Hybrid Precoder Design for Angle-of-Departure Estimation With Limited-Resolution Phase Shifters

IF 8.3 2区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Communications Pub Date : 2024-10-29 DOI:10.1109/TCOMM.2024.3487517
Huiping Huang;Musa Furkan Keskin;Henk Wymeersch;Xuesong Cai;Linlong Wu;Johan Thunberg;Fredrik Tufvesson
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Abstract

Hybrid analog-digital beamforming stands out as a key enabler for future communication systems with a massive number of antennas. In this paper, we investigate the hybrid precoder design problem for angle-of-departure (AoD) estimation, where we take into account the practical constraint on the limited resolution of phase shifters. Our goal is to design a radio-frequency (RF) precoder and a base-band (BB) precoder to estimate AoD of the user with high accuracy. To this end, we propose a two-step strategy where we first obtain the fully digital precoder that minimizes the angle error bound, and then the resulting digital precoder is decomposed into an RF precoder and a BB precoder, based on the alternating optimization and the alternating direction method of multipliers. Furthermore, we derive the quantization error upper bound and provide convergence conditions for the proposed algorithm. Numerical results demonstrate the superior performance of the proposed method over state-of-the-art baselines.
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利用有限分辨率移相器进行偏角估计的混合前置编码器设计
混合模拟-数字波束形成是未来具有大量天线的通信系统的关键推动者。在本文中,我们研究了用于出发角(AoD)估计的混合预编码器设计问题,其中我们考虑了相移器有限分辨率的实际约束。我们的目标是设计一个射频(RF)预编码器和一个基带(BB)预编码器,以高精度估计用户的AoD。为此,我们提出了一种两步策略,首先获得最小角度误差界的全数字预编码器,然后基于乘法器的交替优化和交替方向方法将得到的数字预编码器分解为RF预编码器和BB预编码器。在此基础上,推导了量化误差上界,并给出了算法的收敛条件。数值结果表明,该方法在最先进的基线上具有优越的性能。
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来源期刊
IEEE Transactions on Communications
IEEE Transactions on Communications 工程技术-电信学
CiteScore
16.10
自引率
8.40%
发文量
528
审稿时长
4.1 months
期刊介绍: The IEEE Transactions on Communications is dedicated to publishing high-quality manuscripts that showcase advancements in the state-of-the-art of telecommunications. Our scope encompasses all aspects of telecommunications, including telephone, telegraphy, facsimile, and television, facilitated by electromagnetic propagation methods such as radio, wire, aerial, underground, coaxial, and submarine cables, as well as waveguides, communication satellites, and lasers. We cover telecommunications in various settings, including marine, aeronautical, space, and fixed station services, addressing topics such as repeaters, radio relaying, signal storage, regeneration, error detection and correction, multiplexing, carrier techniques, communication switching systems, data communications, and communication theory. Join us in advancing the field of telecommunications through groundbreaking research and innovation.
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