To meet the demand of supreme data rates in terabits-per-second, the next-generation mobile system needs to exploit the abundant spectrum in the millimeter-wave and terahertz bands. However, high-frequency transmission heavily relies on large-scale antenna arrays to reap high beamforming gain, used to compensate for severe propagation loss. It raises a problem of omni-directional beamforming during the phase of initial access, where a base station is required to broadcast synchronization signals and system information to all users within its coverage. This paper proposes a novel initial beamforming scheme, which provides instantaneous gain equally in all directions by forming a pair of complementary beams. Numerical results verify that it can achieve omni-directional coverage with the optimal performance that remarkably outperforms the previous scheme called random beamforming. It is applicable for any form of large-scale arrays, and all three architecture, i.e., digital, analog, and hybrid beamforming.
翻译:为了满足每秒最高数据率的需求,下一代移动系统需要利用毫米波和泰赫兹波段的丰富频谱,然而,高频传输严重依赖大型天线阵列,以获得高波束增益,用以弥补严重的传播损失,这在初始访问阶段引起了全天线波束增益问题,在初始访问阶段,一个基地台需要向其覆盖范围内的所有用户广播同步信号和系统信息。本文提出了一个新颖的初始波束成型方案,通过形成一对互补波束,在所有方向上均提供即时收益。数字结果证实,它能够实现全天线覆盖,其最佳性性能大大超过先前称为随机成形的系统。它适用于任何形式的大型阵列和所有三种结构,即数字、模拟和混合成形。