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March 23, 2026Journal on Wireless Communications and Networking0 citationsOpen Access

Secure transmission design for cell-edge user in RIS-aided NOMA network with hybrid SWIPT

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SXShu XuHenan Institute of TechnologyHWHong WangNanjing University of Posts and TelecommunicationsWZWei ZhengHenan Institute of Technology

Key Points

  • The research aims to enhance physical layer security in RIS-aided NOMA networks under eavesdropping conditions.
  • Investigated a MISO-NOMA system for secure communication.
  • Introduced a RIS-assisted cooperative transmission scheme.
  • Utilized hybrid simultaneous wireless information and power transfer and transmit antenna selection.
  • Proposed scheme outperforms conventional OMA and non-cooperative NOMA in secrecy performance.
  • Derived upper bounds for secrecy outage probabilities and analyzed asymptotic SOP behavior.

Abstract

Abstract To address the growing demands for energy-efficient and high-capacity sixth-generation (6 G) networks, reconfigurable intelligent surface (RIS) provides an innovative approach that enhances both spectral and energy efficiency. This paper investigates the physical layer security (PLS) of a downlink multiple-input single-output non-orthogonal multiple access (MISO-NOMA) system serving two users in the presence of multiple eavesdroppers. To enhance the security of legitimate communications against eavesdropping, we propose a RIS-assisted cooperative transmission scheme that integrates hybrid simultaneous wireless information and power transfer (H-SWIPT) and transmit antenna selection (TAS). In this framework, the cell-center user, acting as a decode-and-forward (DF) relay, assists the cell-edge user by leveraging hybrid time switching (TS) and power splitting (PS) SWIPT protocols. To evaluate secrecy performance, we derive a closed-form upper bound for the secrecy outage probability (SOP) and further analyze asymptotic SOP behavior and secrecy diversity order (SDO). Simulations confirm that our proposed scheme outperforms conventional orthogonal multiple access (OMA) and non-cooperative NOMA benchmarks in achievable secrecy performance.

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Cite This Study

Xu et al. (2026) studied this question.

synapsesocial.com/papers/69c08bcaa48f6b84677f97aehttps://doi.org/10.1186/s13638-026-02587-9
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