Robust Chance-Constrained Trajectory and Transmit Power Optimization for UAV-Enabled CR Networks

Yifan Zhou, Huilin Zhou, Fuhui Zhou, D. W. K. Ng, R. Hu
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引用次数: 3

Abstract

Cognitive radio is a promising technology to improve spectral efficiency. However, communication security of a secondary network is limited by its transmit power and channel fading. In order to tackle this issue, by exploiting the high flexibility and the possibility of establishing line-of-sight links, a cognitive unmanned aerial vehicle (UAV) communication network is studied. The average secrecy rate of the secondary network is maximized by robustly optimizing the UAVs trajectory and transmit power. Our formulated problem takes into account practical imperfect location estimation. To solve the non-convex problem, an iterative suboptimal algorithm based on the Bernstein-type inequalities is presented. Our simulation results demonstrate that the proposed scheme can improve the secure communication performance significantly compared to a benchmark scheme based on fixed trajectory.
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基于无人机的CR网络鲁棒机会约束轨迹和传输功率优化
认知无线电是一种很有前途的提高频谱效率的技术。然而,二级网络的通信安全性受到其发射功率和信道衰落的限制。为了解决这一问题,利用高灵活性和建立视距链路的可能性,研究了一种认知无人机通信网络。通过对无人机飞行轨迹和发射功率的鲁棒优化,实现了二次网络平均保密率的最大化。我们的公式问题考虑了实际的不完全位置估计。为了求解非凸问题,提出了一种基于bernstein型不等式的迭代次优算法。仿真结果表明,与基于固定轨迹的基准方案相比,该方案可以显著提高安全通信性能。
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