多信道认知无线网络的非抢占mac协议

Miguel Luís, Rodolfo Oliveira, R. Dinis, Luís Bernardo
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引用次数: 4

摘要

本文针对分布式认知无线网络(dcrn)提出了一种新的多通道介质访问控制(MAC)协议,该协议采用基于许可信道的可用性和辅助用户(su)的单个积压的非抢占式MaxWeight调度策略。在该协议下,每个SU使用RTS-CTS机制竞争一个数据通道,通道分配由分布式算法进行,而不需要中央实体。基于离散时间马尔可夫链模型,提出了单个SU的传输概率、分组服务时间和网络聚合收益的解析模型。考虑不同数量的单元和数据通道的仿真结果用于评估所提出的模型,表征了MAC协议实现的空闲频谱利用水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A non-preemptive mac protocol for multi-channel cognitive radio networks
In this paper, we propose a novel multi-channel Medium Access Control (MAC) protocol for distributed Cognitive Radio Networks (dCRNs), which adopts a non-preemptive MaxWeight scheduling policy based on the availability of the licensed channels and the individual backlog of the Secondary Users (SUs). Under this protocol each SU competes for a data channel using the RTS-CTS mechanism, and the channel assignment is conducted by a distributed algorithm working without the need of a central entity. An analytical model for the individual SU's transmission probability, packet service time, and network aggregate goodput is proposed, which relies on a Discrete Time Markov Chain used to model the SU MAC behavior. Simulation results considering different number of SUs and data channels are used to assess the proposed model, characterizing the level of idle spectrum utilization achieved by the MAC protocol.
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