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April 19, 2026Electronics0 citationsOpen Access

Joint Beamforming Design for Active Intelligent Reflecting Surface-Assisted Integrated Sensing and Communications Systems

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YWYì WángYZYingjie Zhang

Key Points

  • The aim is to improve communication security and sensing functionality in ISAC systems using active IRS technology.
  • Introduced active IRS for virtual line-of-sight communication
  • Developed a joint optimization scheme for beamforming and reflection coefficient design
  • Formulated a non-convex optimization problem to maximize SNR
  • Used an iterative algorithm with alternating optimization, fractional programming, and semidefinite relaxation.
  • Demonstrated significant improvement in sensing performance with active IRS compared to benchmarks
  • Showed enhanced communication reliability and security
  • Indicated effectiveness in mitigating signal blockage issues.

Abstract

To address the issues of information leakage risks faced by the base station (BS) when communicating with multiple users in an integrated sensing and communication (ISAC) system, as well as the blockage of the direct link between the BS and the target to be detected, which limits sensing functionality, this paper introduces the active intelligent reflecting surface (IRS) into the ISAC system. By creating a virtual line-of-sight (LoS) path, signal blockage is effectively mitigated, while the active IRS enhances the incident signal strength and adjusts the reflection phase shifts, thereby improving the reliability and security of communication. This paper proposes a joint optimization scheme for the active IRS-assisted ISAC system, which jointly designs the BS beamforming and the IRS reflection coefficient matrix. A non-convex optimization problem is formulated with the objective of maximizing the radar output signal-to-noise ratio (SNR) subject to communication performance constraints. To solve this problem, this paper employs an iterative algorithm based on alternating optimization (AO), fractional programming (FP), and semidefinite relaxation (SDR). Simulation results demonstrate that the proposed scheme significantly outperforms the benchmark schemes without IRS assistance and with passive IRS assistance in terms of enhancing the sensing performance of the ISAC system.

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Cite This Study

Wáng et al. (2026) studied this question.

synapsesocial.com/papers/69e473de010ef96374d8fa99https://doi.org/10.3390/electronics15081702
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