Time Precoding Enabled Non-Orthogonal Frequency Division Multiplexing

Waseem Ozan, P. Haigh, Bo Tan, I. Darwazeh
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引用次数: 7

Abstract

In this paper, we propose a time precoding scheme for cancelling inter-carrier interference in non-orthogonal frequency division multiplexing for the first time. Achieving high spectral efficiencies is a recurring and key challenge in wireless communications systems and researchers generally use high order and advanced modulation formats to approach this problem, in particular, non-orthogonal modulation formats are a topic of particular interest. Fast orthogonal frequency division multiplexing (F-OFDM) doubles the throughput of conventional OFDM by violating orthogonality of the quadrature carrier, causing interference in the real and imaginary domains. Here, we propose a precoding scheme that enables self-interference cancellation without the need of the interference level calculation. The proposed scheme is implemented in the context of a narrowband internet-of-things (NB-IoT) system and verified on a software define radio (SDR) testbed with realistic AWGN and multiple path channels from channel emulator for concept proving. By comparing with the standard OFDM transmission, the time precoded F-OFDM outperforms around 3dB by BER with same signal-to-ratio (SNR) level.
时间预编码使能非正交频分复用
本文首次提出了一种消除非正交频分复用中载波间干扰的时间预编码方案。实现高频谱效率是无线通信系统中一个反复出现的关键挑战,研究人员通常使用高阶和高级调制格式来解决这个问题,特别是,非正交调制格式是一个特别感兴趣的话题。快速正交频分复用(F-OFDM)通过破坏正交载波的正交性,在实域和虚域产生干扰,使传统OFDM的吞吐量增加了一倍。在这里,我们提出了一种无需计算干扰电平即可实现自干扰抵消的预编码方案。在窄带物联网(NB-IoT)系统中实现了该方案,并在软件定义无线电(SDR)试验台上进行了验证,该试验台具有真实的AWGN和来自信道模拟器的多路径信道,用于概念验证。与标准OFDM传输相比,在信噪比相同的情况下,时间预编码的F-OFDM传输比标准OFDM传输的误码率高出约3dB。
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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