Performance Analysis and Low-Complexity Beamforming Design for Near-Field Physical Layer Security
Yunpu Zhang, Yuan Fang, Changsheng You, Ying-Jun Angela Zhang, Hing, Cheung So

TL;DR
This paper investigates near-field physical layer security with XL-arrays, highlighting the importance of artificial noise and proposing a low-complexity beamforming method that enhances security while reducing computational load.
Contribution
It introduces a low-complexity beamforming design for near-field PLS using interference domain concepts, improving security with less computational effort.
Findings
Artificial noise significantly enhances near-field security.
The proposed low-complexity approach achieves near-optimal security performance.
Near-field PLS benefits from additional spatial degrees of freedom.
Abstract
Extremely large-scale arrays (XL-arrays) have emerged as a key enabler in achieving the unprecedented performance requirements of future wireless networks, leading to a significant increase in the range of the near-field region. This transition necessitates the spherical wavefront model for characterizing the wireless propagation rather than the far-field planar counterpart, thereby introducing extra degrees of freedom (DoFs) to wireless system design. In this paper, we explore the beam focusing-based physical layer security (PLS) in the near field, where multiple legitimate users and one eavesdropper are situated in the near-field region of the XL-array base station (BS). First, we consider a special case with one legitimate user and one eavesdropper to shed useful insights into near-field PLS. In particular, it is shown that 1) Artificial noise (AN) is crucial to near-field security…
Peer Reviews
No public reviews on file for this paper yet. If you reviewed it on a platform where reviews are public (OpenReview, ICLR, NeurIPS, ICML), you can paste yours below so the community can read it here.
Videos
No videos yet. Explain this paper in a talk, walkthrough, or lecture? Add one.
Taxonomy
TopicsAntenna Design and Analysis · Advanced MIMO Systems Optimization · Full-Duplex Wireless Communications
MethodsBalanced Selection
