论文标题
用于解决大型MIMO系统中的通道老化问题的多载波划分双链
Multicarrier-Division Duplex for Solving the Channel Aging Problem in Massive MIMO Systems
论文作者
论文摘要
训练和数据传输的分离以及频繁的上行链路/下行链路(UL/DL)开关使得基于时间划分的双面(TDD)基于大量的大量多输入多输出(MMIMO)系统,因此在快速的时间变化的情况下,由于导致的严重的频道导致了较低的时间变化。为此,引入了与两种类型的精心设计的框架结构相关的多载波划分(MDD)MMIMO方案,用于在快速时间变化的通道上进行通道老化。为了与TDD进行比较,提出了与3GPP标准相关的相应帧结构及其变体形式。引入了MDD特异性的一般维也纳预测指标和决策指导的Wiener预测因子,以分别基于UL飞行员和基于检测到的UL数据的频域中的时间域中预测通道状态信息,考虑到残留自我干扰(SI)的影响。此外,通过应用零式预编码和最大比率组合,得出了TDD和MDD系统在随着时间变化的通道上实现的下限速率的闭合近似值。这项研究的主要结论是,与波段全双工(IBFD)相比,MDD具有全双工的能力,但对SI取消的需求较少,因此在对抗通道老化方面的传统TDD和IBFD的表现都优于常规TDD和IBFD。
The separation of training and data transmission as well as the frequent uplink/downlink (UL/DL) switching make time-division duplex (TDD)-based massive multiple-input multiple-output (mMIMO) systems less competent in fast time-varying scenarios due to the resulted severe channel aging. To this end, a multicarrier-division duplex (MDD) mMIMO scheme associated with two types of well-designed frame structures are introduced for combating channel aging when communicating over fast time-varying channels. To compare with TDD, the corresponding frame structures related to 3GPP standards and their variant forms are presented. The MDD-specific general Wiener predictor and decision-directed Wiener predictor are introduced to predict the channel state information, respectively, in the time domain based on UL pilots and in the frequency domain based on the detected UL data, considering the impact of residual self-interference (SI). Moreover, by applying the zero-forcing precoding and maximum ratio combining, the closed-form approximations for the lower bounded rate achieved by TDD and MDD systems over time-varying channels are derived. Our main conclusion from this study is that the MDD, endowed with the capability of full-duplex but less demand on SI cancellation than in-band full-duplex (IBFD), outperforms both the conventional TDD and IBFD in combating channel aging.