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Cross-Layer Analysis and Optimization on Access Delay in Channel-Hopping-Based Distributed Cognitive Radio Networks

机译:基于信道跳变的分布式认知无线电网络的接入延迟跨层分析与优化

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摘要

In channel-hopping (CH)-based distributed cognitive radio networks (CRNs), the time duration that secondary users (SUs) spend for establishing communication links is called access delay. To evaluate access delay, we propose an access delay model by jointly considering imperfect spectrum sensing and multi-channel multi-SU transmission, from the cross-layer perspective. The model considers two typical scenarios. The first scenario assumes that the SUs do not use contention scheme (CS) which indicates that the time slot is relatively shorter to just allow a transmission. The second scenario assumes that the SUs employ CS [i.e., modified Distributed Coordination Function (DCF)-based Carrier Sense Multiple Access/Collision Avoidance (CSMA/CA) in this paper], which indicates that the time slot is long enough to regulate multiple transmissions. We then propose a bio-inspired algorithm for the first scenario and a self-adaptive step-length algorithm for the second scenario to search for the optimal values of spectrum sensing parameters. The theoretical analysis and simulation results validate the proposed access delay model and show that the proposed algorithms can reduce the most redundant computation. They also show that the optimization of cross-layer parameters can significantly decrease SUs' access delay. Moreover, we conduct a cost-benefit analysis to evaluate the performance of the two scenarios.
机译:在基于信道跳变(CH)的分布式认知无线电网络(CRN)中,辅助用户(SU)花费在建立通信链路上的持续时间称为访问延迟。为了评估访问延迟,我们从跨层的角度出发,通过综合考虑不完善的频谱感测和多通道多SU传输来提出访问延迟模型。该模型考虑了两种典型方案。第一种情况假设SU不使用竞争方案(CS),这表明时隙相对较短以仅允许传输。第二种情况假设SU使用CS [即,本文基于改进的基于分布式协调功能(DCF)的载波侦听多路访问/冲突避免(CSMA / CA)],这表明该时隙足够长,可以规范多个传输。然后,我们为第一种情况提出了一种受生物启发的算法,为第二种情况提出了一种自适应步长算法,以搜索频谱感测参数的最佳值。理论分析和仿真结果验证了所提出的访问延迟模型,并表明所提出的算法可以减少最冗余的计算。他们还表明,跨层参数的优化可以显着减少SU的访问延迟。此外,我们进行了成本效益分析以评估这两种方案的性能。

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