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Trajectory and Power Optimization for Multi-UAV Enabled Emergency Wireless Communications Networks

机译:启用多UAV的应急无线通信网络的轨迹和功率优化

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Recently, unmanned aerial vehicle (UAV) has attracted much attention due to its flexible deployment and controllable mobility. As the general communication network cannot meet the emergency requirements, in this paper we study the multi-UAV enabled wireless emergency communication system. Our goal is to maximize the capacity with jointly optimizing trajectory and allocating power. To tackle this non-convex optimization problem, we first decompose it into two sub-problems to optimize the trajectory and power allocation, respectively. Then, we propose the successive convex approximation technique and the block coordinate update algorithm to solve the two subproblems. The approximate optimal solution can be obtained after continuous iterations. Simulation results show that the capacity can be greatly increased using our proposed joint trajectory optimization and power allocation.
机译:近来,无人飞行器(UAV)由于其灵活的部署和可控的机动性而引起了人们的广泛关注。由于通用通信网络无法满足紧急情况的需求,因此本文研究了支持多UAV的无线紧急通信系统。我们的目标是通过共同优化轨迹和分配动力来最大化容量。为了解决这个非凸优化问题,我们首先将其分解为两个子问题,分别优化轨迹和功率分配。然后,我们提出了逐次凸逼近技术和块坐标更新算法来解决这两个子问题。连续迭代后可获得近似最优解。仿真结果表明,通过我们提出的联合轨迹优化和功率分配,可以大大提高容量。

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