6D Movable Antenna Enhanced Multi-Access Point Coordination via Position and Orientation Optimization
Xiangyu Pi, Lipeng Zhu, Haobin Mao, Zhenyu Xiao, Xiang-Gen Xia, Rui, Zhang

TL;DR
This paper introduces a 6D movable antenna system for multi-AP coordination in WLANs, optimizing antenna position and orientation to improve coverage and interference mitigation, outperforming fixed antenna schemes.
Contribution
It develops a novel 6D movable antenna system and formulates an optimization framework for joint antenna positioning and orientation to enhance network capacity.
Findings
Significant capacity improvement over fixed antenna schemes.
Effective interference mitigation through 6D antenna optimization.
Both online and offline schemes achieve notable performance gains.
Abstract
The effective utilization of unlicensed spectrum is regarded as an important direction to enable the massive access and broad coverage for next-generation wireless local area network (WLAN). Due to the crowded spectrum occupancy and dense user terminals (UTs), the conventional fixed antenna (FA)-based access points (APs) face huge challenges in realizing massive access and interference cancellation. To address this issue, in this paper we develop a six-dimensional movable antenna (6DMA) enhanced multi-AP coordination system for coverage enhancement and interference mitigation. First, we model the wireless channels between the APs and UTs to characterize their variation with respect to 6DMA movement, in terms of both the three-dimensional (3D) position and 3D orientation of each distributed AP's antenna. Then, an optimization problem is formulated to maximize the weighted sum rate of…
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Taxonomy
TopicsAntenna Design and Analysis · Indoor and Outdoor Localization Technologies · Antenna Design and Optimization
