In this paper a novel unmanned aerial vehicle aided (UAV) cooperative jamming scheme is proposed for covert communications. We first analyze the detection performance of the system to obtain the minimum error detection probability of the eavesdropper and then determine the transmission rate as the objective function by analyzing the transmission outage probability of the communication. The problem formulate is non-convex that is difficult to solve. To solve this, two efficient algorithms are proposed for general signal to interference plus noise ratio (SINR) and high SINR, respectively. The first algorithm applying the block coordinate descent (BCD) to decompose the problem into two subproblems and then solve them by successive convex approximation (SCA). For the second algorithm, we use a geometric method(GM) based on the Apollonius of Sphere to solve the optimization problem. The proposed scheme can enhance the covert performance significantly. Simulations verify that the proposed joint design can enhance the covert transmission rate of the considered system as compared to the benchmark schemes.
翻译:在本文中,提出了一个新的无人驾驶飞行器辅助(无人驾驶飞行器)合作干扰计划,用于隐蔽通信。我们首先分析该系统的探测性能,以获得窃听器的最低误探测概率,然后通过分析通信传输中断概率来确定传输率,作为客观功能。问题是难以解决的非隐形。为了解决这个问题,提出了两种有效的算法,分别用于普通干扰信号加上噪音比(SINR)和高SINR。第一种算法,采用区块坐标底部(BCD)将问题分解成两个子问题,然后通过连续的 convex近似(SCA)解决它们。对于第二种算法,我们使用基于Sphere的Affallnius(GM)的几何方法来解决最优化问题。拟议的计划可以显著提高隐形性。模拟验证拟议的联合设计能够比基准计划提高被考虑的系统的隐形传输率。