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Modeling and performance analysis of the IEEE 802.11P Enhanced Distributed Channel Access function for vehicular network

机译:车载网络的IEEE 802.11P增强型分布式信道访问功能的建模和性能分析

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The IEEE 802.11p standard drafted to support wireless access in vehicular environments (WAVE) or vehicular ad hoc network (VANET) which uses Enhanced Distributed Channel Access (EDCA) mechanism for the contention-based prioritized Quality of Service (QoS) at the MAC layer. The EDCA mechanism defines four access categories (ACs). Each AC queue works as an independent DCF station (STA) with Enhanced Distributed Channel Access Function (EDCAF) to contend for Transmission Opportunities (TXOP) using its own EDCA parameters. This paper provides an analytical model to compute the performance of the IEEE 802.11p Enhanced Distributed Channel Access Function (EDCAF) for Vehicular Network. To develop the model the four access categories (ACs) and all the major factors that could affect the performance are considered. The relationship among the IEEE 802.11p EDCA parameters and performance matrices are derived through Markov chain based theoretical analysis. Moreover, the derived performance model is verified by simulation.
机译:起草IEEE 802.11p标准以支持车辆环境(WAVE)或车辆自组织网络(VANET)中的无线访问,该协议使用增强型分布式信道访问(EDCA)机制在MAC层基于竞争的优先服务质量(QoS) 。 EDCA机制定义了四个访问类别(AC)。每个AC队列都充当具有增强的分布式信道访问功能(EDCAF)的独立DCF站(STA),以使用其自己的EDCA参数争夺传输机会(TXOP)。本文提供了用于计算车载网络的IEEE 802.11p增强型分布式信道访问功能(EDCAF)性能的分析模型。为了开发该模型,考虑了四个访问类别(AC)以及所有可能影响性能的主要因素。通过基于马尔可夫链的理论分析推导了IEEE 802.11p EDCA参数与性能矩阵之间的关系。此外,通过仿真验证了导出的性能模型。

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