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Error exponent analysis of energy-based Bayesian decentralized spectrum sensing under fading

机译:衰落下基于能量的贝叶斯分散频谱感知的误差指数分析

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This paper considers decentralized spectrum sensing, i.e., detection of occupancy of the primary users' spectrum by a set of Cognitive Radio (CR) nodes, under a Bayesian set-up. The nodes use energy detection to make their individual decisions, which are combined at a Fusion Center (FC) using the K-out-of-N fusion rule. The channel from the primary transmitter to the CR nodes is assumed to undergo fading, while that from the nodes to the FC is assumed to be error-free. In this scenario, a novel concept termed as the Error Exponent with a Confidence Level (EECL) is introduced to evaluate and compare the performance of different detection schemes. Expressions for the EECL under general fading conditions are derived. As a special case, it is shown that the conventional error exponent both at individual sensors, and at the FC is zero. Further, closed-form lower bounds on the EECL are derived under Rayleigh fading and lognormal shadowing. As an example application, it answers the question of whether to use pilot-signal based narrowband sensing, where the signal undergoes Rayleigh fading, or to sense over the entire bandwidth of a wideband signal, where the signal undergoes lognormal shadowing. Theoretical results are validated using Monte Carlo simulations.
机译:本文考虑了分散频谱感知,即在贝叶斯设置下通过一组认知无线电(CR)节点检测主要用户频谱的占用情况。节点使用能量检测来制定自己的决策,并使用K-out-of-N融合规则在融合中心(FC)进行合并。从主发射机到CR节点的信道被假定为衰落,而从节点到FC的信道被假定为无差错。在这种情况下,引入了一种新概念,称为具有置信度的错误指数(EECL),以评估和比较不同检测方案的性能。推导了一般衰落条件下的EECL表达式。作为一种特殊情况,表明在各个传感器和FC处的常规误差指数均为零。此外,在瑞利衰落和对数正态阴影下得出EECL上的封闭形式下界。作为示例应用程序,它回答了以下问题:是使用基于导频信号的窄带感测(在该信号处经历瑞利衰落),还是在宽带信号的整个带宽上进行感测(在该信号处经历对数正态阴影)。理论结果使用蒙特卡洛模拟进行了验证。

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