Title :
Multi-Hop Connectivity Probability in Infrastructure-Based Vehicular Networks
Author :
Zhang, Wuxiong ; Chen, Yu ; Yang, Yang ; Wang, Xiangyang ; Zhang, Yu ; Hong, Xuemin ; Mao, Guoqiang
Author_Institution :
Key Lab. of Wireless Sensor Network & Commun., Grad. Univ. of Chinese Acad. of Sci., Shanghai, China
fDate :
5/1/2012 12:00:00 AM
Abstract :
Infrastructure-based vehicular networks (consisting of a group of Base Stations (BSs) along the road) will be widely deployed to support Wireless Access in Vehicular Environment (WAVE) and a series of safety and non-safety related applications and services for vehicles on the road. As an important measure of user satisfaction level, uplink connectivity probability is defined as the probability that messages from vehicles can be received by the infrastructure (i.e., BSs) through multi-hop paths. While on the system side, downlink connectivity probability is defined as the probability that messages can be broadcasted from BSs to all vehicles through multi-hop paths, which indicates service coverage performance of a vehicular network. This paper proposes an analytical model to predict both uplink and downlink connectivity probabilities. Our analytical results, validated by simulations and experiments, reveal the trade-off between these two key performance metrics and the important system parameters, such as BS and vehicle densities, radio coverage (or transmission power), and maximum number of hops. This insightful knowledge enables vehicular network engineers and operators to effectively achieve high user satisfaction and good service coverage, with necessary deployment of BSs along the road according to traffic density, user requirements and service types.
Keywords :
mobile radio; probability; radio access networks; road traffic; road vehicles; WAVE; downlink connectivity probability; infrastructure-based vehicular networks; multihop connectivity probability; road vehicles; traffic density; uplink connectivity probability; user satisfaction level; vehicle density; wireless access in vehicular environment; Ad hoc networks; Analytical models; Downlink; Roads; Spread spectrum communication; Vehicles; Wireless communication; Connectivity Probability; IEEE 1609; IEEE 802.11p; Vehicular ad-hoc Network (VANET); Wireless Access in Vehicular Environment (WAVE);
Journal_Title :
Selected Areas in Communications, IEEE Journal on
DOI :
10.1109/JSAC.2012.120508