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A low-interference relay selection for decode-and-forward cooperative network in underlay cognitive radio

机译:底层认知无线电中解码转发协作网络的低干扰中继选择

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In the underlay decode-and-forward (DaF) cooperative cognitive radio (CR) network, an optimal relay can be selected by the conventional max-min selection on the condition of not violating the interference temperature (IT) limit. However, the max-min selection may cause some extra amount of interference to the primary system (PS) such that the so-called transfer ratio (TR) can be lower. Note that TR is newly defined as the ratio of the secondary system's (SS's) capacity gain to the PS's capacity loss due to the activities of SS. In order to improve the TR value, we are motivated by the pricing function in Game theory to propose a novel low-interference relay selection by taking the impacts of the interference from SS to PS into consideration. Using the low-interference selection, however, the optimal relay may not always be picked. To clarify this phenomenon, the still optimal probability is defined as the probability of selecting the optimal relay by the proposed scheme. In addition, the impact of the low-interference selection on the SS's capacity is also analyzed. The simulation results prove not only the exactness of the analytical results but also the superior performance in terms of the TR value and total capacity which also indicates that a higher spectrum efficiency can be achieved. It is believed that the results of this paper can provide an alternative viewpoint of evaluating the spectrum efficiency and inspire more interesting and important research topics in the future.
机译:在底层解码转发(DaF)协作认知无线电(CR)网络中,可以在不违反干扰温度(IT)限制的情况下,通过常规的max-min选择来选择最佳中继。但是,最大-最小选择可能会对主系统(PS)造成一些额外的干扰,以至于所谓的传输率(TR)可能会更低。注意,TR被新定义为由于SS的活动而导致的辅助系统(SS)的容量增益与PS的容量损失之比。为了提高TR值,我们受博弈论中定价功能的启发,通过考虑SS到PS的干扰影响,提出了一种新颖的低干扰继电器选择。但是,使用低干扰选择可能无法始终选择最佳继电器。为了澄清这种现象,仍将最佳概率定义为通过所提出的方案选择最佳中继的概率。此外,还分析了低干扰选择对SS容量的影响。仿真结果不仅证明了分析结果的准确性,而且在TR值和总容量方面也表现出优异的性能,这也表明可以实现更高的频谱效率。相信本文的结果可以为评估频谱效率提供另一种观点,并在将来激发更多有趣和重要的研究课题。

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