系统工程与电子技术

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超奈奎斯特的频谱效率与参数优化分析

吴湛击, 车慧, 李少冉, 王雨晴   

  1. 北京邮电大学信息与通信工程学院, 北京 100876
  • 出版日期:2016-04-25 发布日期:2010-01-03

Spectral efficiency and parameter optimization analysis for  faster-than-Nyquist signaling

WU Zhan-ji, CHE Hui, LI Shao-ran, WANG Yu-qing   

  1. School of Information and Communication Engineering, Beijing University of Posts and Telecommunications, Beijing 100876, China
  • Online:2016-04-25 Published:2010-01-03

摘要:

对超奈奎斯特(faster than Nyquist, FTN)和奈奎斯特系统的频谱效率进行了对比分析。在绝对带宽的前提下,首先证明了基于根升余弦函数脉冲的单载波FTN可达速率大于奈奎斯特可达速率,并推导了有子载波间干扰的多载波FTN的频谱效率公式。本文证明了单载波FTN的频谱效率大于奈奎斯特系统的频谱效率,并且证明了单载波FTN的频谱效率随着滚降因子的减小而增大。基于频谱效率公式和数值仿真,本文给出了多载波FTN对于不同滚降因子的最优子载波间隔。结果表明,即使存在子载波间干扰,基于最优子载波间隔的多载波FTN频谱效率也高于正交系统(奈奎斯特)的频谱效率。

Abstract:

Spectral efficiency of faster-than-Nyquist (FTN) and Nyquist systems are investigated. It is proved that the achievable rate of the single carrier FTN (SC-FTN) system with root raised cosine pulse is higher than the single carrier Nyquist system with the same absolute bandwidth. With the inter-carrier interference (ICI), the formula for spectral efficiency of multi-carrier FTN (MC-FTN) is given. For the same roll-off factor, the spectral efficiency of SC-FTN is greater than the single carrier Nyquist. For different roll-off factors, the spectral efficiency of SC-FTN system increases as the roll-off factor decreases. Based on the spectral efficiency formulas and numerical simulation, the corresponding optimal subcarrier spacing for MC-FTN is given in this paper. Even though there is ICI, the spectral efficiency of MC-FTN with optimal subcarrier spacing exceeds the orthogonal Nyquist system.