Underlay Cognitive Radio with Imperfect Transceiver Electronics under Nakagami-m Fading

Leila Tlebaldiyeva, T. Tsiftsis
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引用次数: 3

Abstract

It is important to consider transceiver hardware impairments (i.e., imperfect electronic circuits) while designing practical communication systems. Most common transceiver imperfections are oscillator phase noise, I/Q imbalance, amplifier non-linearities, self-interference in a full duplex mode, etc. In this paper, the performance of a dual-hop decode-and-forward underlay cognitive radio network with transceiver hardware impairments and interference power constraints is studied. Closed-form expressions for the exact outage probability (OP) over independent and non-identically distributed Nakagami-m fading channels are presented. More, asymptotic analysis of the OP at high signal-to-noise-distortion ratio values is analyzed. A relation between the hardware impairment level and the transmission rate is investigated using numerical simulations. Hardware impairment level is evaluated for various fading severity parameters of the channel when OP and source power are given. Monte Carlo simulations results corroborate the analytical ones.
Nakagami-m衰落下不完善收发电子器件的底层认知无线电
在设计实际通信系统时,考虑收发器硬件缺陷(即不完善的电子电路)是很重要的。最常见的收发器缺陷是振荡器相位噪声、I/Q不平衡、放大器非线性、全双工模式下的自干扰等。本文研究了具有收发器硬件缺陷和干扰功率约束的双跳译码转发底层认知无线网络的性能。给出了独立非同分布Nakagami-m衰落信道上精确中断概率(OP)的封闭表达式。进一步,分析了高信噪比下的OP的渐近分析。通过数值模拟研究了硬件损伤水平与传输速率之间的关系。在给定运维和源功率的情况下,对信道的各种衰落严重程度参数进行了硬件损伤等级评估。蒙特卡罗模拟结果与分析结果相吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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