基于mimo的动态频谱接入设备Nakagami信道多锥度检测

E. G. Yousif, T. Ratnarajah, M. Sellathurai
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引用次数: 1

摘要

多锥度估计器被认为是重构信号功率谱最有效的非参数方法。多锥度探测器已被强烈推荐用于认知无线电系统的频谱传感。本文在假设发射节点和检测节点均采用单用户多输入多输出(MIMO)结构的情况下,提出了一种新的、精确的多锥度检测器模型。我们提出了决策变量在假设检验环境下的性能的封闭形式数学表达式。我们使用Phase-Type分布对决策变量进行建模,其中我们推导出零假设和备用假设的确切分布参数。在此基础上,对中上衰落信道的平均检测概率进行了精确的定界。最后,将检测到的平均概率最大化,得到预先确定的虚警概率。结果表明,所得到的解析模型是准确的。作为一种普遍趋势,我们发现调整观测序列的长度对检测器的性能没有影响。另一方面,发现增加接收支路的数量可以显著增强mimo -多锥度方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MIMO-based Multitaper detection over Nakagami channels for dynamic spectrum access devices
The multitaper estimator is considered as the most powerful nonparametric method for reconstructing the power spectrum of a signal. The multitaper detector has been strongly recommended to be used for spectrum sensing in cognitive radio systems. In this paper we provide a new and accurate model for the Multitaper detector assuming that both the transmitting and detecting nodes are employing single-user multiple-input-multiple-output (MIMO) structures. We present closed form mathematical expressions for the performance of the decision variable within the hypotheses testing context. We model the decision variable using the Phase-Type distribution, where we derive the exact distribution parameters for both the null and the alternate hypotheses. Furthermore, we accurately bound the average probability of detection over Nakagami fading channels. Finally, the average probability of detection is maximized to yield a predetermined probability of false alarm. The results show that the obtained analytical models are accurate. As a generic trend, it is found that adjusting the length of observed sequences has no effect on the detector performance. On the other hand, it is found that increasing the number of receiving branches provides a significant enhancement for the MIMO-Multitaper method.
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