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A Novel CoMAC-based cooperative spectrum sensing scheme in cognitive radio networks

机译:认知无线电网络中基于CoMAC的新型协作频谱感知方案

摘要

Conventional cooperative spectrum sensing (CSS) schemes in cognitive radio networks (CRNs) require that the secondary users (SUs) report their sensing data sequentially to the fusion center, which yields long reporting delay especially in the case of large number of cooperative SUs. By exploiting the computation over multiple-access channel (CoMAC) method, this paper proposes a novel CoMAC-based CSS scheme that allows the cooperative SUs to encode their local statistics in transmit power and to transmit simultaneously the modulated symbols sequence carrying transmit power information to the fusion center. The fusion center then makes the final decision on the presence of primary users by recovering the overall test statistic of energy detection from the energy of the received signal. Performance metrics of the CoMAC-based CSS scheme, i.e., detection probability and false alarm probability, are further derived based on the central limit theorem. Finally, based on the derived detection and false alarm probabilities, both energy detection threshold and spectrum sensing time are optimized to improve the average throughput of the CRN.
机译:认知无线电网络(CRN)中的常规协作频谱感测(CSS)方案要求次要用户(SU)依次向融合中心报告其感测数据,这导致较长的报告延迟,尤其是在大量协作SU的情况下。通过利用多址访问信道(CoMAC)的计算方法,本文提出了一种基于CoMAC的新颖CSS方案,该方案允许协作SU在发送功率中编码其本地统计信息,并同时将携带发送功率信息的已调制符号序列发送到融合中心。然后,融合中心通过从接收信号的能量中恢复能量检测的总体测试统计信息,对主要用户的存在做出最终决定。基于中心极限定理进一步推导基于CoMAC的CSS方案的性能指标,即检测概率和虚警概率。最后,基于导出的检测和虚警概率,对能量检测阈值和频谱感测时间进行了优化,以提高CRN的平均吞吐量。

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