paper-with-me

Papers

Secure Beamforming for Continuous Aperture Array (CAPA) Systems

2025-01-09 · Mingjun Sun, Chongjun Ouyang, Zhaolin Wang, Shaochuan Wu, Yuanwei Liu

Continuous aperture array (CAPA) is considered a promising technology for 6G networks, offering the potential to fully exploit spatial DoFs and achieve the theoretical limits of channel capacity. This paper investigates the performance gain of a CAPA-based downlink secure transmission system, where multiple legitimate user terminals (LUTs) coexist with multiple eavesdroppers (Eves). The system's secrecy performance is evaluated using a weighted secrecy sum-rate (WSSR) under a power constraint. We then propose two solutions for the secure current pattern design. The first solution is a block coordinate descent (BCD) optimization method based on fractional programming, which introduces a continuous-function inversion theory corresponding to matrix inversion in the discrete domain. This approach derives a closed-form expression for the optimal source current pattern. Based on this, it can be found that the optimal current pattern is essentially a linear combination of the channel spatial responses, thus eliminating the need for complex integration operations during the algorithm's optimization process. The second solution is a heuristic algorithm based on Zero-Forcing (ZF), which constructs a zero-leakage current pattern using the channel correlation matrix. It further employs a water-filling approach to design an optimal power allocation scheme that maximizes the WSSR. In high SNR regions, this solution gradually approaches the first solution, ensuring zero leakage while offering lower computational complexity. Simulation results demonstrate that: 1) CAPA-based systems achieve better WSSR compared to discrete multiple-input multiple-output systems. 2) The proposed methods, whether optimization-based or heuristic, provide significant performance improvements over existing state-of-the-art Fourier-based discretization methods, while considerably reducing computational complexity.

📄 PDF Abstract BibTeX arXiv:2501.04924

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

CAPA: Continuous-Aperture Arrays for Revolutionizing 6G Wireless Communications

2024-12-01 · Yuanwei Liu, Chongjun Ouyang, Zhaolin Wang, Jiaqi Xu 외

In this paper, a novel continuous-aperture array (CAPA)-based wireless communication architecture is proposed, which relies on an electrically large aperture with a continuous current distribution. First, an existing pro…

Diversity

Deep Learning for Beamforming in Multi-User Continuous Aperture Array (CAPA) Systems

2024-11-14 · Jia Guo, Yuanwei Liu, Hyundong Shin, Arumugam Nallanathan

A DeepCAPA (Deep Learning for Continuous Aperture Array (CAPA)) framework is proposed to learn beamforming in CAPA systems. The beamforming optimization problem is firstly formulated, and it is mathematically proved that…

Linear Receive Beamforming for CAPA Systems

2024-11-10 · Chongjun Ouyang, Zhaolin Wang, Xingqi Zhang, Yuanwei Liu

The performance of linear receive beamforming in continuous-aperture array (CAPA)-based uplink communications is analyzed. Three continuous beamforming techniques are proposed under the criteria of maximum-ratio combinin…

Form

Holographic Intelligence Surface Assisted Integrated Sensing and Communication

2024-06-07 · Zhuoyang Liu, Yuchen Zhang, Haiyang Zhang, Feng Xu 외

Traditional discrete-array-based systems fail to exploit interactions between closely spaced antennas, resulting in inadequate utilization of the aperture resource. In this paper, we propose a holographic intelligence su…

Integrated sensing and communicationISAC

A Novel Approach to Ultrasound Beamforming using Synthetic Transmit Aperture with Low Complexity and High SNR for Medical Imaging

2024-07-14 · Thenmozhi Elango, Samiyuktha Kalalii, P Rajalakshmi

This paper presents an architecture for Ultrasound Beamforming using Synthetic Transmit Aperture with Low Complexity and High SNR for medical imaging. Synthetic Transmit Aperture is a novel approach in ultrasound imaging…