On IRS-Assisted Covert Communication with a Friendly UAV

Author:

Xu Xiaobei12,Hu Linzi1,Wei Sha3,Qian Yuwen1ORCID,Yan Shihao4,Shu Feng5,Li Jun1

Affiliation:

1. School of Electric and Optical Engineering, Nanjing University of Science and Technology, Nanjing 210094, China

2. Nanjing Les Information Technology Co., Ltd., Nanjing 210014, China

3. China Academy of Information and Communications, Beijing 100191, China

4. School of Science and Security Research Institute, Edith Cowan University, Perth 6027, Australia

5. School of Information and Communication Engineering, Hainan University, Haikou 570228, China

Abstract

Driven by the rapidly growing demand for information security, covert wireless communication has become an essential technology and attracted tremendous attention. However, traditional wireless covert communication is continuously exposing the inherent limitations, creating challenges around deployment in environments with a large number of obstacles, such as cities with high-rise buildings. In this paper, we propose an intelligent reflecting surface (IRS)-assisted covert communication system (CCS) for communicating with a friendly unmanned aerial vehicle (UAV) in which the UAV generates artificial noise (AN) to interfere with monitoring. Furthermore, we model the power of AN emitted by the UAV using an uncertainty model, through which the closed-form detection error probability (DEP) of the covert wireless communication for monitoring is derived. Under the derived DEP, we formulate the optimization problem to maximize the covert rate, then design an iterative algorithm to solve the optimization problem and obtain the optimal covert rate using Dinkelbach method. Simulation results show that the proposed system achieves the maximum covert rate when the phase of the IRS units and the trajectory and transmit power of the UAV are optimized jointly.

Funder

National Key Research and Development Program of China

Publisher

MDPI AG

Subject

Artificial Intelligence,Computer Science Applications,Aerospace Engineering,Information Systems,Control and Systems Engineering

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