UAV-Aided Secure Communication With Deployment Optimization and Cooperative Jamming

Hongbing Li, Juan Wu, L. Luo, Jiang Xiong
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Abstract

This paper investigates the jointly transmit power and unmanned aerial vehicle (UAV)/jammer deployment optimization problem for UAV enabled jammer-assisted secure communication systems, where a jammer is exploited to assist transmitting data from a source node to a legitimate destination node in the presence of multiple eavesdroppers. To increase the secrecy energy efficiency, which is defined as the achievable secrecy rate per energy consumption unit, we formulate a secrecy energy efficiency maximization problem by jointly optimizing the transmit power and UAV/jammer deployment. The resulting optimization problem is shown to be a non-convex and fractional optimization problem, which is challenging to solve. As such, we decompose the original problem into two sub-problems, and then, an efficient iterative algorithm is proposed by leveraging the extensive search method and Dinkelbach method in combination with successive convex approximation (SCA) techniques. Numerical simulation results show that the proposed scheme significantly improves the secrecy energy efficiency of the system.
基于部署优化和协同干扰的无人机辅助安全通信
本文研究了无人机干扰机辅助安全通信系统的联合传输功率和无人机/干扰机部署优化问题,该系统利用干扰机在存在多个窃听器的情况下协助将数据从源节点传输到合法目的节点。为了提高保密能源效率,将其定义为每能耗单位可实现的保密率,通过联合优化发射功率和无人机/干扰机部署,提出了保密能源效率最大化问题。结果表明,该优化问题是一个具有挑战性的非凸分数优化问题。因此,我们将原问题分解为两个子问题,然后利用广泛搜索方法和Dinkelbach方法结合逐次凸逼近(SCA)技术提出了一种高效的迭代算法。数值仿真结果表明,该方案显著提高了系统的保密能量效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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