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A Selective-Relay Based Cooperative Spectrum Sensing Scheme without Dedicated Reporting Channels in Cognitive Radio Networks

机译:认知无线电网络中基于选择性中继的无专用报告信道的协作频谱感知方案

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摘要

Typically, each cooperative spectrum sensing process requires two phases: the primary user's signal detection phase, in which all cognitive users attempt to detect the presence of the primary user within a certain observation window (called signal detection overhead); and the initial detection result reporting phase, in which the cognitive users forward their detection results to a fusion center. To avoid interfering with the primary user in the reporting phase, previous research assumed that there is a common control channel (also known as dedicated reporting channel) between the cognitive users and fusion center, which, however, requires extra channel resources and introduces an additional complexity due to the dedicated channel resource management. In this paper, we propose a selective-relay based cooperative spectrum sensing scheme, which is able to control and reduce the interference from cognitive reporting users to primary user without the dedicated channel. We analyze the interference impact on the primary user and show that the interference induced by the reporting users is controllable and can be reduced to satisfy a given outage probability requirement of the primary transmissions. In addition, we investigate the receiver operating characteristics (ROC) of the traditional cooperative sensing scheme (with dedicated reporting channel) and the proposed scheme (without dedicated reporting channel) by jointly considering the signal detection and reporting phases. It is proven that, given a target detection probability, a unique optimal signal detection overhead exists to minimize an asymptotic overall false alarm probability in high SNR regions. We illustrate that, compared to the traditional scheme, the selective-relay based cooperative sensing scheme can save the dedicated channel resources without sacrificing ROC performance. Numerical results also show that, under a guaranteed overall detection probability, an overall false alarm probability can be minimi-n-nzed through an optimization of the signal detection overhead.
机译:通常,每个协作频谱感测过程都需要两个阶段:主要用户的信号检测阶段,其中所有认知用户都尝试在某个观察窗口内检测主要用户的存在(称为信号检测开销);初始检测结果报告阶段,认知用户将其检测结果转发到融合中心。为了避免在报告阶段干扰主要用户,先前的研究假设认知用户和融合中心之间存在一个公共控制通道(也称为专用报告通道),但是这需要额外的通道资源并引入了额外的通道资源。由于专用信道资源管理而导致的复杂性。在本文中,我们提出了一种基于选择性中继的协作频谱感知方案,该方案能够控制并减少认知报告用户对主要用户的干扰,而无需专用信道。我们分析了对主要用户的干扰影响,并表明由报告用户引起的干扰是可控的,可以降低以满足主要传输的给定中断概率要求。此外,我们通过共同考虑信号检测和报告阶段,研究了传统协作感知方案(具有专用报告通道)和建议方案(无专用报告通道)的接收机工作特性(ROC)。事实证明,在给定目标检测概率的情况下,存在唯一的最佳信号检测开销,以最大程度地降低高SNR区域中的渐近总体虚警概率。我们说明,与传统方案相比,基于选择性中继的协作感知方案可以节省专用信道资源,而不会牺牲ROC性能。数值结果还表明,在保证的总检测概率下,通过优化信号检测开销可以使总的虚警概率最小化。

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