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Wireless powered D2D communication security using LSTM in emergency communication system

  • Northwestern Polytechnical University Xian

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

3 Scopus citations

Abstract

This paper investigates the security of wireless-powered device-to-device (D2D) communication networks in an emergency communication system with multiple eavesdroppers, where an unmanned aerial vehicle (UAV) acts as a temporary base station providing wireless power for the D2D transmitters to guarantee power efficiency for the D2D network, and serving as cooperative jammer (CJ) to interfere with the eavesdroppers. Considering the privacy of D2D communication, we formulate the establishment of D2D pairs as a multi-class classification problem, and use the Long Short-Term Memory (LSTM) algorithm to classify potential D2D transmitters. Specifically, the LSTM algorithm is based on the remaining energy of the temporary base station, the mobile state of the potential D2D transmitter and the content request amount of the D2D receiver to establish D2D communication that achieves the optimal security performance. The simulation results show that the LSTM-based D2D establishment scheme can effectively improve the security capability of D2D communication, and prove that the amount of energy harvested by the D2D transmitter affects the security capacity of the D2D communication system.

Original languageEnglish
Title of host publication2019 28th Wireless and Optical Communications Conference, WOCC 2019 - Proceedings
PublisherInstitute of Electrical and Electronics Engineers Inc.
ISBN (Electronic)9781728106601
DOIs
StatePublished - May 2019
Event28th Wireless and Optical Communications Conference, WOCC 2019 - Beijing, China
Duration: 9 May 201910 May 2019

Publication series

Name2019 28th Wireless and Optical Communications Conference, WOCC 2019 - Proceedings

Conference

Conference28th Wireless and Optical Communications Conference, WOCC 2019
Country/TerritoryChina
CityBeijing
Period9/05/1910/05/19

Keywords

  • Device-to-device
  • LSTM
  • Physical layer security

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