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A Faster-Than-Nyquist (FTN)-Based Multicarrier System

机译:基于比奈奎斯特(FTN)更快的多载波系统

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摘要

Faster-than-Nyquist (FTN) signaling is regarded as a potential modulation format of 5G communication system for its high spectral efficiency. To further improve the spectral efficiency, researchers have extended the FTN signaling to the frequency dimension. However, the two-dimensional FTN signaling called multicarrier FTN (MFTN) signaling induces intersymbol interference and intercarrier interference (ICI), which challenges the receiver. Even the subcarriers are orthogonal, the MFTN signaling still induces the ICI. In this paper, we propose a new MFTN signaling transceiver with an FTN mapper and a linear minimum mean square error (LMMSE) equalizer. The FTN mapper is deployed on every subcarriers independently, which means that the MFTN is ICI-free. The proposed transceiver is compatible with the existing orthogonal frequency division multiplexing (OFDM) system and can detect the MFTN signal efficiently. The numerical results show that the bit error rate performance of the transceiver is close to the convolution code line. At the same time, the MFTN system with high-order modulation has power gains than the traditional OFDM system.
机译:快于奈奎斯特(FTN)信令因其高频谱效率而被视为5G通信系统的一种潜在调制格式。为了进一步提高频谱效率,研究人员已经将FTN信号扩展到频率范围。但是,称为多载波FTN(MFTN)信令的二维FTN信令会引起符号间干扰和载波间干扰(ICI),这对接收器构成了挑战。即使子载波是正交的,MFTN信令仍然会诱导ICI。在本文中,我们提出了一种具有FTN映射器和线性最小均方误差(LMMSE)均衡器的新型MFTN信令收发器。 FTN映射器独立部署在每个子载波上,这意味着MFTN不包含ICI。所提出的收发器与现有的正交频分复用(OFDM)系统兼容,并且可以有效地检测MFTN信号。数值结果表明,收发器的误码率性能接近卷积码线。同时,具有高阶调制的MFTN系统比传统的OFDM系统具有功率增益。

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