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Centralized cooperative spectrum sensing with multiple antennas over imperfect feedback channels

机译:在不完善的反馈信道上使用多个天线进行集中式协作频谱感应

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In this paper, we study the performance of a cooperative spectrum sensing (CSS) scheme over imperfect feedback channels, where N secondary users (SUs) collaborate in order to enhance the detection probability of a primary user (PU). The sensing process is divided into two phases: In the first phase each SU, which is equipped with multiple antennas, independently detect the PU signal. In the second phase, the SUs' local decisions are sent via erroneous and orthogonal feedback channels to a fusion center (FC), where a final decision is made. We utilize Bayesian criterion which accounts for the costs of misdetection and false alarm. Quasi-Newton method is employed to obtain the optimal number of antennas for a given SNR and vice versa. Our simulation results concur the mathematical derivations and validate the optimality of quasi-Newton method. We further show that the derived optimal fusion rule outperforms the OR rule, AND rule and MAJORITY rule.
机译:在本文中,我们研究了在不完善的反馈信道上协作频谱感知(CSS)方案的性能,其中N个次要用户(SU)协作以提高主要用户(PU)的检测概率。感测过程分为两个阶段:在第一阶段,每个配备有多个天线的SU独立检测PU信号。在第二阶段,SU的本地决策会通过错误和正交的反馈通道发送到融合中心(FC),并在此做出最终决策。我们利用贝叶斯准则,该准则考虑了错误检测和错误警报的成本。对于给定的SNR,采用拟牛顿法来获得天线的最佳数量,反之亦然。我们的仿真结果证实了数学推导,并验证了拟牛顿法的最优性。我们进一步表明,导出的最优融合规则优于OR规则,AND规则和MAJORITY规则。

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