Cooperative jamming for secrecy in decentralized wireless networks
Date
Authors
Tao, Meixia
Kennedy, Rodney
Zhou, Xiangyun
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Volume Title
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
Abstract
Cooperative jamming as a physical layer security enhancement has recently drawn considerable attention. While most existing works focus on communication systems with a small number of nodes, we investigate the use of cooperative jamming for providing secrecy in large-scale decentralized networks consisting of randomly distributed legitimate users and eavesdroppers. A modified slotted ALOHA protocol, named CJ-ALOHA, is considered where each legitimate transmitter either sends its message signal or acts as a helping jammer according to a message transmission probability p. We derive the secrecy transmission capacity to characterize the network throughput and show how the throughput is affected by the CJ-ALOHA protocol. Both analytical and numerical insights are provided on the design of the CJ-ALOHA protocol for optimal throughput performance.
Description
Keywords
Citation
Zhou, X., Tao, M., & Kennedy, R. (2012). Cooperative jamming for secrecy in decentralized wireless networks. In 2012 IEEE International Conference on Communications (ICC). Ottawa, ON: IEEE.
Collections
Source
Proceedings of ICC 2012
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Book Title
Entity type
Access Statement
Open Access