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Closed-form evaluation of area under the ROC of cooperative relay-based energy detection in cognitive radio networks

机译:认知无线电网络中基于协作中继的能量检测的ROC下区域的封闭形式评估

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In this article, we develop a closed form evaluation of the area under receiver operating characteristics (ROC) curve (AUC) when employed in the analysis of cooperative amplify-and-forward (CAF) relay-based energy detection. The developed analytical expression for AUC results into finite kth order derivative of the moment generating function of the end-to-end signal-to-noise ratio. The resulting closed-form expressions can be easily generalized across different fading channels and multi-relay system. We first consider a single amplify-and-forward (AF) relay based sensing and later extend the framework to multi-relay system. Both options of maximum ration combining (MRC) and square-law combining are analysed. We found out that direct sensing performs better than single relay sensing under certain scenario. However, the sensing performance is greatly enhanced when both direct and relay based sensing are combined to form a CAF relay detection system. Also, we show that MRC CAF relay sensing outperforms their corresponding SLC CAF relay sensing.
机译:在本文中,我们在分析基于协作放大和转发(CAF)中继的能量检测时,对接收器工作特征(ROC)曲线(AUC)下的区域进行了封闭形式的评估。所开发的AUC解析表达式可得出端到端信噪比的矩生成函数的有限k阶导数。可以很容易地在不同的淡入淡出通道和多重中继系统中将生成的封闭形式的表达式概括。我们首先考虑基于单个放大转发(AF)中继的感知,然后将框架扩展到多中继系统。分析了最大定量组合(MRC)和平方律组合的两种选择。我们发现,在某些情况下,直接感应的性能要优于单个继电器的感应。但是,当直接和基于中继的检测结合在一起以形成CAF中继检测系统时,检测性能会大大提高。此外,我们显示了MRC CAF中继感应优于其相应的SLC CAF中继感应。

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