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Physical layer security transmission scheme based on artificial noise in cooperative SWIPT NOMA system

Published: 03 July 2021 Publication History

Abstract

Aiming at high energy consumption and information security problem in the simultaneous wireless information and power transfer (SWIPT) multi-user wiretap network, we propose a user-aided cooperative non-orthogonal multiple access (NOMA) physical layer security transmission scheme to minimize base station (BS) transmitted power in this paper. In this scheme, the user near from BS is adopted as a friendly relay to improve performance of user far from BS. An energy harvesting (EH) technology-based SWIPT is employed at the near user to collect energy which can be used at cooperative stage. Since eavesdropper in the downlink of NOMA system may use successive interference cancellation (SIC) technology to obtain the secrecy information of receiver, to tackle this problem, artificial noise (AN) is used at the BS to enhance security performance of secrecy information. Moreover, semidefinite relaxation (SDR) method and successive convex approximation (SCA) technique are combined to solve the above non-convex problem. Simulation results show that in comparison with other methods, our method can effectively reduce the transmitted power of the BS on the constraints of a certain level of the secrecy rates of two users.

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Cited By

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  • (2024)Power allocation for enhancing the physical layer secrecy performance of artificial noise-aided full-duplex cooperative NOMA systemTelecommunications Systems10.1007/s11235-023-01067-585:1(41-66)Online publication date: 1-Jan-2024

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Published In

cover image EURASIP Journal on Wireless Communications and Networking
EURASIP Journal on Wireless Communications and Networking  Volume 2021, Issue 1
Jun 2021
3646 pages
ISSN:1687-1472
EISSN:1687-1499
Issue’s Table of Contents

Publisher

Hindawi Limited

London, United Kingdom

Publication History

Published: 03 July 2021
Accepted: 23 June 2021
Received: 16 November 2020

Author Tags

  1. SWIPT
  2. NOMA
  3. Power splitting (PS)
  4. Secrecy communication
  5. AN

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  • Research-article

Funding Sources

  • National Science Foundation Council of China
  • Talent Program of Henan University

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View all
  • (2024)Power allocation for enhancing the physical layer secrecy performance of artificial noise-aided full-duplex cooperative NOMA systemTelecommunications Systems10.1007/s11235-023-01067-585:1(41-66)Online publication date: 1-Jan-2024

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