A game theoretic approach to channel switching in the presence of jamming

Article


Bozkurt, B., Sezer, A.D., Gezici, S. and Girici, T. 2021. A game theoretic approach to channel switching in the presence of jamming. IEEE Communications Letters. 25 (12), pp. 3927-3931. https://doi.org/10.1109/LCOMM.2021.3120208
TypeArticle
TitleA game theoretic approach to channel switching in the presence of jamming
AuthorsBozkurt, B., Sezer, A.D., Gezici, S. and Girici, T.
Abstract

In this letter, a channel switching problem is investigated in the presence of jamming based on a game theoretic approach. First, a convex formulation of the optimal channel switching problem is proposed for a given jamming strategy. Then, considering a fixed channel switching strategy, an explicit solution of the optimal jammer power allocation problem is obtained. Consequently, a game theoretic formulation is proposed and the existence of a pure-strategy Nash equilibrium is shown for the proposed channel switching game between the transmitter and the jammer.

KeywordsSwitches; Jamming; Receivers; Games; Radio transmitters; Nash equilibrium; Optimization; Channel switching; jamming; Nash equilibrium; capacity; time-sharing; power allocation
Sustainable Development Goals9 Industry, innovation and infrastructure
Middlesex University ThemeCreativity, Culture & Enterprise
PublisherIEEE
JournalIEEE Communications Letters
ISSN1089-7798
Electronic1558-2558
Publication dates
Online14 Oct 2021
Print10 Dec 2021
Publication process dates
Submitted23 Jul 2021
Accepted12 Oct 2021
Deposited19 Mar 2025
Output statusPublished
Digital Object Identifier (DOI)https://doi.org/10.1109/LCOMM.2021.3120208
Web of Science identifierWOS:000728924700039
LanguageEnglish
Permalink -

https://repository.mdx.ac.uk/item/21vxyv

  • 6
    total views
  • 0
    total downloads
  • 2
    views this month
  • 0
    downloads this month

Export as

Related outputs

Phase coded waveforms for integrated sensing and communication systems
Sahin, S. and Girici, T. 2024. Phase coded waveforms for integrated sensing and communication systems. IET Radar, Sonar & Navigation. 18 (12), pp. 2608-2616. https://doi.org/10.1049/rsn2.12661
Implementation and evaluation of age-aware downlink scheduling policies in push-based and pull-based communication
Oguz, T.K., Ceran, E.T., Uysal, E. and Girici, T. 2022. Implementation and evaluation of age-aware downlink scheduling policies in push-based and pull-based communication. Entropy. 24 (5). https://doi.org/10.3390/e24050673
Q-learning based scheduling with successive interference cancellation
Mete, E. and Girici, T. 2020. Q-learning based scheduling with successive interference cancellation. IEEE Access. 8, pp. 172034-172042. https://doi.org/10.1109/ACCESS.2020.3025043
Measurement based threat aware drone base station deployment
Akarsu, A. and Girici, T. 2020. Measurement based threat aware drone base station deployment. Turkish Journal of Electrical Engineering and Computer Sciences. 28 (2), pp. 1149-1163. https://doi.org/10.3906/elk-1907-183