论文标题
在毫米无线系统中的最佳多用户光束对齐
On Optimal Multi-user Beam Alignment in Millimeter Wave Wireless Systems
论文作者
论文摘要
方向传输模式(又称窄光束)是毫米波(MMWave)频带中无线通信的关键,该频段遭受了高路径损失和严重阴影的困扰。此外,MMWave频率中的传播通道仅包含几个数量的空间群集,这些空间簇需要采用一步将相应的窄光束与通道簇的出发角度(AOD)对齐。该过程的目的称为梁对准(BA)是为了增加随后的数据通信的光束形成增益。几项先前的研究考虑优化BA程序以实现各种目标,例如减少BA开销,增加吞吐量和减少功耗。尽管这些研究主要为单个活跃用户提供优化的场景BA方案,但实际网络中通常有多个活跃用户。因此,在设计多用户BA方案的延迟方面,它可以集体执行多个用户的光束管理。本文考虑了一类多用户BA方案,其中基站对Angular域进行一杆扫描,以同时定位多个用户。目的是最大程度地减少接收用户反馈后AOD剩余不确定性区域(UR)的预期宽度的平均值。使用信息理论工具分析最佳性能的基本界限。此外,提出了与5G标准中使用的光束清扫相比,提出了梁设计优化问题,并实用了BA方案,该方案提供了显着增长。
Directional transmission patterns (a.k.a. narrow beams) are the key to wireless communications in millimeter wave (mmWave) frequency bands which suffer from high path loss and severe shadowing. In addition, the propagation channel in mmWave frequencies incorporates only a few number of spatial clusters requiring a procedure to align the corresponding narrow beams with the angle of departure (AoD) of the channel clusters. The objective of this procedure, called beam alignment (BA) is to increase the beamforming gain for subsequent data communication. Several prior studies consider optimizing BA procedure to achieve various objectives such as reducing the BA overhead, increasing throughput, and reducing power consumption. While these studies mostly provide optimized BA schemes for scenarios with a single active user, there are often multiple active users in practical networks. Consequently, it is more efficient in terms of BA overhead and delay to design multi-user BA schemes which can perform beam management for multiple users collectively. This paper considers a class of multi-user BA schemes where the base station performs a one shot scan of the angular domain to simultaneously localize multiple users. The objective is to minimize the average of expected width of remaining uncertainty regions (UR) on the AoDs after receiving users' feedbacks. Fundamental bounds on the optimal performance are analyzed using information theoretic tools. Furthermore, a beam design optimization problem is formulated and a practical BA scheme, which provides significant gains compared to the beam sweeping used in 5G standard is proposed.