Covert Wireless Communication With a Poisson Field of Interferers

In this paper, we study covert communication in wireless networks consisting of a transmitter, Alice, an intended receiver, Bob, a warden, Willie, and a Poisson field of interferers. Bob and Willie are subject to uncertain shot noise due to the ambient signals from interferers in the network. With t...

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Published inIEEE transactions on wireless communications Vol. 17; no. 9; pp. 6005 - 6017
Main Authors He, Biao, Yan, Shihao, Zhou, Xiangyun, Jafarkhani, Hamid
Format Journal Article
LanguageEnglish
Published New York IEEE 01.09.2018
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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ISSN1536-1276
1558-2248
DOI10.1109/TWC.2018.2854540

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Abstract In this paper, we study covert communication in wireless networks consisting of a transmitter, Alice, an intended receiver, Bob, a warden, Willie, and a Poisson field of interferers. Bob and Willie are subject to uncertain shot noise due to the ambient signals from interferers in the network. With the aid of stochastic geometry, we analyze the throughput of the covert communication between Alice and Bob subject to given requirements on the covertness against Willie and the reliability of decoding at Bob. We consider non-fading and fading channels. We analytically obtain interesting findings on the impacts of the density and the transmit power of the concurrent interferers on the covert throughput. That is, the density and the transmit power of the interferers have no impact on the covert throughput as long as the network stays in the interference-limited regime, for both the non-fading and the fading cases. When the interference is sufficiently small and comparable with the receiver noise, the covert throughput increases as the density or the transmit power of the concurrent interferers increases.
AbstractList In this paper, we study covert communication in wireless networks consisting of a transmitter, Alice, an intended receiver, Bob, a warden, Willie, and a Poisson field of interferers. Bob and Willie are subject to uncertain shot noise due to the ambient signals from interferers in the network. With the aid of stochastic geometry, we analyze the throughput of the covert communication between Alice and Bob subject to given requirements on the covertness against Willie and the reliability of decoding at Bob. We consider non-fading and fading channels. We analytically obtain interesting findings on the impacts of the density and the transmit power of the concurrent interferers on the covert throughput. That is, the density and the transmit power of the interferers have no impact on the covert throughput as long as the network stays in the interference-limited regime, for both the non-fading and the fading cases. When the interference is sufficiently small and comparable with the receiver noise, the covert throughput increases as the density or the transmit power of the concurrent interferers increases.
Author Yan, Shihao
Jafarkhani, Hamid
Zhou, Xiangyun
He, Biao
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  orcidid: 0000-0001-9907-7881
  surname: He
  fullname: He, Biao
  email: biao.he@uci.edu
  organization: Center for Pervasive Communications and Computing, University of California at Irvine, Irvine, CA, USA
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  givenname: Shihao
  orcidid: 0000-0002-4586-1926
  surname: Yan
  fullname: Yan, Shihao
  email: shihao.yan@mq.edu.au
  organization: School of Engineering, Macquarie University, Sydney, NSW, Australia
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  givenname: Xiangyun
  orcidid: 0000-0001-8973-9079
  surname: Zhou
  fullname: Zhou, Xiangyun
  email: xiangyun.zhou@anu.edu.au
  organization: Research School of Engineering, The Australian National University, Canberra, ACT, Australia
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  givenname: Hamid
  orcidid: 0000-0001-6838-8038
  surname: Jafarkhani
  fullname: Jafarkhani, Hamid
  email: hamidj@uci.edu
  organization: Center for Pervasive Communications and Computing, University of California at Irvine, Irvine, CA, USA
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SubjectTerms Aggregates
Communication
covert wireless communication
Decoding
Density
Fading
Interference
Physical layer security
Receivers
Shot noise
signal processing
stochastic geometry
Throughput
Transmitters
Wireless communications
Wireless networks
Title Covert Wireless Communication With a Poisson Field of Interferers
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