基于M/G/1/的IEEE802.11e EDCA在非饱和和饱和条件下的性能研究

Bai Xiang, Mao Yu-ming, Sun Xiang
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引用次数: 2

摘要

IEEE 802.11e网络针对不同的业务流提供了不同的QoS (quality of service)保证。为了在IEEE 802.11分布式协调功能(Distributed Coordination Function, DCF)的基础上支持优先级QoS,提出了IEEE 802.11e MAC协议中的增强型分布式通道接入(Enhanced Distributed Channel Access, EDCA)。我们首先为EDCA建立了一个新的网络分析模型。该模型既考虑了空闲状态(表示没有数据包要传输),也考虑了不同流量根据不同aifs值进行区分。我们可以利用广义状态转移图的信号传递函数推导出MAC层服务时间的概率分布,并利用M/G/l/K排队模型分析EDCA从非饱和信道到饱和介质的性能。对所提出的模型进行了数值计算,并与仿真结果进行了对比验证,结果表明解析模型与仿真结果吻合较好,符合所提出模型的准确性。仿真和理论结果表明,尽管EDCA提供了优先级QoS,但除非网络在非饱和情况下工作,否则它仍然不能支持语音和视频等实时应用的严格QoS。另一方面,由于EDCA的存在,不可避免地会导致优先业务的信道接入不公平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance investigation of M/G/1/K-based IEEE802.11e EDCA under non-saturation and saturation conditions
The IEEE 802.11e network provides different with QoS (quality of service) guarantee for different traffic streams. The Enhanced Distributed Channel Access(EDCA) in IEEE 802.11e MAC protocol is proposed to support prioritized QoS on the basis of the Distributed Coordination Function(DCF) in IEEE 802.11. We first build a new network analysis model for the EDCA. The model takes into account both the idle state that represents that there are no packets to be transmitted and differentiation based on different AIFS-value for different traffic. We can use the signal transfer function of the generalized state transition diagram to derive a probability distribution of the MAC layer service time and analyze the performance of EDCA from a non-saturated channel to a saturated medium by using M/G/l/K queuing model. The proposed model is calculated numerically and validated against simulation results, we observed a good match between the analytical model and simulation which conforms the veracity of proposed model. Simulation and theoretical results show that despite providing prioritized QoS, the EDCA still can not support strict QoS for real-time application like voice and video unless network works in the non-saturation case. On the other hand, it is inevitable that there is unfairness of channel access to prioritized traffic due to EDCA.
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