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AuthorChamkhia H.
AuthorAl-Ali A.
AuthorMohamed A.
AuthorGuizani M.
AuthorErbad A.
AuthorRefaey A.
Available date2022-04-21T08:58:23Z
Publication Date2020
Publication NameProceedings - 2020 International Conference on Computational Science and Computational Intelligence, CSCI 2020
ResourceScopus
Identifierhttp://dx.doi.org/10.1109/CSCI51800.2020.00191
URIhttp://hdl.handle.net/10576/30080
AbstractThe internet of things (IoT) is becoming part of the infrastructure supporting various services in every day's life. Due to the complex nature of IoT systems with heterogeneous devices, the needed security and privacy aspects are mostly ignored in the initial system design. One of the proposed solutions to address the security threats from the physical layer perspective is physical-layer security (PLS). We propose the use of 3-D stochastic geometry to accurately model IoT systems in a realistic scenarios, where sensors, access points, and eavesdroppers are randomly located in a 3-D space. We use our model with realistic system deployment parameters to conduct rigorous performance analysis for critical security metrics, such as the successful transmission probability (STP) and the secrecy outage probability (SOP) in different potential IoT scenarios. We finally utilize simulation to validate the theoretical analysis. 2020 IEEE.
SponsorQatar University;Western University;Industrial Research and Consultancy Centre
Languageen
PublisherInstitute of Electrical and Electronics Engineers Inc.
SubjectGeometry
Intelligent computing
Physical layer
Privacy by design
Stochastic models
Stochastic systems
Heterogeneous devices
Initial system designs
Internet of thing (IOT)
Performance analysis
Physical layer security
Secrecy outage probabilities
Security and privacy
Transmission probabilities
Internet of things
TitlePerformance Analysis of IoT Physical layer Security Using 3-D Stochastic Geometry
TypeConference Paper
Pagination1022-1027


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