Experimental over-the-air testing for coexistence of 4G and a spectrally efficient non-orthogonal signal

T. Xu, I. Darwazeh
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引用次数: 2

Abstract

This work investigates several experimental validations for the bandwidth compressed multicarrier signal termed spectrally efficient frequency division multiplexing (SEFDM). The signal compresses bandwidth, therefore improved spectral efficiency, by packing sub-carriers closer. Unlike typical orthogonal frequency division multiplexing (OFDM) signals, SEFDM violates the orthogonality criterion, therefore self-created inter carrier interference (ICI) is introduced. In this work, to ameliorate the effect of interference, a method based on sub-carrier pulse shaping, targeting massive machine-type communication (mMTC), is developed and tested experimentally. Practical over-the-air testing of the proposal is operated on commercially developed software defined radio platforms. Results show that in the condition of coexistence scenario SEFDM can significantly reduce interference when used with existing long term evolution (LTE) signals leading to improved quality of service. The throughput of LTE signals is therefore improved from 49.92 Mbps to 63.21 Mbps. Additionally, the proposed pulse shaping Nyquist-SEFDM performs well in scenarios where the spectrum is limited and in fact it outperforms pulse shaped OFDM significantly, both in terms of bandwidth saving and throughput, which is boosted from 4.35 Mbps to 43.36 Mbps.
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4G和频谱效率高的非正交信号共存的实验无线测试
本文研究了带宽压缩多载波信号频谱高效频分复用(SEFDM)的几个实验验证。信号压缩带宽,因此提高频谱效率,通过包装子载波更近。与典型的正交频分复用(OFDM)信号不同,SEFDM信号违反正交性准则,因此引入了自产生载波间干扰(ICI)。本文针对大规模机器型通信(mMTC),提出了一种基于子载波脉冲整形的抗干扰方法,并进行了实验验证。该提案的实际空中测试在商业开发的软件定义无线电平台上进行。结果表明,在共存条件下,SEFDM与现有的LTE信号一起使用可以显著减少干扰,从而提高服务质量。因此,LTE信号的吞吐量从49.92 Mbps提高到63.21 Mbps。此外,所提出的脉冲整形Nyquist-SEFDM在频谱有限的情况下表现良好,实际上它在带宽节省和吞吐量方面都明显优于脉冲整形OFDM,从4.35 Mbps提高到43.36 Mbps。
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