面向移动认知用户的任意相关多天线接收机性能分析

Dhaval K. Patel, Brijesh Soni, Y. Guan, Sumei Sun, Yoong Choon Chang, J. Lim
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引用次数: 1

摘要

在空间有限的情况下,多天线认知无线电(CR)系统中的天线间距很近,并且经常发生相互关联。本文分析了任意相关天线在中真米衰落信道下对移动CR用户的感知性能。特别是,作为一种特例,推导了基于三任意相关分集分支选择的移动CR用户平均检测概率解析表达式。在此基础上,分析了接收机工作特性曲线下面积,表征了能量探测器在迁移率下的性能。由于二元超几何函数是单调递减的,导出的表达式收敛速度快。蒙特卡罗模拟验证了解析表达式。结果表明,天线相关性降低了检测性能。此外,CR用户的高速进一步降低了检测性能,特别是在深度衰落信道场景下。这项工作为CR车辆提供了一个现实的感知框架。
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Performance Analysis of Arbitrary Correlated Multiantenna Receiver for Mobile Cognitive User
In limited space scenarios, the antennas in the multi-antenna cognitive radio (CR) system are closely spaced and often experience correlation among them. In this paper, the sensing performance of arbitrary correlated antennas over Nakagami-m fading channel for the mobile CR user is analysed. In particular, the analytical expression for the average detection probability for a mobile CR user employing the selection combining with triple arbitrary correlated diversity branches is derived as a special case. Furthermore, to characterize the performance of energy detector under mobility, the area under the curve of receiver operating characteristic is analysed. The derived expressions converge quickly due to the monotonically decreasing hypergeometric function of two variables. The Monte Carlo simulations substantiate the analytical expressions. Results indicate that antenna correlation deteriorates detection performance. Moreover, the high speed of CR users further decreases the detection performance, especially in the deep fading channel scenarios. This work provides a realistic sensing framework for the CR enabled vehicles.
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