Mitigation of Jamming Attacks via Deception
Satyaki Nan, Swastik K. Brahma, Charles Kamhoua, Nandi Leslie · 2020
This paper considers the problem of mitigating jamming attacks by aiming to deceive the jammer. Specifically, in the presence of a jammer, to defend a transmitter-receiver pair sending (real) information, the paper proposes the novel technique of sending fake information over a second transmitter-receiver pair in order to deceive the jammer into investing some of its jamming power budget for jamming the channel carrying fake information. The paper develops a leader-follower model where the jammer (acting as the follower) adopts it's jamming strategy after sensing the communication activities on the channels carrying the real and fake information, while the system (acting as the leader) adopts its power allocation strategy prior to the jammer. The paper characterizes the optimal power allocation strategy of the system considering the jammer to be non-strategic in nature, as well as characterizes the Subgame Perfect Nash Equilibrium (SPNE) strategy of the leader-follower game considering both the system and the jammer to be strategic entities. Extensive simulation results are provided to gain insights into the deception strategies developed in the paper.