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Performance Comparison of IEEE 802.11p and IEEE 802.11b for Vehicle-to-Vehicle Communications in Highway, Rural, and Urban Areas

机译:公路,农村和城市地区的车到车通信的IEEE 802.11p和IEEE 802.11b性能比较

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摘要

Communication between vehicles has recently been a popular research topic. Generally, the Vehicle-to-Vehicle (V2V), Vehicle-to-Infrastructure (V2I), and Infrastructure-to-Infrastructure (I2I) communications applications can be divided into two sections: (i) safety applications and (ii) nonsafety applications. In this study, we have investigated the performance of IEEE 802.11p and IEEE 802.11b based on real-world measurements and radio propagation models of V2V networks in different environments, including highway, rural, and urban areas. Furthermore, we have investigated the most used V2V mobility models and simulation tools. Comparative performance evaluations show that the IEEE 802.11p achieves higher network throughput, low end-to-end delay, and higher delivery ratio compared to IEEE 802.11b. Overall, our main objective is to describe potential advantages, research challenges, and applications of V2V networks and show how IEEE 802.11p and IEEE 802.11b will perform under different radio propagation environments.
机译:车辆之间的通信近来已经成为流行的研究主题。通常,车对车(V2V),车对基础设施(V2I)和基础设施对基础设施(I2I)通信应用可以分为两个部分:(i)安全应用和(ii)非安全应用。在这项研究中,我们基于现实环境中V2V网络在不同环境(包括高速公路,农村和城市地区)的测量结果和无线电传播模型,研究了IEEE 802.11p和IEEE 802.11b的性能。此外,我们研究了最常用的V2V移动性模型和仿真工具。比较的性能评估表明,与IEEE 802.11b相比,IEEE 802.11p实现了更高的网络吞吐量,低的端到端延迟和更高的交付率。总体而言,我们的主要目标是描述V2V网络的潜在优势,研究挑战和应用,并展示IEEE 802.11p和IEEE 802.11b在不同的无线电传播环境下将如何表现。

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