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PAD-MAC: Primary User Activity-Aware Distributed MAC for Multi-Channel Cognitive Radio Networks

机译:PAD-MAC:用于多通道认知无线电网络的主要用户活动感知的分布式MAC

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Cognitive radio (CR) has emerged as a promising technology to solve problems related to spectrum scarcity and provides a ubiquitous wireless access environment. CR-enabled secondary users (SUs) exploit spectrum white spaces opportunistically and immediately vacate the acquired licensed channels as primary users (PUs) arrive. Accessing the licensed channels without the prior knowledge of PU traffic patterns causes severe throughput degradation due to excessive channel switching and PU-to-SU collisions. Therefore, it is significantly important to design a PU activity-aware medium access control (MAC) protocol for cognitive radio networks (CRNs). In this paper, we first propose a licensed channel usage pattern identification scheme, based on a two-state Markov model, and then estimate the future idle slots using previous observations of the channels. Furthermore, based on these past observations, we compute the rank of each available licensed channel that gives SU transmission success assessment during the estimated idle slot. Secondly, we propose a PU activity-aware distributed MAC (PAD-MAC) protocol for heterogeneous multi-channel CRNs that selects the best channel for each SU to enhance its throughput. PAD-MAC controls SU activities by allowing them to exploit the licensed channels only for the duration of estimated idle slots and enables predictive and fast channel switching. To evaluate the performance of the proposed PAD-MAC, we compare it with the distributed QoS-aware MAC (QC-MAC) and listen-before-talk MAC schemes. Extensive numerical results show the significant improvements of the PAD-MAC in terms of the SU throughput, SU channel switching rate and PU-to-SU collision rate.
机译:认知无线电(CR)已经成为一种有前途的技术,可以解决与频谱稀缺有关的问题,并提供了无处不在的无线接入环境。启用CR的辅助用户(SU)机会利用频谱空白,并在主要用户(PU)到达时立即腾出获得的许可频道。在没有PU流量模式的先验知识的情况下访问许可的信道会由于过度的信道切换和PU到SU冲突而导致严重的吞吐量下降。因此,设计用于认知无线电网络(CRN)的PU活动感知媒体访问控制(MAC)协议非常重要。在本文中,我们首先基于两状态马尔可夫模型提出一种许可的信道使用模式识别方案,然后使用先前对信道的观察来估计未来的空闲时隙。此外,基于这些过去的观察,我们计算了每个可用许可信道的等级,这些信道在估计的空闲时隙期间给出了SU传输成功评估。其次,我们为异构多信道CRN提出了一种PU活动感知分布式MAC(PAD-MAC)协议,该协议为每个SU选择最佳信道以提高其吞吐量。 PAD-MAC通过允许SU活动仅在估计的空闲时隙持续时间内利用许可的信道来进行控制,并实现预测性和快速的信道切换。为了评估所提出的PAD-MAC的性能,我们将其与分布式QoS感知MAC(QC-MAC)和先听后听MAC方案进行比较。大量的数值结果表明,PAD-MAC在SU吞吐量,SU信道切换率和PU到SU冲突率方面都有显着改善。

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