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October 23, 2025Sensors3 citationsOpen Access

A Scheme for Covert Communication with a Reconfigurable Intelligent Surface in Cognitive Radio Networks

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YXYan XuJQJin QianPZPengcheng Zhu

Key Points

  • Effective covert throughput is significantly improved through the use of reconfigurable intelligent surfaces.
  • This research shows that transmissions can remain undetectable by adversaries in cognitive radio networks with RIS.
  • The framework extends insights on unequal transmit prior probabilities in IoT scenarios—indicating a flexible balance in communication.
  • These results point to the RIS as a critical enabler for secure communication in next-generation networks.

Abstract

This paper proposes a scheme for enhancing covert communication in cognitive radio networks (CRNs) using a reconfigurable intelligent surface (RIS), which ensures that transmissions by secondary users (SUs) remains statistically undetectable by adversaries (e.g., wardens like Willie). However, there exist stringent challenges in CRNs due to the dual constraints of avoiding detection and preventing harmful interference to primary users (PUs). Leveraging the RIS’s ability to dynamically reconfigure the wireless propagation environment, our scheme jointly optimizes the SU’s transmit power, communication block length, and RIS’s passive beamforming (phase shifts) to maximize the effective covert throughput (ECT) under rigorous covertness constraints quantified by detection error probability or relative entropy while strictly adhering to PU interference limits. Crucially, the RIS configuration is explicitly designed to simultaneously enhance signal quality at the legitimate SU receiver and degrade signal quality at the warden, thereby relaxing the inherent trade-off between covertness and throughput imposed by the fundamental square root law. Furthermore, we analyze the impact of unequal transmit prior probabilities (UTPPs), demonstrating their superiority over equal priors (ETPPs) in flexibly balancing throughput and covertness, and extend the framework to practical scenarios with Poisson packet arrivals typical of IoT networks. Extensive results confirm that RIS assistance significantly boosts ECT compared to non-RIS baselines and establishes the RIS as a key enabler for secure and spectrally efficient next-generation cognitive networks.

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Cite This Study

Xu et al. (2025) studied this question.

synapsesocial.com/papers/68f9f86eb2c35e10cc4e3b37https://doi.org/10.3390/s25206490
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