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Sub-banding the Secondary Users' Channel in Cognitive Radio Networks Considering Unreliable Spectrum Sensing

机译:考虑不可靠频谱感测的认知无线电网络中的次级用户信道分组

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摘要

One of the most efficient methods to reduce the dropping and blocking probabilities of the secondary users (SUs) in cognitive radio networks is channel sub-banding strategy. This means that when all the channels are occupied by the primary and secondary users, then the SUs' channels can be divided into two sub-bands, and two SUs can use a sub-band, simultaneously. In this paper, we propose an opportunistic spectrum sharing system in cognitive radio networks in which, the channel sub-banding strategy is implemented. Furthermore, we describe the problem of channel sub-banding considering the spectrum sensing errors such as false alarm and miss-detection events for both initial and on-going SUs' calls. Due to unreliable spectrum sensing by the SUs and subsequently possible interference with the primary users, we assume that both primary and secondary users may lose the channel due to the collision. The proposed model is analyzed by a two-dimensional Markov chain model and for performance evaluation, metrics such as blocking and dropping probabilities and channel utilization are derived. Numerical and simulation results show the accuracy of the proposed model which can be used in the evaluation of future cognitive radio networks' performance.
机译:减少认知无线电网络中辅助用户(SU)掉线和阻塞概率的最有效方法之一是信道子带策略。这意味着,当所有信道都被主要和次要用户占用时,SU的信道可以分为两个子带,而两个SU可以同时使用一个子带。在本文中,我们提出了一种认知无线电网络中的机会频谱共享系统,其中实现了信道子带策略。此外,我们描述了考虑子频谱感知错误的信道子带问题,例如针对初始和正在进行的SU呼叫的虚警和误检测事件。由于SU不可靠的频谱感应以及随后可能对主要用户的干扰,我们假设主要用户和次要用户都可能由于冲突而丢失信道。通过二维马尔可夫链模型对提出的模型进行分析,并为进行性能评估,导出了诸如阻塞和掉落概率以及信道利用率之类的度量。数值和仿真结果表明该模型的准确性,可用于评估未来认知无线电网络的性能。

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