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Beyond DVB-S2X: Faster-Than-Nyquist Signaling With Linear Precoding

机译:超越DVB-S2X:具有线性预编码的更快比奈奎斯特信令

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Faster-than-Nyquist (FTN) signaling with linear precoding is investigated as a potential technique to transcend digital video broadcasting-satellite-second generation extension (DVB-S2X). Combining cyclic prefix (CP), cyclic suffix (CS) and discrete Fourier transform (DFT) with existing linear precoding algorithms, such as G-to-minus-half (GTMH) precoding (GTMHP), the CPS-GTMH-DFTP algorithm is proposed to eliminate inter-symbol interference (ISI) for FTN signaling. By comparison with most existing algorithms, our proposed CPS-GTMH-DFTP algorithm requires much lower implementation complexity. Specifically, only two multipliers and the corresponding fast Fourier transform (FFT)/inverse fast Fourier transform (IFFT) operations are required with the proposed CPS-GTMH-DFTP algorithm, which makes our proposed algorithm more suitable for practical implementation. Furthermore, the CPS-GTMH-DFTP algorithm has better bit error rate (BER) performance than most existing precoding algorithms. Simulation results show that even when the time acceleration parameter and roll-off factor equal to 0.75 and 0.35 respectively, our proposed CPS-GTMH-DFTP algorithm can still approach the BER performance of the ISI-free Nyquist signaling for all the modulation types adopted in DVB-S2X. More precisely, with 256-amplitude phase shift keying (APSK), the BER performance degradation is almost 0.03 and 0.01 dB in uncoded and coded FTN systems respectively. As far as we know, with regard to low complexity ISI elimination algorithms for FTN signaling, this is the first time to achieve such excellent performance with a time acceleration parameter 0.75 and a practical roll-off factor 0.35.
机译:利用线性预编码的速度比奈奎斯特(FTN)信号传导作为超越数字视频广播 - 卫星第二代扩展(DVB-S2X)的潜在技术。将循环前缀(CP),循环后缀(CS)和离散傅里叶变换(DFT)与现有的线性预编码算法相结合,例如G-to-maze-barth(GTMH)预编码(GTMHP),CPS-GTMH-DFTP算法是建议消除FTN信令的符号间干扰(ISI)。通过与大多数现有算法进行比较,我们所提出的CPS-GTMH-DFTP算法需要更低的实现复杂性。具体地,需要两个乘法器和相应的快速傅立叶变换(FFT)/逆快速傅立叶变换(IFFT)操作,所提出的CPS-GTMH-DFTP算法使我们提出的算法更适合实际实现。此外,CPS-GTMH-DFTP算法比大多数现有的预编码算法具有更好的比特错误率(BER)性能。仿真结果表明,即使时间加速度参数和滚关因素分别等于0.75和0.35,我们所提出的CPS-GTMH-DFTP算法仍然可以接近ISI无奈奎斯特信令的BER性能,以了解所采用的所有调制类型DVB-S2X。更精确地,对于256幅度相移键控(APSK),分别在未编码和编码的FTN系统中几乎是0.03和0.01 dB的BER性能下降。据我们所知,关于FTN信号传导的低复杂性ISI消除算法,这是第一次实现具有时间加速度参数0.75和实际滚动因子0.35的这种优异性能。

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