Terahertz (THz) massive multiple-input multipleoutput (MIMO) has been considered as one of the promising technologies for future 6G wireless communications. It is essential to obtain channel information by beam tracking scheme to track mobile users in THz massive MIMO systems. However, the existing beam tracking schemes designed for narrowband systems with the traditional hybrid precoding structure suffer from a severe performance loss caused by the beam split effect, and thus cannot be directly applied to wideband THz massive MIMO systems. To solve this problem, in this paper we propose a beam zooming based beam tracking scheme by considering the recently proposed delay-phase precoding structure for THz massive MIMO. Specifically, we firstly prove the beam zooming mechanism to flexibly control the angular coverage of frequencydependent beams over the whole bandwidth, which can be realized by the elaborate design of time delays in the delay-phase precoding structure. Then, based on this beam zooming mechanism, we propose to track multiple user physical directions simultaneously in each time slot by generating multiple beams. The angular coverage of these beams is flexibly zoomed to adapt to the potential variation range of the user physical direction. After several time slots, the base station is able to obtain the exact user physical direction by finding out the beam with the largest user received power. Unlike traditional schemes where only one frequency-independent beam can be usually generated by one radio-frequency chain, the proposed beam zooming based beam tracking scheme can simultaneously track multiple user physical directions by using multiple frequency-dependent beams generated by one radio-frequency chain. Theoretical analysis shows that the proposed scheme can achieve the near-optimal achievable sum-rate performance with low beam training overhead.
翻译:Terahertz (Thz) 大型多输出多输出(MIMO) 已被视作未来 6G 无线通信的有希望的技术之一。 关键是要通过光束跟踪机制获得频道信息, 以跟踪THz大规模 MIMO系统的移动用户。 但是, 传统混合预编码结构的窄带系统现有的光束跟踪机制由于光束分裂效应而严重失效, 因此无法直接应用于宽带THz 大型离地系统。 为了解决这个问题, 我们在此文件中建议, 以光束放大频率为基数跟踪计划, 考虑最近为THz大规模 MIMO提议的多频率物理频率预编码结构。 具体地说, 我们首先证明光束放大机制, 以灵活控制整个带宽的频率依赖光束的角覆盖, 可以通过对延迟波段预解结构的复杂时间设计来实现。 然后, 我们提议, 通常根据这个光谱放大机制, 我们提议, 以每个时空段同时跟踪多个用户的物理方向, 生成多个波段的多波段。 在一次的磁段上, 将显示一个直径的磁段的直径定位, 将显示这些直径图的路径的轨图, 将显示到直径定位系统到直径图 。 。 以一个直径定位的直径定位的图图 。