Affine Frequency Division Multiplexing With Index Modulation: Full Diversity Condition, Performance Analysis, and Low-Complexity Detection

Yiwei Tao;Miaowen Wen;Yao Ge;Jun Li;Ertugrul Basar;Naofal Al-Dhahir
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Abstract

Affine frequency division multiplexing (AFDM) is a novel modulation technique based on chirp signals that has been recently proposed as an effective solution for highly reliable communications in high-mobility scenarios. In this paper, we focus on the design of robust index modulation (IM) schemes under the multiple-antenna AFDM transmission framework. To this end, the cyclic delay diversity (CDD) technique is employed to harvest the transmit diversity gain. As a result, we propose two novel AFDM-IM schemes with transmit diversity, termed as CDD-AFDM-IM-I and CDD-AFDM-IM-II. We analyze the full diversity conditions and parameter settings of the proposed CDD-AFDM-IM schemes for both integer and fractional Doppler cases over linear time-varying (LTV) channels. Moreover, we prove that IM enables AFDM to have stronger diversity protection when the full diversity condition is not satisfied. Asymptotically tight upper bounds on the average bit error rates (BERs) of the proposed schemes with maximum-likelihood (ML) detection are derived in closed-form. Furthermore, we propose a low-complexity double-layer message passing (DLMP) algorithm for practical large-dimensional signal detection in the proposed CDD-AFDM-IM systems. Comparison with existing detections shows that the proposed DLMP algorithm achieves a better tradeoff between the BER performance and the computational complexity. Finally, BER simulation results confirm that our proposed CDD-AFDM-IM schemes with both the ML and DLMP detections outperform the benchmark schemes over the LTV channels.
带索引调制的仿射频分复用:全分集条件、性能分析和低复杂度检测
仿射频分复用(AFDM)是一种基于啁啾信号的新型调制技术,最近被提出作为高移动场景下高可靠通信的有效解决方案。本文重点研究了多天线AFDM传输框架下的鲁棒指数调制(IM)方案设计。为此,采用循环延迟分集(CDD)技术来获取发射分集增益。因此,我们提出了两种具有发射分集的新型AFDM-IM方案,分别是CDD-AFDM-IM-I和CDD-AFDM-IM-II。我们分析了线性时变(LTV)信道上整数和分数多普勒情况下所提出的CDD-AFDM-IM方案的全分集条件和参数设置。此外,我们证明了在不满足完全分集条件的情况下,IM使AFDM具有更强的分集保护。以封闭形式导出了最大似然检测方案的平均误码率的渐近紧上界。此外,我们提出了一种低复杂度的双层消息传递(DLMP)算法,用于所提出的CDD-AFDM-IM系统中的实际大维信号检测。与现有检测方法的比较表明,所提出的DLMP算法在误码率性能和计算复杂度之间取得了较好的平衡。最后,误码率仿真结果证实了我们提出的具有ML和DLMP检测的CDD-AFDM-IM方案在LTV信道上的性能优于基准方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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