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Optimal multicarrier faster-than-Nyquist signaling under symbol-by-symbol detection

机译:在符号符号检测下最佳多载波更快比奈奎斯特信令

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摘要

We consider the multicarrier faster-than-Nyquist (MFTN) signaling under low complexity symbol-by symbol detection, where the lattice structure and time-frequency spacing play key roles in determining the system performance. Specifically, the energy of intersymbol interference (ISI) and intercarrier interference (ICI) introduced by time-frequency packing is taken as a figure of merit. In this regard, we firstly prove the asymptotical equivalence of the hexagonal MFTN and conventional rectangular MFTN signaling systems when the time packing factor is small enough, and we also reveal the potential benefit of hexagonal MFTN with respect to conventional rectangular MFTN for moderate time-frequency spacing. Then, an optimal MFTN signaling scheme under the given signaling efficiency is proposed. By jointly optimizing the lattice structure and time-frequency spacing to minimize the interference energy, we show that the optimal time-frequency spacing can be accurately obtained with substantially reduced complexity than conventional exhaustive search scheme. Finally, we demonstrate that there is a good match between minimizing the interference energy and maximizing the achievable spectral efficiency, which is also considered to be an important figure for MFTN signaling system. Our theoretical analysis and numerical results validate that the proposed scheme outperforms conventional MFTN signaling system. (C) 2017 Elsevier Inc. All rights reserved.
机译:我们在低复杂性符号检测下考虑多载波比奈奎斯特(MFTN)信令(MFTN)信令,其中晶格结构和时频间距在确定系统性能时扮演密钥角色。具体地,通过时频包装引入的偶尔ymbol干扰(ISI)和互载干扰(ICI)的能量被视为优点的图。在这方面,当时间包装因子足够小时,我们首先证明了六边形MFTN和传统的矩形MFTN信号传导系统的渐近等效性,并且我们还揭示了六边形MFTN相对于常规矩形MFTN的潜在益处,以进行中等时间频率间距。然后,提出了在给定信令效率下的最佳MFTN信令方案。通过共同优化晶格结构和时频间隔,以最小化干扰能量,我们表明可以精确地获得最佳时频间隔,而比传统的详尽搜索方案显着降低。最后,我们证明在最小化干扰能力和最大化可实现的光谱效率之间存在良好的匹配,这也被认为是MFTN信号系统的重要图。我们的理论分析和数值结果验证了所提出的方案优于传统的MFTN信号传导系统。 (c)2017年Elsevier Inc.保留所有权利。

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