We present Affine Frequency Division Multiplexing (AFDM), a new chirp-based multicarrier transceiver scheme for high mobility communications in next-generation wireless systems. AFDM is based on discrete affine Fourier transform (DAFT), a generalization of discrete Fourier transform characterized with two parameters that can be adapted to better cope with doubly dispersive channels. Based on the derived input-output relation, the DAFT parameters underlying AFDM are set in such a way to avoid that time domain channel paths with distinct delays or Doppler frequency shifts overlap in the DAFT domain. The resulting DAFT domain impulse response thus conveys a full delay-Doppler representation of the channel. We show that AFDM can achieve the full diversity of linear time-varying (LTV) channels. Our analytical results are validated through numerical simulations, which evince that AFDM outperforms state-of-the-art multicarrier schemes in terms of bit error rate (BER) in doubly dispersive channels.
翻译:我们介绍了Affie 频率司多功能(AFDM),这是新一代无线系统高流动性通信的一个新的基于声频的多载器收发器计划。AFDM基于离散方形变异(DAFT),这是离散方形变异(Fourier 变异)的常规,有两个参数可以调整,以便更好地应对双分散渠道。根据输入-输出关系,AFDM的DAFT参数是为了避免时域通道路径在DAFT域内出现明显延迟或多普勒频变重叠的。DAFT域脉冲反应因此传达了该频道的全面延迟-多普勒代表。我们显示,AFDDMDM能够实现线形时间变换(LTV)渠道的充分多样性。我们的分析结果通过数字模拟得到验证,这表明AFDDMDMDM在双分解渠道的位误差率率(BER)方面超越了最先进的多载器计划。