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A Bayesian approach using M-QAM modulated primary signals for maximizing spectrum utilization in cognitive radio

机译:使用M-QAM调制的主信号的贝叶斯方法可最大化认知无线电中的频谱利用率

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Recently, cognitive radio (CR) has gained a lot of attention with its spectrum sensing feature, because it provides better spectrum utilization in wireless communication. The spectrum sensing plays a major role in CR. In this paper, a new technique of spectrum sensing is proposed in which optimal Bayesian detector is used to detect the presence of M-ary quadrature amplitude modulated primary signal. This proposed approach acts as optimal detector when primary user is idle for most of the time. The analytical expression for detection statistic of the proposed technique over additive white gaussian noise channel is derived and the detection and false alarm probabilities are also calculated. These probabilities are compared with M-ary phase shift keying modulated primary signal scheme. The nature of false alarm probability is also analysed for different priori probability cases. Simulation results show that the proposed approach achieves higher spectrum utilization and also maximizes the throughput of secondary user in the CR network.
机译:近年来,认知无线电(CR)凭借其频谱感测功能获得了广泛的关注,因为它在无线通信中提供了更好的频谱利用率。频谱感测在CR中起主要作用。在本文中,提出了一种频谱检测的新技术,其中使用最佳贝叶斯检测器来检测M元正交幅度调制初级信号的存在。当主要用户大部分时间空闲时,该提议的方法可作为最佳检测器。推导了该技术在加性高斯白噪声信道上的检测统计量的解析表达式,并计算了检测概率和虚警概率。将这些概率与M元相移键控调制的主信号方案进行比较。还针对不同的先验概率情况分析了虚警概率的性质。仿真结果表明,该方法具有较高的频谱利用率,并且可以最大程度地提高CR网络中辅助用户的吞吐量。

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