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Hybrid Architecture and Beamforming Optimization for Millimeter Wave Systems

TANG Yuanqi, ZHANG Huimin,ZHENG Zheng,LI Ping,ZHU Yu

ZTE Communications(2023)

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Abstract
Hybrid beamforming(HBF)has become an attractive and important technology in massive multiple-input multiple-output(MIMO)millimeter-wave(mmWave)systems.There are different hybrid architectures in HBF depending on different connection strategies of the phase shifter network between antennas and radio frequency chains.This paper investigates HBF optimization with different hybrid architec-tures in broadband point-to-point mmWave MIMO systems.The joint hybrid architecture and beamforming optimization problem is divided into two sub-problems.First,we transform the spectral efficiency maximization problem into an equivalent weighted mean squared error mini-mization problem,and propose an algorithm based on the manifold optimization method for the hybrid beamformer with a fixed hybrid archi-tecture.The overlapped subarray architecture which balances well between hardware costs and system performance is investigated.We fur-ther propose an algorithm to dynamically partition antenna subarrays and combine it with the HBF optimization algorithm.Simulation results are presented to demonstrate the performance improvement of our proposed algorithms.
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Key words
hybrid beamforming,hybrid architecture,weighted mean square error,manifold optimization,dynamic subarrays
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