use vehicular communication, the IEEE 802.11p based vehicle to vehicle (V2V) communication aids for realizing stable platoons in highway scenarios.
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基于IEEE 802.11p的协同自适应巡航控制CAM性能研究
IEEE 802.11p实际上是用于道路安全和效率应用的车载无线电通信技术。随着自动驾驶汽车技术的发展,需要对IEEE 802.11p及相关协议在自动驾驶应用中的适用性进行研究。基于etsi标准消息集协同感知消息(Cooperative Awareness message, CAM)和IEEE 802.11p协议,研究了车辆通信对队列控制的影响。我们首先建立了一个理论模型,通过IEEE 802.11p在队列成员之间成功传输CAM的概率,考虑到道路上存在非队列车辆。通过与NS3仿真器仿真结果的对比,验证了模型的正确性。最后,我们研究了当数百辆车辆共享无线信道时,通信性能对队列行为的影响,特别是链的稳定性。理论模型表明,由于捕获效应,排成员之间的通信大大优于道路上任意两辆车之间的通信。仿真结果表明,与不使用车辆通信的自适应巡航控制(ACC)相比,基于IEEE 802.11p的车对车(V2V)通信有助于实现高速公路场景下的稳定队列。
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