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Cross-Layer Combining of Truncated ARQ with Adaptive Modulation and Coding in Full Duplex Systems

机译:全双工系统中截断ARQ与自适应调制和编码的跨层组合

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In this paper, we design a bidirectional communication system employing adaptive modulation and coding (AMC) at the physical layer combined with truncated ARQ at the data link layer. The AMC in this system is made more robust with the help of a maximum a posteriori (MAP) optimal estimation with pilot symbol assisted modulation (PSAM) channel prediction technique. This prediction technique takes into account the latency in receiving the channel state information (CSI). We then considered this system operating in in-band full-duplex (FD) configuration and compared it with its half-duplex (HD) counterpart. The performance of the two configurations was compared under various channel conditions in terms of average spectral efficiency (SE). Numerical results obtained show that, even with residual self-interference (SI) signal in the received signal, the system in FD configuration outperforms that in HD configuration. In fact, when the SI signal is assumed to be completely canceled and the channel prediction is imperfect, the FD average SE more than doubles the HD average SE at low average signal-to-noise ratio (SNR).
机译:在本文中,我们设计了一种双向通信系统,该系统在物理层采用自适应调制和编码(AMC),在数据链路层采用截短的ARQ。借助导频符号辅助调制(PSAM)信道预测技术的最大后验(MAP)最佳估计,该系统中的AMC变得更加强大。该预测技术考虑了接收信道状态信息(CSI)的等待时间。然后,我们考虑了该系统以带内全双工(FD)配置运行,并将其与半双工(HD)对应系统进行了比较。根据平均频谱效率(SE)比较了两种配置在各种信道条件下的性能。获得的数值结果表明,即使在接收信号中存在残余自干扰(SI)信号,FD配置的系统也优于HD配置的系统。实际上,当假定SI信号已完全消除且信道预测不完善时,FD平均SE在低平均信噪比(SNR)时将HD平均SE翻倍。

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