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Optimal Bandwidth Selection in Multi-Channel Cognitive Radio Networks: How Much is Too Much?

机译:多通道认知无线电网络中的最佳带宽选择:多少太多了?

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Cognitive radio improves spectrum efficiency by allowing secondary users (SU) to dynamically exploit the idle spectrum owned by primary users (PU). This paper studies optimal bandwidth allocation for SUs. Consider the following tradeoff: a SU increases its instantaneous throughput by accessing larger bands, but channel switching overhead (due to the dynamics of PU activities) and contention among multiple SUs create higher liability for larger bandwidths. So how much is too much? In this paper, we find the optimal bandwidth allocation in both the single SU and multiple SU cases, accounting for the effects of channel switching overhead. Our result is validated through both numerical simulation and real channel activity traces. We also study the impact of various factors on SU performance, namely, PU channel idle time and probability, PU channel correlation, and SU sensing and access schemes. The work sheds light on the design of spectrum sharing protocols in cognitive radio networks.
机译:认知无线电通过允许辅助用户(su)动态利用主用户(PU)所拥有的空闲频谱来提高频谱效率。本文研究了SUS的最佳带宽分配。考虑以下权限:SU通过访问较大的频段来提高其瞬时吞吐量,但是频道切换开销(由于PU活动的动态)和多个SU之间的争用为较大的带宽产生更高的责任。那么多少太多了?在本文中,我们在单个SU和多个SU案例中找到了最佳带宽分配,占通道切换开销的影响。我们的结果是通过数值模拟和实际频道活动迹线进行验证。我们还研究了各种因素对SU性能的影响,即PU通道空闲时间和概率,PU通道相关和SU感测和接入方案。工作揭示了认知无线电网络中频谱共享协议的设计。

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