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Energy-Efficient Hybrid Precoding Design for Mm-Wave Massive Antenna Multi-User Systems

机译:毫米波大规模天线多用户系统的节能混合预编码设计

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In this paper, a new hybrid precoding architecture and corresponding precoding algorithm is proposed for mm-wave massive antenna multi-user systems, which can realize a good trade-off between hardware and spectral efficiency. The proposed switch and inverter based group-connected (SIG) architecture is an extension of the switch and inverter structure with antenna selection (SIAS), while can make a flexible trade-off between hardware cost and system performance by adjusting the parameter m. In addition, an alternation minimization (AM) algorithm is presented to obtain the hybrid precoding matrix. Simulation results show that the proposed SIG-based AM hybrid precoder outperforms the SIAS-based coordinate update algorithm (CUA) precoder both in spectral efficiency and energy efficiency. And the required iteration number of AM is about 10, which is far less than that of the CUA algorithm.
机译:本文针对毫米波海量天线多用户系统,提出了一种新的混合预编码架构和相应的预编码算法,可以在硬件和频谱效率之间取得良好的折衷。所提出的基于开关和逆变器的组连接(SIG)体系结构是具有天线选择(SIAS)的开关和逆变器结构的扩展,同时可以通过调整参数m在硬件成本和系统性能之间进行灵活的权衡。此外,提出了一种交替最小化(AM)算法,以获取混合预编码矩阵。仿真结果表明,所提出的基于SIG的AM混合预编码器在频谱效率和能量效率方面均优于基于SIAS的坐标更新算法(CUA)预编码器。并且所需的AM迭代次数约为10,这远远小于CUA算法的迭代次数。

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