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Block-time of arrival/leaving estimation to enhance local spectrum sensing under the practical traffic of primary user

机译:在主要用户的实际业务量下,到达/离开的块时间估计以增强本地频谱感测

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摘要

With a long sensing period, the inter-frame spectrum sensing in IEEE 802.22 standard is vulnerable to the effect of the traffic of the primary user (PU). In this article, we address the two degrading factors that affect the inter-frame sensing performance with respect to the random arrival/leaving of the PU traffic. They are the noise-only samples under the random arrival traffic, and the PU-signal-contained samples under the random leaving traffic. We propose the model in which the intra-frame sensing cooperates with the inter-frame one, and the inter-frame sensing uses the time-of-arrival (ToA), and time-of-leave (ToL) detectors to reduce the two degrading factors in the inter-frame sensing time. These ToA and ToL detectors are used to search for the sample which contains either the ToA or ToL of the PU traffic, respectively, which allows the partial cancelation of the unnecessary samples. At the final stage, the remaining samples are input into a primary user detector, which is based on the energy detection scheme, to determine the status of PU traffic in the inter-frame sensing time. The analysis and the simulation results show that the proposed scheme enhances the spectrum-sensing performance compared to the conventional counter-part.
机译:由于检测周期较长,IEEE 802.22标准中的帧间频谱检测易受主要用户(PU)流量的影响。在本文中,我们针对PU流量的随机到达/离开,讨论了影响帧间感知性能的两个降级因素。它们是随机到达流量下的纯噪声样本,以及随机离开流量下的包含PU信号的样本。我们提出了一种模型,其中帧内感测与帧间感测配合使用,并且帧间感测使用到达时间(ToA)和离开时间(ToL)检测器来减少两者帧间检测时间的下降因素。这些ToA和ToL检测器分别用于搜索包含PU业务量的ToA或ToL的样本,从而可以部分取消不必要的样本。在最后阶段,将剩余样本输入到基于能量检测方案的主要用户检测器中,以确定帧间检测时间内PU流量的状态。分析和仿真结果表明,与传统的对端相比,该方案增强了频谱感知性能。

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