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Autonomous Navigation of a Solar-Powered UAV for Secure Communication in Urban Environments with Eavesdropping Avoidance

机译:用于窃听的城市环境中安全通信的太阳能UAV的自主导航

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This paper considers the navigation of a solar-powered unmanned aerial vehicle (UAV) for securing the communication with an intended ground node in the presence of eavesdroppers in urban environments. To complete this task, the UAV needs to not only fly safely in the complex urban environment, but also take into account the communication performance with the intended node and eavesdroppers. To this end, we formulate a multi-objective optimization problem to plan the UAV path. This problem jointly considers the maximization of the residual energy of the solar-powered UAV at the end of the mission, the maximization of the time period in which the UAV can securely communicate with the intended node and the minimization of the time to reach the destination. We pay attention to the impact of the buildings in the urban environments, which may block the transmitted signals and also create some shadow region where the UAV cannot harvest energy. A Rapidly-exploring Random Tree (RRT) based path planning scheme is presented. This scheme captures the nonlinear UAV motion model, and is computationally efficient considering the randomness nature. From the generated tree, a set of possible paths can be found. We evaluate the security of the wireless communication, compute the overall energy consumption as well as the harvested amount for each path and calculate the time to complete the flight. Compared to a general RRT scheme, the proposed method enables a large time window for the UAV to securely transmit data.
机译:本文考虑了太阳能无人驾驶空中车辆(UAV)的导航,用于在城市环境中的窃听者的存在下确保与预期地节节点的通信。为了完成这项任务,UAV不仅需要在复杂的城市环境中安全地飞行,而且还要考虑到具有预期节点和窃听者的通信性能。为此,我们制定了一个多目标优化问题来规划UAV路径。这个问题共同考虑了使命结束时太阳能UV的剩余能量的最大化,所以无人机可以安全地与预期节点通信的时间段和最小化到达目的地的时间。我们注意建筑物在城市环境中的影响,这可能阻止传输的信号,并且还创造了一些阴影区域,在那里UAV无法收获能量。提出了一种快速探索的随机树(RRT)路径规划方案。该方案捕获非线性UAV运动模型,并考虑随机性性质的计算方式。从生成的树中,可以找到一组可能的路径。我们评估无线通信的安全性,计算整体能量消耗以及每个路径的收获量,并计算完成飞行的时间。与一般的RRT方案相比,所提出的方法使UAV能够安全地传输数据。

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