High-frequency bands such as millimeter-wave and terahertz require narrow beams due to path loss and shadowing. Beam alignment (BA) methods allow the transceivers to adjust the directions of these beams efficiently by exploiting the channel sparsity at high frequencies. This paper investigates BA for an uplink scenario, where the channel between the user equipment (UE) and base station (BS) consists of multiple paths. The BS wishes to localize the angle of arrival of each of these paths with a given resolution using the least number of time slots. At each time slot of the BA, the UE transmits a BA packet and the BS uses hybrid beamforming to scan its angular region. To minimize the expected BA duration, a group testing framework is devised, and the associated novel analog and hybrid BA strategies are described. Simulation studies show the performance improvement both in noiseless and realistic 5G mmWave BA settings.
翻译:光束对齐(BA)方法使收发器能够通过利用高频率的频道宽度来有效调整这些光束的方向。本文对BA进行上行选择,即用户设备(UE)和基地台(BS)之间的频道由多条路径组成。BS希望用最少的时间槽将每个路径到达的角度与给定的分辨率定位为最小的时间槽。在BA的每个时间槽中,UE传输一个 BA包,BS 使用混合波束来扫描其角区域。为尽量缩短预期的BA时间段,设计了一个群组测试框架,并描述了相关的新型模拟和混合BA战略。模拟研究显示无噪音和现实的5G毫米Wave BA环境的性能改进。