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Impact of Co-Channel Interference on Two-Way Relaying Networks with Maximal Ratio Transmission

机译:具有最大比率的双向中继网络的共信道干扰的影响

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摘要

Amplify-and-forward (AF) two-way relay networks (TWRNs) have become popular to provide spectrally efficient communication when range extension or energy efficiency is needed by utilizing a simple relay. However, their performance can be significantly degraded in practice due to co-channel interference (CCI) which is increasing due to growing number of wireless devices and recent cognitive and non-orthogonal multiple access techniques. With the motivation of improving the performance of AF-TWRNs, the use of maximal ratio transmission (MRT) is investigated to achieve high reliability while requiring low receiver complexity for the relay. First, the signal-to-interference-plus-noise ratio (SINR) expression is formulated and upper bounded. Then, tight lower bound expressions of outage probability (OP), sum symbol error rate (SSER), and upper bound ergodic sum rate (ESR) for each source and for the overall system are obtained. Besides, array and diversity gains are provided after deriving the asymptotic expressions of OP and SSER at high signal-to-noise ratio (SNR). Furthermore, the impact of channel estimation errors on the performance is also included. Finally, Monte Carlo simulation results which corroborate our theoretical findings are illustrated.
机译:放大和前进(AF)双向继电器网络(TWRNS)在通过利用简单的继电器需要范围延伸或能效时提供光谱有效的通信。然而,由于同信道干扰(CCI)由于越来越多的无线设备和最近的认知和非正交多通道技术而增加,它们的性能可以显着降低。通过提高AF-TWRNS性能的动机,研究了最大比率(MRT)的使用,以实现高可靠性,同时需要用于继电器的低接收器复杂性。首先,配制信号到干扰加噪声比(SINR)表达式和上界。然后,获得了用于每个源和整个系统的中断概率(OP),总和符号误差率(SSER)和上界ergodic总和率(ESR)的紧密下限表达。此外,在从高信噪比(SNR)下衍生OP和SSER的渐近表达后,提供阵列和分集增益。此外,还包括信道估计误差对性能的影响。最后,说明了蒙特卡罗模拟结果,其证实了我们的理论发现。

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