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Wideband Beam Tracking Based on Beam Zooming for THz Massive MIMO

机译:基于梁变焦的宽带梁跟踪ZHZ大规模米莫

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Terahertz (THz) multiple-input multiple-output (MIMO) is becoming a promising technology for future 6G network, where using beam tracking scheme to track mobile users is essential. However, existing beam tracking schemes designed for narrowband systems with the traditional hybrid precoding structure suffer from severe performance loss caused by the wideband beam split effect. To solve this problem, we propose a beam zooming based beam tracking scheme by considering the recently proposed delay-phase precoding structure. At first, we prove the beam zooming mechanism to flexibly control the angular coverage of frequency -dependent beams over the whole bandwidth, i.e., the degree of the wideband beam split effect, which is achieved by the elaborate design of time delays in the delay-phase precoding structure. Based on this mechanism, we then propose to track multiple physical directions in each time slot by generating multiple beams. The angular coverage of these beams are flexibly zoomed to match the angular variation range of user physical direction. After several time slots, the base station can obtain the new physical direction by finding out the beam with the largest received power. The proposed scheme can track multiple physical directions simultaneously with reduced training overhead, which is verified by simulation results.
机译:太赫兹多输入多输出(MIMO)正成为未来6G网络,其中使用波束跟踪方案来跟踪移动用户是必要的有前景的技术。然而,现有的波束跟踪设计为与传统的混合预编码结构窄带系统方案从所造成的宽带光束分裂效应严重的性能损失受到影响。为了解决这个问题,我们提出了一个光束通过考虑最近提出的延迟相预编码结构缩放基于波束跟踪方案。起初,我们证明了光束变焦机构灵活地控制频率依赖性的角度覆盖束在整个带宽上,即,宽带光束分裂作用,这是由时间延迟的精心设计的对延迟达到的程度相位预编码结构。根据该机制,我们然后提出通过产生多个波束来跟踪在每个时隙中的多个物理方向。这些光束的角覆盖被灵活缩放,以匹配用户的物理方向的角度变化范围内。后几个时隙,基站可以获取通过找出具有最大接收功率的波束的新的物理方向。所提出的方案能够以减少训练开销,这是通过仿真验证同时跟踪多个物理方向。

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