A quality of service model for IEEE 802.11p communication protocol in a smart city

Yamen Y. Nasrallah, I. Al-Anbagi, H. Mouftah
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引用次数: 18

Abstract

A reliable and time-efficient communication system between vehicles and infrastructure is an indispensable issue in the development of a smart city. The vehicles must have the ability to transmit and receive urgent messages with low latency. Infrastructures such as hospitals and police stations should be equipped with base stations capable of communicating in near real-time fashion with vehicles. In addition to that, in a smart grid scenario, this is especially important between the power charging station and the Electric Vehicles (EVs), Nowadays the best standard that is designed to operate in a vehicular environment is the IEEE 802.11p standard. It is a contention-based Medium Access Control (MAC) protocol that provides Quality of Service (QoS) for Wireless Access in the Vehicular Environment (WAVE). In this paper we propose a low-latency version of this protocol by introducing a finite buffer at the MAC level that momentarily stocks the packets coming from the application layer. Our proposed architecture is modeled with a Markov chain analytical method. Our results show an enhancement in the performance in terms of the end-to-end delay and an improvement in the throughput.
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智慧城市中IEEE 802.11p通信协议的服务质量模型
车辆与基础设施之间可靠、高效的通信系统是智慧城市发展不可或缺的问题。车辆必须具有低延迟发送和接收紧急信息的能力。医院和警察局等基础设施应配备能够与车辆进行近乎实时通信的基站。除此之外,在智能电网场景中,这在充电站和电动汽车(ev)之间尤为重要。如今,设计用于在车辆环境中运行的最佳标准是IEEE 802.11p标准。它是一种基于争用的介质访问控制(MAC)协议,为车载环境下的无线接入(WAVE)提供服务质量(QoS)。在本文中,我们通过在MAC层引入有限缓冲区来暂时存储来自应用层的数据包,提出了该协议的低延迟版本。我们提出的架构是用马尔可夫链分析方法建模的。我们的结果显示了端到端延迟方面的性能增强和吞吐量的改进。
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