首页> 外文会议>2017 IEEE 28th Annual International Symposium on Personal, Indoor, and Mobile Radio Communications >Joint hybrid RF/baseband transceiver design for multi-user MIMO downlink in millimeter wave communication system
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Joint hybrid RF/baseband transceiver design for multi-user MIMO downlink in millimeter wave communication system

机译:毫米波通信系统中多用户MIMO下行链路的混合RF /基带混合收发器设计

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Millimeter wave (mmWave) communication systems employ hybrid RF/baseband transceivers that divide the spatial signal processing into radio frequency and baseband domains in order to reduce the hardware complexity resulting from the use of large number of antennas elements. In this paper, we consider two designs for hybrid multi-user MIMO downlink that minimizes the sum mean square error (SMSE), based on perfect channel knowledge (non-robust design) and transceiver design considering the channel imperfections (robust design). In the robust design, the channel state information (CSI) is assumed to be perturbed by estimation error and follows Gaussian distribution with known error variance. In both the designs, reduced hardware complexity is achieved by analog-digital hybrid processing by using orthogonal matching pursuit (OMP)-based sparse signal processing. We evaluate the performance of both the proposed schemes based on various parameters and also compare it with conventional fully-digital system. We present numerical results over various dictionaries. The comparison results show that robust design is resilient to the presence of CSI errors. Furthermore, we also demonstrate the convergence of both the proposed algorithms to a limit even though global convergence is hard to prove due to non convex nature of overall optimization problem.
机译:毫米波(mmWave)通信系统采用混合RF /基带收发器,将空间信号处理划分为射频和基带域,以减少由于使用大量天线元件而导致的硬件复杂性。在本文中,我们基于完美的信道知识(非稳健设计)和考虑了信道缺陷的收发器设计(稳健设计),考虑了两种用于混合多用户MIMO下行链路的设计,该设计可将均方差(SMSE)降至最低。在鲁棒性设计中,假定信道状态信息(CSI)受估计误差的干扰,并遵循具有已知误差方差的高斯分布。在这两种设计中,通过使用基于正交匹配追踪(OMP)的稀疏信号处理进行模数混合处理,可以降低硬件的复杂性。我们基于各种参数评估了两种方案的性能,并将其与常规的全数字系统进行了比较。我们给出了各种字典的数值结果。比较结果表明,健壮的设计可以抵抗CSI错误。此外,即使由于整体优化问题的非凸性而难以证明全局收敛性,我们也证明了两种算法的收敛性都达到了极限。

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