Single-hop Packet Delivery Rate in V2V Safety Communications for Worst-case Highway Scenarios

B. M. Mughal, Low Tang Jung, A. Wagan
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引用次数: 1

Abstract

Ensuring maximum data packet delivery rate is crucial in the vehicle-to-vehicle (V2V) safety (broadcast) communication. The highly dynamic topology of vehicles on the road makes it difficult to appropriately quantify different quality of service parameters e.g. packet delivery rate. High packet delivery rate is difficult to achieve in periodic safety communications with broadcast as the default communication mechanism. A handful of transmission power control and beacon generation control methods have been proposed by researchers to enhance packet delivery in V2V communications. These methods however were lacking in the focus on realistic worst-case scenarios. In this paper, optimal combinations of transmission range and beacon generation interval are presented in the context of different packet delivery rates for worst-case scenarios. As such, the effectiveness of this approach was measured through extensive simulations based on the realistic worst-case scenarios on a highway.
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高速公路最坏情况下V2V安全通信的单跳包传输速率
确保最大的数据包传输速率在车对车(V2V)安全(广播)通信中至关重要。道路上车辆的高度动态拓扑结构使得难以适当地量化不同的服务质量参数(如数据包投递率)。在以广播作为缺省通信机制的周期性安全通信中,很难实现高的分组传输速率。为了增强V2V通信中的分组传输,研究人员提出了一些传输功率控制和信标生成控制方法。然而,这些方法缺乏对现实的最坏情况的关注。本文给出了在不同分组传输速率下的最坏情况下,传输距离和信标生成间隔的最优组合。因此,这种方法的有效性是通过基于公路上最坏情况的广泛模拟来衡量的。
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