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首页> 外文期刊>IEEE Transactions on Green Communications and Networking >Dynamic RF Chain Selection for Energy Efficient and Low Complexity Hybrid Beamforming in Millimeter Wave MIMO Systems
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Dynamic RF Chain Selection for Energy Efficient and Low Complexity Hybrid Beamforming in Millimeter Wave MIMO Systems

机译:毫米波MIMO系统中节能和低复杂性混合波束形成的动态RF链选择

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摘要

This paper proposes a novel architecture with a framework that dynamically activates the optimal number of radio frequency (RF) chains used to implement hybrid beamforming in a millimeter wave (mmWave) multiple-input and multiple-output (MIMO) system. We use fractional programming to solve an energy efficiency maximization problem and exploit the Dinkelbach method (DM)-based framework to optimize the number of active RF chains and data streams. This solution is updated dynamically based on the current channel conditions, where the analog/digital (A/D) hybrid precoder and combiner matrices at the transmitter and the receiver, respectively, are designed using a codebook-based fast approximation solution called gradient pursuit (GP). The GP algorithm shows less run time and complexity while compared to the state-of-the-art orthogonal matching pursuit (OMP) solution. The energy and spectral efficiency performance of the proposed framework is compared with the existing state-of-the-art solutions, such as the brute force (BF), the digital beamformer, and the analog beamformer. The codebook-free approaches to design the precoders and combiners, such as alternating direction method of multipliers (ADMMs) and singular value decomposition (SVD)-based solution are also shown to be incorporated into the proposed framework to achieve better energy efficiency performance.
机译:本文提出了一种具有框架的新架构,该架构动态激活了用于在毫米波(MMWAVE)多输入和多输出(MIMO)系统中实现混合波束形成的最佳射频(RF)链。我们使用分数编程来解决能量效率最大化问题,并利用Dinkelbach方法(DM)基础的框架,以优化有源RF链和数据流的数量。该解决方案基于当前信道条件动态更新,其中模拟/数字(A / D)分别分别使用称为梯度追踪的码本的快速逼近解决方案设计了变送器和接收器处的组合器矩阵( GP)。与最先进的正交匹配追求(OMP)解决方案相比,GP算法显示了较少的运行时间和复杂性。将所提出的框架的能量和光谱效率性能与现有的最先进的解决方案进行比较,例如蛮力(BF),数字波束形成器和模拟波束形成器。还显示了设计预编码器和组合器的码本的方法,例如乘法器(ADMMS)和奇异值分解(SVD)的替代方向方法(SVD)的解决方案,以结合到所提出的框架中,以实现更好的能效性能。

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