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Performance analysis of an adaptive rate-range control algorithm for VANET safety applications

机译:VANET安全应用的自适应速率范围控制算法的性能分析

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Vehicular Ad hoc network is considered as an important component of the next generation automotive systems. The various safety applications supported by the vehicular communication depend on the reliable delivery of the periodic safety messages. Due to variable vehicle density on the road, the fixed transmission parameters such as transmission range and packet generation rate of the safety messages result in a large number of collisions and an inefficient use of the control channel. The safety applications demand the adaptation of the above transmission parameters without compromising the safety of the vehicles. In this paper, we present a combined transmission range and packet generation rate control algorithm which takes into account the safety of the vehicles and maximizes the control channel utilization. At first, every vehicle calculates its packet generation rate using the measured time headway metric which provides a measure of the vehicle safety. In the second step, the transmission range is adapted based on the vehicle density estimation, the target network load and the packet generation rate of each vehicle. The performance analysis shows that the proposed algorithm improves the safety message performance in terms of packet reception rate and control channel utilization for a range of vehicle densities and vehicle speeds.
机译:车载Ad hoc网络被认为是下一代汽车系统的重要组成部分。车辆通信支持的各种安全应用取决于定期安全消息的可靠传递。由于道路上车辆密度的变化,固定的传输参数(例如安全消息的传输范围和数据包生成速率)会导致大量冲突,并导致控制通道的使用效率低下。安全应用要求在不损害车辆安全性的情况下适应上述传输参数。在本文中,我们提出了一种结合了传输距离和分组生成速率控制算法的算法,该算法考虑了车辆的安全性并最大化了控制信道的利用率。首先,每辆车都使用测得的时间时距度量标准来计算其数据包的生成速率,该度量提供了车辆安全性的度量。在第二步中,基于车辆密度估计,目标网络负载和每辆车的数据包生成速率来调整传输范围。性能分析表明,对于一定范围的车辆密度和车速,该算法在数据包接收率和控制信道利用率方面提高了安全消息的性能。

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