论文标题
无人驾驶通信中安全变速器的延迟最小化设计
Latency-Minimized Design of Secure Transmissions in UAV-Aided Communications
论文作者
论文摘要
无人驾驶飞机(UAV)可以用作航空站,因为它们的移动性高和灵活的部署,为远程移动用户提供通信服务。但是,视线(LOS)无线链接很容易受到窃听者(EVE)的拦截,这给无人机的通信带来了重大挑战。在本文中,我们提出了一种延迟最小化的传输方案,以满足合法用户(LUS')内容对EVE的安全请求。通过利用物理层安全性(PLS)技术,我们通过共同优化UAV轨迹和用户关联来制定传输延迟最小化问题。由此产生的问题是一个混合成员非线性程序(MINLP),已知NP很难。此外,优化变量的维度是不确定的,这再次使我们的问题变得非常具有挑战性。为了有效解决此问题,我们利用二进制来搜索最小传输延迟,并引入一种各种惩罚方法,通过不应对块坐标下降方法来解决相关的子问题。此外,我们提出了最佳解决方案的特征。提供仿真结果以证明所提出的设计的出色性能。
Unmanned aerial vehicles (UAVs) can be utilized as aerial base stations to provide communication service for remote mobile users due to their high mobility and flexible deployment. However, the line-of-sight (LoS) wireless links are vulnerable to be intercepted by the eavesdropper (Eve), which presents a major challenge for UAV-aided communications. In this paper, we propose a latency-minimized transmission scheme for satisfying legitimate users' (LUs') content requests securely against Eve. By leveraging physical-layer security (PLS) techniques, we formulate a transmission latency minimization problem by jointly optimizing the UAV trajectory and user association. The resulting problem is a mixed-integer nonlinear program (MINLP), which is known to be NP hard. Furthermore, the dimension of optimization variables is indeterminate, which again makes our problem very challenging. To efficiently address this, we utilize bisection to search for the minimum transmission delay and introduce a variational penalty method to address the associated subproblem via an inexact block coordinate descent approach. Moreover, we present a characterization for the optimal solution. Simulation results are provided to demonstrate the superior performance of the proposed design.