论文标题
不确定的对抗网络中的节能无人机中继鲁棒资源分配
Energy-Efficient UAV Relaying Robust Resource Allocation in Uncertain Adversarial Networks
论文作者
论文摘要
移动继电器技术是无线通信中的一项关键增强技术,因为更有可能以更高的服务质量为基础站(BS)的远程用户提供支持。本文调查了安装在无人机(UAV)上的节能(EE)移动继电器网络,而未知的对手则试图拦截合法的联系。我们旨在优化沿着无人机和BS的强大传输功率,继电器徘徊路径,速度和加速度。 BS发送合法信息,该信息由继电器转发给用户。此过程定义为信息造成性构成(ICC)。我们共同优化了有限的时间范围内最坏情况下的保密率(WCSR)和无人机推进能量消耗(PEC)。我们构建BS-UAV,UAV-USER和UAV-Exrversary Channel模型。考虑到无人机速度和加速度,我们应用无人机PEC。最后,我们在对抗性无线网络中得出EE无人机中继 - 用户最大化问题。虽然问题是非凸,但我们提出了一种迭代且最佳的算法,以优化EE无人机继电器,例如ICC,ICC,轨迹,速度,速度,加速度和发射功率。首先,我们优化了BS和UAV传输功率,以及用于已知的无人机路径计划和加速度的悬停速度。使用最佳发射功率和速度,我们获得了最佳轨迹和加速度。我们将算法与现有算法进行比较,并展示了改进的EE无人机传达我们的模型。
The mobile relaying technique is a critical enhancing technology in wireless communications due to a higher chance of supporting the remote user from the base station (BS) with better quality of service. This paper investigates energy-efficient (EE) mobile relaying networks, mounted on an unmanned aerial vehicle (UAV), while the unknown adversaries try to intercept the legitimate link. We aim to optimize robust transmit power both UAV and BS along, relay hovering path, speed, and acceleration. The BS sends legitimate information, which is forwarded to the user by the relay. This procedure is defined as information-causality-constraint (ICC). We jointly optimize the worst case secrecy rate (WCSR) and UAV propulsion energy consumption (PEC) for a finite time horizon. We construct the BS-UAV, the UAV-user, and the UAV-adversary channel models. We apply the UAV PEC considering UAV speed and acceleration. At last, we derive EE UAV relay-user maximization problem in the adversarial wireless networks. While the problem is non-convex, we propose an iterative and sub-optimal algorithm to optimize EE UAV relay with constraints, such as ICC, trajectory, speed, acceleration, and transmit power. First, we optimize both BS and UAV transmit power, and hovering speed for known UAV path planning and acceleration. Using the optimal transmit power and speed, we obtain the optimal trajectory and acceleration. We compare our algorithm with existing algorithms and demonstrate the improved EE UAV relaying communication for our model.