Movable Antenna Aided Full-Duplex ISAC System with Self-Interference Mitigation

Fuente: arXiv
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Autori principali: Peng, Size, Xu, Yin, Yi, Guanli, Zhang, Cixiao, He, Dazhi, Zhang, Wenjun
Natura: Preprint
Pubblicazione: 2025
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author Peng, Size
Xu, Yin
Yi, Guanli
Zhang, Cixiao
He, Dazhi
Zhang, Wenjun
author_facet Peng, Size
Xu, Yin
Yi, Guanli
Zhang, Cixiao
He, Dazhi
Zhang, Wenjun
contents Movable antenna (MA) has shown significant potential for improving the performance of integrated sensing and communication (ISAC) systems. In this paper, we model an MA-aided ISAC system operating in a communication full-duplex mono-static sensing framework. The self-interference channel is modeled as a function of the antenna position vectors under the near-field channel condition. We develop an optimization problem to maximize the weighted sum of downlink and uplink communication rates alongside the mutual information relevant to the sensing task. To address this highly non-convex problem, we employ the fractional programming (FP) method and propose an alternating optimization (AO)-based algorithm that jointly optimizes the beamforming, user power allocation, and antenna positions at the transceivers. Given the sensitivity of the AO-based algorithm to the initial antenna positions, a PSO-based algorithm is proposed to explore superior sub-optimal antenna positions within the feasible region. Numerical results indicate that the proposed algorithms enable the MA system to effectively leverage the antenna position flexibility for accurate beamforming in a complex ISAC scenario. This enhances the system's self-interference cancellation (SIC) capabilities and markedly improves its overall performance and reliability compared to conventional fixed-position antenna designs.
format Preprint
id arxiv_https___arxiv_org_abs_2505_14830
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Movable Antenna Aided Full-Duplex ISAC System with Self-Interference Mitigation
Peng, Size
Xu, Yin
Yi, Guanli
Zhang, Cixiao
He, Dazhi
Zhang, Wenjun
Information Theory
Signal Processing
Movable antenna (MA) has shown significant potential for improving the performance of integrated sensing and communication (ISAC) systems. In this paper, we model an MA-aided ISAC system operating in a communication full-duplex mono-static sensing framework. The self-interference channel is modeled as a function of the antenna position vectors under the near-field channel condition. We develop an optimization problem to maximize the weighted sum of downlink and uplink communication rates alongside the mutual information relevant to the sensing task. To address this highly non-convex problem, we employ the fractional programming (FP) method and propose an alternating optimization (AO)-based algorithm that jointly optimizes the beamforming, user power allocation, and antenna positions at the transceivers. Given the sensitivity of the AO-based algorithm to the initial antenna positions, a PSO-based algorithm is proposed to explore superior sub-optimal antenna positions within the feasible region. Numerical results indicate that the proposed algorithms enable the MA system to effectively leverage the antenna position flexibility for accurate beamforming in a complex ISAC scenario. This enhances the system's self-interference cancellation (SIC) capabilities and markedly improves its overall performance and reliability compared to conventional fixed-position antenna designs.
title Movable Antenna Aided Full-Duplex ISAC System with Self-Interference Mitigation
topic Information Theory
Signal Processing
url https://arxiv.org/abs/2505.14830