Can Movable Antenna-enabled Micro-Mobility Replace UAV-enabled Macro-Mobility? A Physical Layer Security Perspective
Kaixuan Li, Kan Yu, Dingyou Ma, Yujia Zhao, Xiaowu Liu, Qixun Zhang, ZHiyong Feng

TL;DR
This paper compares movable antenna micro-mobility and UAV macro-mobility for physical layer security, revealing their complementary strengths and proposing hybrid solutions for future wireless networks.
Contribution
It introduces a dual-scale framework and formulates optimization problems to systematically compare MA-based micro-mobility and UAV-based macro-mobility in secure communications.
Findings
MA micro-mobility outperforms in low-power scenarios
UAV macro-mobility excels with higher resources
Hybrid approaches balance security and efficiency
Abstract
This paper investigates the potential of movable antenna (MA)-enabled micro-mobility to replace UAV-enabled macro-mobility for enhancing physical layer security (PLS) in air-to-ground communications. While UAV trajectory optimization offers high flexibility and Line-of-Sight (LoS) advantages, it suffers from significant energy consumption, latency, and complex trajectory optimization. Conversely, MA technology provides fine-grained spatial reconfiguration (antenna positioning within a confined area) with ultra-low energy overhead and millisecond-scale response, enabling real-time channel manipulation and covert beam steering. To systematically compare these paradigms, we establish a dual-scale mobility framework where a UAV-mounted uniform linear array (ULA) serves as a base station transmitting confidential information to a legitimate user (Bob) in the presence of an eavesdropper…
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Taxonomy
TopicsUAV Applications and Optimization · Vehicular Ad Hoc Networks (VANETs) · Wireless Communication Security Techniques
