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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Cooperative Spectrum Sensing with Adaptive Double-Threshold Based Energy Detector in Cognitive Radio Networks
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Cooperative Spectrum Sensing with Adaptive Double-Threshold Based Energy Detector in Cognitive Radio Networks

机译:认知无线电网络中基于自适应双阈值能量检测器的协作频谱感知

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摘要

Spectrum sensing is one of the key functionalities in the implementation of cognitive radio. It is used to sense the unused spectrum in an opportunistic manner. In this paper, we propose an energy detector with adaptive double-threshold for spectrum sensing, to optimize the detection performance at a fixed probability of false alarm (P_f) i.e. 0.1, which also overcomes sensing failure problem. In the present work, the detection threshold is made adaptive to the fluctuation of the received signal power in each local detector of cognitive radio (CR) user. Simulation results show that proposed scheme optimizes better detection performance and outperforms both conventional energy detector and cooperative spectrum sensing (CSS) method by 12.8 and 3.3% at -8 dB signal to noise ratio (SNR), respectively. While utilizing CSS with proposed adaptive double-threshold scheme, where each CR user use a double threshold detectors for local detection and send detection decisions to fusion center (FC) to give the final decision based on hard decision rule. It is further found that CSS with adaptive double-threshold improves detection performance around 26.8 and 7.6% as compare to CSS with single threshold and Hierarchical with quantization method at -10 dB SNR, respectively, under the case when a small number of sensing nodes are used in spectrum sensing.
机译:频谱感测是认知无线电实施中的关键功能之一。它用于以机会主义的方式感测未使用的频谱。在本文中,我们提出了一种具有双阈值自适应能量检测器的频谱检测器,以固定的误报概率(P_f)即0.1优化检测性能,这也克服了检测失败的问题。在本工作中,使检测阈值适应认知无线电(CR)用户的每个本地检测器中接收信号功率的波动。仿真结果表明,该方案在-8 dB信噪比(SNR)时,具有更好的检测性能,性能分别优于传统的能量检测器和协作频谱感测(CSS)方法,分别为12.8和3.3%。在将CSS与提出的自适应双阈值方案一起使用时,每个CR用户都使用双阈值检测器进行本地检测,并将检测决策发送到融合中心(FC)以基于硬决策规则给出最终决策。进一步发现,在感测节点数量较少的情况下,具有双阈值自适应的CSS分别比具有单阈值的CSS和采用量化方法的分层方法(在-10 dB SNR时)分别提高了26.8和7.6%的检测性能。用于频谱感应。

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