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Adaptive detection method of FTN signalling at constant Nyquist sampling rate

机译:恒定奈奎斯特采样率的FTN信号自适应检测方法

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Faster-than-Nyquist (FTN) signalling, as a candidate technology of fifth generation, can transmit more data with the same bandwidth. In the adaptive transmission system based on FTN signalling (FNS), the transmitter changes the packing ratios to adapt to the wireless channels. The scheme that combines the adaptive coding and modulation with the FNS has higher spectral efficiency. However, the symbol rate changing with the packing ratio challenges the receiver of adaptive transmission system based on FNS. Moreover, the decoding complexity based on viterbi algorithm (VA) is increasing exponentially when the packing ratios of FNS decrease. In this study, the authors proposed an adaptive detection method to detect FTN signal at constant sampling rate. The proposed method adopted an linear minimum mean square error (LMMSE) equaliser to solve the mismatch of the symbol rate and the sampling rate. Their simulation results show that the adaptive detection method of FNS can approach the optimal bit error rate performance of the coded FTN system. At the same time, the proposed method can avoid the complexity induced by the variable sampling rate in the adaptive transmission system based on FNS.
机译:快于奈奎斯特(FTN)信令作为第五代的候选技术,可以在相同带宽下传输更多数据。在基于FTN信令(FNS)的自适应传输系统中,发送器改变打包率以适应无线信道。将自适应编码和调制与FNS相结合的方案具有更高的频谱效率。然而,符号率随压缩率的变化而变化,对基于FNS的自适应传输系统的接收机提出了挑战。此外,当FNS的压缩率降低时,基于维特比算法(VA)的解码复杂度呈指数增长。在这项研究中,作者提出了一种自适应检测方法,以恒定采样率检测FTN信号。该方法采用了线性最小均方误差(LMMSE)均衡器来解决符号率和采样率的不匹配问题。他们的仿真结果表明,FNS的自适应检测方法可以达到编码FTN系统的最佳误码率性能。同时,该方法可以避免基于FNS的自适应传输系统中可变采样率所引起的复杂性。

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