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Unified multiple access structure based on FBMC modulation for multi-RAT coexistence in heterogeneous wireless networks

机译:异构无线网络中基于FBMC调制的多RAT共存统一多址结构

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摘要

With the evolution of the fifth generation (5G) and beyond heterogeneous wireless networks, telecommunications operators and researchers are driven to develop advanced transmission technologies that enable the coexistence of multiple radio access technologies (multi-RATs). By employing the efficient implementation of filter-bank multi-carrier (FBMC) transceiver and the scalable matrix transformation (SMT) module, in this study, a unified multiple access architecture termed as FBMC-SMT is proposed, which is capable of flexibly integrating with both 3G and 4G transmission schemes and improving the system performance. As a special case of FBMC-SMT, the performance evaluation of FBMC-CDMA is conducted by extensive simulation. It is verified that FBMC-CDMA with 16 subbands allocated outperforms the traditional single carrier wideband code division multiple access when the number of code channels assigned is larger than 5. Moreover, the signal-to-interference-plus-noise ratio analysis of FBMC-SMT is also given and matches the simulation results very well. Hence, the proposed FBMC-SMT can serve as a unified architecture to flexibly integrate multi-RATs, thus to meet variable application requirements in 5G and beyond heterogeneous wireless networks.
机译:随着第五代(5G)的演进以及超越异构无线网络的发展,电信运营商和研究人员被迫开发先进的传输技术,以实现多种无线电接入技术(multi-RAT)的共存。通过有效利用滤波器​​组多载波(FBMC)收发器和可伸缩矩阵变换(SMT)模块,本研究提出了一种统一的多路访问架构,称为FBMC-SMT,它能够与3G和4G传输方案,并提高系统性能。作为FBMC-SMT的特例,通过广泛的仿真来进行FBMC-CDMA的性能评估。验证了当分配的代码信道数大于5时,分配有16个子带的FBMC-CDMA优于传统的单载波宽带码分多址。此外,FBMC-的信号干扰加噪声比分析还给出了SMT,它与仿真结果非常匹配。因此,提出的FBMC-SMT可以用作统一架构,以灵活地集成多RAT,从而满足5G以及超越异构无线网络的可变应用需求。

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