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Full-duplex relay with jamming protocol for improving physical-layer security

机译:具有干扰协议的全双工中继,可提高物理层安全性

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This paper proposes a jointly cooperative relay and jamming protocol based on full-duplex (FD) capable relay to increase the source-destination secrecy rate in the presence of different types of eavesdroppers. In this so called FD-Relay with jamming (FDJ) protocol, the FD-Relay, first, simultaneously receives data and sends jamming to the eavesdropper, and, then, forwards the data, while the source jams the eavesdropper. Achievable secrecy rates of the proposed FDJ in the presence of different eavesdropper types and self-interference (SI) are derived and compared with those of the traditional half-duplex (HD) relay. The adaptive power allocation for secrecy rate maximization in a multi-carrier scenario for both proposed FDJ and HD-Relay is formulated as a non-convex optimization problem and corresponding iterative solution algorithm is developed using the difference-of-two-concave-functions (DC) programming technique. The simulation results confirm that FDJ offers significant improvements in the secrecy rate over the HD-Relay.
机译:本文提出了一种基于全双工(FD)中继的联合协作中继和干扰协议,以在存在不同类型的窃听者的情况下提高源-目的地的保密率。在这种具有干扰的FD中继(FDJ)协议中,FD中继首先同时接收数据并将干扰发送到窃听者,然后转发数据,而源干扰了窃听者。在存在不同的窃听者类型和自干扰(SI)的情况下,得出了所提出的FDJ的可达到的保密率,并与传统的半双工(HD)中继进行了比较。对于拟议的FDJ和HD-Relay,将多载波方案中的保密率最大化的自适应功率分配公式化为非凸优化问题,并使用二凹函数差(( DC)编程技术。仿真结果证实,与HD-Relay相比,FDJ显着提高了保密率。

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