Frequency and quadrature amplitude modulation for 5G networks

Shangbin Wu, Yue Wang, Mohammed Al-Imari, M. Nekovee
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引用次数: 8

Abstract

The emerging fifth generation (5G) wireless access network, aiming at providing ubiquitous and high data rate connectivity, is envisaged to deploy large number of base stations with higher density and smaller sizes, where inter-cell interference (ICI) becomes a critical problem. Frequency quadrature amplitude modulation (FQAM) has been shown to reduce the ICI at the cell edge therefore achieve a higher transmission rate for cell edge users. This paper investigates the detection of FQAM symbols and noise plus ICI in a multi-cell FQAM communication network. Turbo-coded bit error rate (BER) and frame error rate (FER) of multi-cell FQAM are studied. Also, the cumulative distribution function (CDF) of signal to noise plus interference (SINR) of multi-cell FQAM is computed using stochastic geometry. It is demonstrated via simulations FQAM outperforms quadrature amplitude modulation (QAM) in BER and FER when ICI is significant. Furthermore, FQAM can achieve better SINR than QAM.
5G网络的频率和正交调幅
新兴的第五代(5G)无线接入网旨在提供无处不在的高数据速率连接,设想部署大量密度更高、尺寸更小的基站,小区间干扰(ICI)成为关键问题。频率正交调幅(FQAM)已被证明可以降低小区边缘的ICI,从而为小区边缘用户实现更高的传输速率。研究了多小区FQAM通信网络中FQAM符号和噪声加ICI的检测问题。研究了多小区FQAM的turbo编码误码率(BER)和帧误码率(FER)。利用随机几何计算了多单元FQAM的信噪干扰累积分布函数(CDF)。仿真结果表明,当ICI显著时,FQAM在BER和FER方面优于正交调幅(QAM)。此外,FQAM比QAM具有更好的信噪比。
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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