Multi-beam symbol-level secure transmission against hybrid eavesdropping
彬 邱, 文驰 程 · Scientia Sinica Informationis · 2021
In this paper, we consider a physical layer security (PLS) problem for a hybrid wiretapping wireless system in millimeter-wave transmission, where the active eavesdropper and passive eavesdropper (Eve) may coexist to intercept the confidential messages and emit jamming signals. To achieve secure and reliable transmission, we propose a switched phased-array directional modulation (DM) scheme that employs multi-beam symbol-level precoding with aided artificial noise (AN) technique at the transmitter, and array reception at legitimate users (LU). Here we consider a more practical case that the information of the eavesdropper (Eve) is unknown by the transmitter. Leveraging DM beamforming, we aim to minimize transmit message power by optimizing the beamforming vector, subject to prescribed symbol-level constraints, thus generating exact/relaxed phases at LU. The remaining transmit power can be utilized to generate AN. Additionally, by means of the minimum variance distortionless response method at the LU, the jamming caused by active Eve can be efficiently eliminated. Simulation results demonstrate the superiority of the proposed scheme.