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首页> 外文期刊>IEEE Transactions on Signal Processing >Hexagonal Multicarrier Modulation: A Robust Transmission Scheme for Time-Frequency Dispersive Channels
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Hexagonal Multicarrier Modulation: A Robust Transmission Scheme for Time-Frequency Dispersive Channels

机译:六角形多载波调制:时频色散信道的鲁棒传输方案

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By regarding signal transmission as tiling of the time-frequency plane, we propose a multicarrier transmission scheme on hexagonal lattice, coined the term hexagonal multicarrier modulation. To optimally combat the impact of the propagation channels, the underlying lattice parameters and the pulse shape of modulation waveform are jointly optimized to adapt to the channel scattering function from a minimum energy perturbation point of view. It comes out that there exist two equivalent pulse and lattice matching criteria for each channel scattering function to achieve minimal interpulse interference (IPI). Robustness of the proposed system against the wireless channels is analyzed in terms of robustness factor. Numerical analysis and simulation results show that the hexagonal multicarrier transmission system outperforms conventional orthogonal-frequency-division multiplexing (OFDM) and lattice-OFDM (LOFDM) systems with regard to robustness against channel dispersion.
机译:通过将信号传输视为时频平面的平铺,我们提出了六边形格子上的多载波传输方案,该术语被称为六边形多载波调制。为了最佳地抵抗传播通道的影响,从最小能量扰动的角度出发,共同优化基础晶格参数和调制波形的脉冲形状,以适应通道散射函数。结果表明,对于每个信道散射函数,存在两个等效的脉冲和晶格匹配标准,以实现最小的脉冲间干扰(IPI)。根据鲁棒性因子分析了所提出系统针对无线信道的鲁棒性。数值分析和仿真结果表明,六边形多载波传输系统在抗信道分散性方面优于传统的正交频分复用(OFDM)和点阵OFDM(LOFDM)系统。

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