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Analytical model for connectivity of vehicular ad hoc networks in the presence of channel randomness

机译:存在信道随机性的车辆自组织网络连通性分析模型

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A vehicular ad hoc network (VANET) is a highly mobile wireless ad hoc network formed by vehicles equipped with communication facilities. Developing multihop communication in VANETs is a challenging problem because of rapidly changing network topology and frequent network disconnections. This paper investigates the network connectivity probability of one-dimensional VANET in the presence of channel randomness. Network connectivity is one of the most important issues in VANETs, because the dissemination of time-critical information requires, as a preliminary condition, the network to be fully connected. We present an analytical procedure for the computation of network connectivity probability, taking into account the underlying wireless channel. Three different fading models are considered for the connectivity analysis: Rayleigh, Rician, and Weibull. A distance-dependent power law model is employed for the pathloss in a vehicle-to-vehicle channel. Furthermore, the speed of each vehicle on the highway is assumed to be a Gaussian distributed random variable. The analysis provides a general framework for investigating the dependence of various parameters such as vehicle arrival rate, vehicle density, vehicle speed, highway length, and various physical layer parameters such as transmit power, receive signal-to-noise ratio threshold, path loss exponent, and fading factors (Rician and Weibull) on VANET connectivity.
机译:车辆自组织网络(VANET)是由配备有通信设施的车辆组成的高度移动的无线自组织网络。由于网络拓扑快速变化并且网络频繁断开,因此在VANET中开发多跳通信是一个具有挑战性的问题。本文研究了存在信道随机性的一维VANET的网络连通性概率。网络连接是VANET中最重要的问题之一,因为对时间要求严格的信息的传播要求,作为一个初步条件,网络必须完全连接。考虑到底层无线信道,我们提出了一种计算网络连接概率的分析程序。连接性分析考虑了三种不同的衰落模型:Rayleigh,Rician和Weibull。车辆到车辆通道中的路径损耗采用距离相关的幂定律模型。此外,假设公路上每辆车的速度是高斯分布随机变量。该分析提供了一个总体框架,用于研究各种参数(例如车辆到达率,车辆密度,车辆速度,高速公路长度)以及各种物理层参数(例如发射功率,接收信噪比阈值,路径损耗指数)的依赖性。 ,以及VANET连接的衰落因素(Rician和Weibull)。

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