Coupler Position Optimization and Channel Estimation for Flexible Coupler Antenna Aided Multiuser Communication
Xiaodan Shao, Chuangye Shan, Weihua Zhuang, Xuemin Shen

TL;DR
This paper introduces a distributed flexible coupler antenna array for multiuser MIMO systems, optimizing coupler positions and channel estimation to improve performance while reducing hardware costs.
Contribution
It proposes a novel distributed FCA array architecture with joint coupler position and beamforming optimization, along with efficient channel estimation algorithms.
Findings
Distributed FCA array achieves substantial rate gains over conventional benchmarks.
Approaches the performance of fully active arrays with lower hardware cost.
Channel estimation algorithms outperform benchmarks in pilot overhead and accuracy.
Abstract
In this paper, we propose a distributed flexible coupler antenna (FCA) array to enhance communication performance with low hardware cost. At each FCA, there is one fixed-position active antenna and multiple passive couplers that can move within a designated region around the active antenna. Moreover, each FCA is equipped with a local processing unit (LPU). All LPUs exchange signals with a central processing unit (CPU) for joint signal processing. We study an FCA-aided multiuser multiple-input multiple-output (MIMO) system, where an FCA array base station (BS) is deployed to enhance the downlink communication between the BS and multiple single-antenna users. We formulate optimization problems to maximize the achievable sum rate of users by jointly optimizing the coupler positions and digital beamforming, subject to movement constraints on the coupler positions and the transmit power…
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