Experimental implementation of real-time non-orthogonal multi-carrier systems in a realistic fading channel

Waseem Ozan, H. Ghannam, P. Haigh, I. Darwazeh
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引用次数: 5

Abstract

Spectrally efficient frequency division multiplexing (SEFDM) has the potential to improve spectrum utilization through bandwidth compression at the cost of self-induced inter-carrier interference. In this paper, an experimental test-bed is designed and implemented to evaluate the performance of SEFDM systems in real-time using frequency-domain channel estimation/equalization and iterative signal detection. Our innovation lies in the development and experimental, real-time implementation of baseband generation, signal assembly, signal decoding and a novel frequency-domain channel estimation and equalization method for the SEFDM transceiver. Our system compresses the transmitted signal bandwidth up to 60%, 30% and 20% for BPSK, QPSK and 8PSK respectively, offering significant bandwidth savings, and moving towards satisfying one of the key 5G challenges.
真实衰落信道中实时非正交多载波系统的实验实现
频谱高效频分复用(SEFDM)有潜力通过带宽压缩来提高频谱利用率,但代价是自诱导载波间干扰。本文设计并实现了一个基于频域信道估计/均衡和迭代信号检测的SEFDM系统实时性能评估实验测试平台。我们的创新在于开发和实验,实时实现基带生成,信号组装,信号解码和一种新的频域信道估计和均衡方法,用于SEFDM收发器。我们的系统分别将BPSK、QPSK和8PSK的传输信号带宽压缩到60%、30%和20%,提供了显著的带宽节省,并朝着满足5G的关键挑战之一迈进。
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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