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September 24, 20250 citationsOpen Access

Secure Satellite Communications via Multiple Aerial RISs: Joint Optimization of Reflection, Association, and Deployment

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ZWZhuopu WangNLNaijin LiuXTXiao Tang

Key Points

  • The proposed system enhances secure communication performance by optimizing multiple factors simultaneously, including ARIS deployment.
  • Simulation results reveal a significant increase in multicast rates while maintaining constraints on wiretap rates in various scenarios.
  • The optimization framework leverages block coordinate descent to handle the non-convex challenges of the formulated problem.
  • Insights gained from this study provide valuable guidance for future deployment of ARIS in secure satellite communication networks.

Abstract

Satellite communication is envisioned as a key enabler of future 6G networks, yet its wide coverage with high link attenuation poses significant challenges for physical layer security. In this paper, we investigate secure multi-beam, multi-group satellite communications assisted by aerial reconfigurable intelligent surfaces (ARISs). To maximize the sum of achievable multicast rates among the groups while constraining wiretap rates, we formulate a joint optimization problem involving transmission and reflection beamforming, ARIS-group association, and ARIS deployment. Due to the mixed-integral and non-convex nature of the formulated problem, we propose to decompose the problem and employ the block coordinate descent framework that iteratively solves the subproblems. Simulation results demonstrate that the proposed ARIS-assisted multi-beam satellite system provides a notable improvement in secure communication performance under various network scenarios, offering useful insights into the deployment and optimization of intelligent surfaces in future secure satellite networks.

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Cite This Study

Wang et al. (2025) studied this question.

synapsesocial.com/papers/68d6e0fc8b2b6861e4c3f37fhttps://doi.org/10.48550/arxiv.2508.20455
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