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Selective-Reporting-Based Cooperative Spectrum Sensing Strategies for Cognitive Radio Networks

机译:认知无线电网络中基于选择报告的协作频谱感知策略

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摘要

Cooperative spectrum sensing may cause a high sensing overhead to secondary users (SUs) and induce much interference to primary users (PUs) due to detection result reporting, although it can improve the detection probability. In this paper, we propose two novel selective-reporting-based cooperative spectrum sensing strategies, called (RSR) and (BSR), aimed at reducing the sensing overhead of SUs and limiting the induced interference to PUs. By considering the interference impact on decision reporting from PUs, we derive closed-form expressions of false-alarm probability and detection probability over Rayleigh fading channels for traditional, RSR, and BSR strategies, respectively. We also analyze the interference impact on PUs from cooperative SUs and then show that such interference can be limited by power control to satisfy a given quality-of-service (QoS) requirement of primary transmissions. Finally, numerical and simulation results reveal that the proposed strategies can remarkably reduce the sensing overhead without degrading the detection performance compared with the traditional case. Moreover, we show that both RSR and BSR can achieve minimized miss detection probability and sensing overhead by adjusting the sensing time allocation.
机译:协作频谱感测虽然会提高检测概率,但由于检测结果报告,可能会给辅助用户(SU)带来较高的检测开销,并引起对主要用户(PU)的大量干扰。在本文中,我们提出了两种新颖的基于选择性报告的协作频谱感知策略,称为(RSR)和(BSR),旨在减少SU的感知开销并限制对PU的感应干扰。通过考虑干扰对PU决策报告的影响,我们分别得出了传统,RSR和BSR策略在Rayleigh衰落信道上虚警概率和检测概率的闭式表达式。我们还分析了协作SU对PU的干扰影响,然后表明可以通过功率控制来限制此类干扰,以满足主传输的给定服务质量(QoS)要求。最后,数值和仿真结果表明,与传统情况相比,所提出的策略可以在不降低检测性能的前提下,显着降低检测开销。此外,我们表明RSR和BSR都可以通过调整感测时间分配来实现最小的未命中检测概率和感测开销。

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