Movable-Antenna-Enhanced ISAC: Optimal Antenna Trajectory and Beamforming Design

Fuente: arXiv
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Hauptverfasser: Wu, Yifei, Xu, Dongfang, Ng, Derrick Wing Kwan, Gerstacker, Wolfgang, Schober, Robert
Format: Preprint
Veröffentlicht: 2026
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author Wu, Yifei
Xu, Dongfang
Ng, Derrick Wing Kwan
Gerstacker, Wolfgang
Schober, Robert
author_facet Wu, Yifei
Xu, Dongfang
Ng, Derrick Wing Kwan
Gerstacker, Wolfgang
Schober, Robert
contents Integrated sensing and communication (ISAC) is a key enabling technology for next-generation wireless networks. However, most existing ISAC systems rely on fixed-position antennas, which restrict performance when balancing sensing and communication objectives. Movable antenna (MA) technology introduces additional spatial degrees of freedom through antenna mobility, yet existing studies on MA-enabled ISAC schemes mainly consider static antenna repositioning and fail to fully exploit this capability. By leveraging spatio-temporal sampling enabled by antenna motion, optimized MA trajectories can synthesize large virtual aperture arrays, thereby improving angular resolution and reducing sensing ambiguity. To this end, this paper investigates a dynamic MA-enabled ISAC system and studies the joint design of MA trajectories and transmit beamforming. We formulate a joint trajectory and beamforming optimization problem to minimize sensing beampattern mismatch under communication quality-of-service constraints. A branch-and-bound-based algorithm is developed to obtain the globally optimal solution. Numerical results show that the proposed framework significantly outperforms baseline schemes with only one or two antenna repositioning steps, demonstrating its practical feasibility.
format Preprint
id arxiv_https___arxiv_org_abs_2605_23427
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Movable-Antenna-Enhanced ISAC: Optimal Antenna Trajectory and Beamforming Design
Wu, Yifei
Xu, Dongfang
Ng, Derrick Wing Kwan
Gerstacker, Wolfgang
Schober, Robert
Signal Processing
Integrated sensing and communication (ISAC) is a key enabling technology for next-generation wireless networks. However, most existing ISAC systems rely on fixed-position antennas, which restrict performance when balancing sensing and communication objectives. Movable antenna (MA) technology introduces additional spatial degrees of freedom through antenna mobility, yet existing studies on MA-enabled ISAC schemes mainly consider static antenna repositioning and fail to fully exploit this capability. By leveraging spatio-temporal sampling enabled by antenna motion, optimized MA trajectories can synthesize large virtual aperture arrays, thereby improving angular resolution and reducing sensing ambiguity. To this end, this paper investigates a dynamic MA-enabled ISAC system and studies the joint design of MA trajectories and transmit beamforming. We formulate a joint trajectory and beamforming optimization problem to minimize sensing beampattern mismatch under communication quality-of-service constraints. A branch-and-bound-based algorithm is developed to obtain the globally optimal solution. Numerical results show that the proposed framework significantly outperforms baseline schemes with only one or two antenna repositioning steps, demonstrating its practical feasibility.
title Movable-Antenna-Enhanced ISAC: Optimal Antenna Trajectory and Beamforming Design
topic Signal Processing
url https://arxiv.org/abs/2605.23427