Opportunistic jamming for enhancing security: Stochastic geometry modeling and analysis

C Wang, HM Wang - IEEE Transactions on Vehicular …, 2016 - ieeexplore.ieee.org
IEEE Transactions on Vehicular Technology, 2016ieeexplore.ieee.org
This paper studies the secrecy communication of the single-input-single-output
multieavesdropper (SISOME) channel with multiple single-antenna jammers, where the
jammers and the eavesdroppers are distributed according to the independent 2-D
homogeneous Poisson point process (PPP). For enhancing the physical layer security, we
propose an opportunistic multiple-jammer selection scheme, where the jammers whose
channel gains to the legitimate receiver are less than a threshold are selected to transmit …
This paper studies the secrecy communication of the single-input-single-output multieavesdropper (SISOME) channel with multiple single-antenna jammers, where the jammers and the eavesdroppers are distributed according to the independent 2-D homogeneous Poisson point process (PPP). For enhancing the physical layer security, we propose an opportunistic multiple-jammer selection scheme, where the jammers whose channel gains to the legitimate receiver are less than a threshold are selected to transmit independent and identically distributed (i.i.d.) Gaussian jamming signals to confound the eavesdroppers. We characterize the secrecy throughput achieved by our proposed jammer selection scheme and show that the secrecy throughput is a quasi-concave function of the selection threshold.
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