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Efficient Codebook-Based Beamforming Algorithm for Millimeter-Wave Massive MIMO Systems

机译:毫米波大规模MIMO系统中基于码本的高效波束成形算法

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Hybrid beamforming architecture, consisting of a low-dimensional baseband digital beamforming component and a high-dimensional analog beamforming component, has received considerable attention in the context of millimeter-wave massive multiple-input multiple-output systems. This is because it can achieve an effective compromise between hardware complexity and system performance. To avoid accurate estimation of the channel, a codebook-based technique is widely used in analog beamforming components, wherein a transmitter and receiver jointly examine an analog precoder and analog combiner pair according to predesigned codebooks, without using a priori channel information. However, identifying an optimal analog precoder and analog combiner pair using the exhaustive search algorithm (ESA) incurs exponential complexity, causing the number of radio frequency chains to proliferate and hindering the resolution of the phase shifters, which cannot be solved even for highly reasonable system parameters. To reduce the search complexity while maximizing the achievable rate, we propose a low-complexity, near-optimal algorithm developed from a cross-entropy optimization framework. Our simulation results reveal that our algorithm achieves near-optimal performance at a much lower complexity than does the optimal ESA.
机译:在毫米波大规模多输入多输出系统的背景下,由低维基带数字波束形成组件和高维模拟波束形成组件组成的混合波束形成体系结构受到了广泛的关注。这是因为它可以在硬件复杂度和系统性能之间达成有效的折衷。为了避免对信道的准确估计,在模拟波束形成组件中广泛使用了基于码本的技术,其中,发送器和接收器根据预先设计的码本共同检查模拟预编码器和模拟组合器对,而无需使用先验信道信息。但是,使用穷举搜索算法(ESA)识别最佳的模拟预编码器和模拟组合器对会导致指数复杂性,导致射频链数量激增并阻碍移相器的分辨率,即使对于高度合理的系统也无法解决。参数。为了降低搜索复杂度,同时最大程度地提高可实现的速率,我们提出了一种由交叉熵优化框架开发的低复杂度,接近最优的算法。仿真结果表明,与最优ESA相比,我们的算法以低得多的复杂度实现了近乎最优的性能。

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