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Energy-efficient hybrid precoding based on successive interference cancelation for millimeter-wave massive MIMO systems

机译:基于连续干扰消除的高能效混合预编码,用于毫米波大规模MIMO系统

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Millimeter-wave massive MIMO usually utilizes the hybrid precoding to overcome the serious signal attenuation, where only a small number of RF chains is required. However, most of hybrid precoding schemes consider the complicated full-connected architecture. In this paper, we focus on the more energy-efficient sub-connected architecture, and propose a low-complexity hybrid precoding based on successive interference cancelation (SIC). The basic idea of SIC-based hybrid precoding is to decompose the total capacity optimization problem into a series of sub-problems, each of which only considers one sub-antenna array. Then, we can optimize the capacity of each sub-antenna array one by one until the last sub-antenna array is considered. Simulation results verify that SIC-based hybrid precoding can achieve the near-optimal performance.
机译:毫米波大规模MIMO通常利用混合预编码来克服严重的信号衰减,其中仅需要少量的RF链。但是,大多数混合预编码方案都考虑了复杂的全连接体系结构。在本文中,我们将重点放在更节能的子连接架构上,并提出一种基于连续干扰消除(SIC)的低复杂度混合预编码。基于SIC的混合预编码的基本思想是将总容量优化问题分解为一系列子问题,每个子问题仅考虑一个子天线阵列。然后,我们可以逐个优化每个子天线阵列的容量,直到考虑到最后一个子天线阵列为止。仿真结果验证了基于SIC的混合预编码可以实现接近最佳的性能。

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