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Partially-connected hybrid precoding in mm-wave systems with dynamic phase shifter networks

机译:具有动态移相器网络的毫米波系统中的部分连接混合预编码

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Hybrid precoding is a cost-effective approach to support directional transmissions for millimeter wave (mm-wave) communications, and its design challenge mainly lies in the analog component which consists of a network of phase shifters. The partially-connected structure employs a small number of phase shifters and therefore serves as an energy efficient solution for hybrid precoding. In this paper, we propose a DOUBLE PHASE SHIFTER (DPS) implementation for the phase shifter network in the partially-connected structure, which allows more tractable and flexible hybrid precoder design. In particular, the hybrid precoder design is identified as an eigenvalue problem. To further enhance the performance, dynamic mapping from radio frequency (RF) chains to antennas is proposed, for which a greedy algorithm and a modified K-means algorithm are developed. Simulation results demonstrate the performance gains of the proposed hybrid precoding algorithms with the DPS implementation over existing ones. Given its low hardware complexity and high spectral efficiency, the proposed structure is a promising candidate for 5G mm-wave sPystems.
机译:混合预编码是一种支持毫米波(mm-wave)通信定向传输的经济有效方法,其设计挑战主要在于由移相器网络组成的模拟组件。部分连接的结构使用少量的移相器,因此用作混合预编码的节能解决方案。在本文中,我们为部分连接结构中的移相器网络提出了一种双相移相器(DPS)实施方案,该方案可实现更易处理和灵活的混合预编码器设计。特别地,混合预编码器设计被识别为特征值问题。为了进一步提高性能,提出了从射频(RF)链到天线的动态映射,为此开发了贪婪算法和改进的K-means算法。仿真结果表明,与现有算法相比,采用DPS实现的混合预编码算法在性能上有所提高。鉴于其较低的硬件复杂性和较高的频谱效率,拟议的结构是5G毫米波系统的有希望的候选者。

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