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Performance Analysis of the IEEE 802.11p Multichannel MAC Protocol in Vehicular Ad Hoc Networks

机译:车载Ad Hoc网络中IEEE 802.11p多通道MAC协议的性能分析

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摘要

Vehicular Ad Hoc Networks (VANETs) employ multichannel to provide a variety of safety and non-safety applications, based on the IEEE 802.11p and IEEE 1609.4 protocols. The safety applications require timely and reliable transmissions, while the non-safety applications require efficient and high throughput. In the IEEE 1609.4 protocol, operating interval is divided into alternating Control Channel (CCH) interval and Service Channel (SCH) interval with an identical length. During the CCH interval, nodes transmit safety-related messages and control messages, and Enhanced Distributed Channel Access (EDCA) mechanism is employed to allow four Access Categories (ACs) within a station with different priorities according to their criticality for the vehicle’s safety. During the SCH interval, the non-safety massages are transmitted. An analytical model is proposed in this paper to evaluate performance, reliability and efficiency of the IEEE 802.11p and IEEE 1609.4 protocols. The proposed model improves the existing work by taking serval aspects and the character of multichannel switching into design consideration. Extensive performance evaluations based on analysis and simulation help to validate the accuracy of the proposed model and analyze the capabilities and limitations of the IEEE 802.11p and IEEE 1609.4 protocols, and enhancement suggestions are given.
机译:车载自组织网络(VANET)基于IEEE 802.11p和IEEE 1609.4协议,采用多通道来提供各种安全和非安全应用。安全应用程序需要及时而可靠的传输,而非安全应用程序则需要高效和高吞吐量。在IEEE 1609.4协议中,操作间隔分为具有相同长度的交替控制信道(CCH)间隔和服务信道(SCH)间隔。在CCH间隔内,节点会发送与安全相关的消息和控制消息,并且采用增强型分布式信道访问(EDCA)机制,以根据其对车辆安全的严重性,允许站内具有不同优先级的四个访问类别(AC)。在SCH间隔期间,将发送非安全消息。本文提出了一种分析模型来评估IEEE 802.11p和IEEE 1609.4协议的性能,可靠性和效率。所提出的模型通过考虑服务方面和多通道切换的特性来改进现有工作。基于分析和仿真的广泛性能评估有助于验证所提出模型的准确性,并分析IEEE 802.11p和IEEE 1609.4协议的功能和局限性,并给出增强建议。

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