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Efficient and Fair Bandwidth Allocation in Multichannel Cognitive Radio Networks

机译:多通道认知无线电网络中的有效公平带宽分配

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Cognitive radio (CR) improves spectrum efficiency by allowing secondary users (SUs) to dynamically exploit the idle spectrum owned by primary users (PUs). This paper studies optimal bandwidth allocation of SUs for throughput efficiency. Consider the following tradeoff: an SU increases its instantaneous throughput by accessing more spectrum, but channel access/switching overhead, contention among multiple SUs, and dynamic PU activity create higher liability for larger bandwidths. So how much is too much? In this paper, we study the optimal bandwidth allocation for multiple SUs. Our approach is twofold. We first study the optimal bandwidth an SU should use to maximize the per-SU throughput in the long term. The optimal bandwidth is derived in the context of dynamic PU activity, where we consider both independent and correlated PU channel scenarios while accounting for the effects of channel switching overhead. We further consider the case of suboptimal spectrum use by SUs in the short term due to PU activity dynamics. We propose an efficient channel reconfiguration (CREC) scheme to improve SUs' performance. We use real PU channel activity traces in the simulations to validate our results. The work sheds light on the design of spectrum sharing protocols in cognitive radio networks.
机译:认知无线电(CR)通过允许次要用户(SU)动态利用主要用户(PU)拥有的空闲频谱来提高频谱效率。本文研究了SU的最佳带宽分配,以提高吞吐效率。考虑以下折衷:SU通过访问更多频谱来增加其瞬时吞吐量,但是信道访问/切换开销,多个SU之间的争用以及动态PU活动为更大的带宽带来了更大的负担。那么多少太多了?在本文中,我们研究了多个SU的最佳带宽分配。我们的方法是双重的。我们首先研究一个SU应该使用的最佳带宽,以从长远来看最大化每个SU的吞吐量。最佳带宽是在动态PU活动的背景下得出的,在这种情况下,我们考虑了独立和相关的PU信道方案,同时考虑了信道切换开销的影响。由于PU活动的动态性,我们将在短期内进一步考虑SU使用频谱欠佳的情况。我们提出了一种有效的信道重新配置(CREC)方案,以提高SU的性能。我们在仿真中使用真实的PU通道活动轨迹来验证我们的结果。这项工作为认知无线电网络中的频谱共享协议的设计提供了启示。

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