Improving physical layer security via a UAV friendly jammer for unknown eavesdropper location

Y Zhou, PL Yeoh, H Chen, Y Li… - IEEE Transactions …, 2018 - ieeexplore.ieee.org
Y Zhou, PL Yeoh, H Chen, Y Li, R Schober, L Zhuo, B Vucetic
IEEE Transactions on Vehicular Technology, 2018ieeexplore.ieee.org
In this correspondence paper, we consider an unmanned aerial vehicle (UAV) equipped
with an air-to-ground friendly jammer assisting secure communications between a legitimate
transmitter-receiver pair for unknown eavesdropper location. To enhance the reliability and
security of this system, we examine the impact of the UAV jamming power and its three-
dimensional (3-D) spatial deployment on the outage probability (OP) of the legitimate
receiver and the intercept probability (IP) of the eavesdropper. Based on the IP, we develop …
In this correspondence paper, we consider an unmanned aerial vehicle (UAV) equipped with an air-to-ground friendly jammer assisting secure communications between a legitimate transmitter-receiver pair for unknown eavesdropper location. To enhance the reliability and security of this system, we examine the impact of the UAV jamming power and its three-dimensional (3-D) spatial deployment on the outage probability (OP) of the legitimate receiver and the intercept probability (IP) of the eavesdropper. Based on the IP, we develop a new security measure, which we refer to as the intercept probability security region (IPSR). The IPSR defines the region within a target area where the IP is less than a given threshold. We design a low-complexity iterative algorithm to maximize the IPSR subject to an OP constraint by jointly optimizing the 3-D deployment and jamming power of the UAV jammer. Numerical results show that our proposed iterative algorithm performs close to an exhaustive search with significantly reduced complexity.
ieeexplore.ieee.org
以上显示的是最相近的搜索结果。 查看全部搜索结果