3D Deployment of Dynamic UAV Base Station based on Mobile Users

Fangxu Lu, Zhichao Mi, Ning Zhao, Hai Wang, Yulu Tian
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引用次数: 1

Abstract

The deployment of multiple dynamic rotary-wing UAV base stations is studied for moving users. The cumulative utility of the communication network is maximized by adding and applying the three paremeters of the UAV base stations in terms of total channel transmission rate, mobile energy consumption, and coverage utility. The UAV base station performs different motions in different time slots, which translates the process into a Markov decision process. Since the user moves randomly within the time slot, the reward function value of the “next two steps” of the dynamic UAV base station is considered. The mobility prediction of the user is taken into account to some extent, and finally the mobile strategy of the UAV base station within the current time slot is selected comprehensively. The simulation results show that the improved algorithm is effective in achieving the best coverage of the UAV base station.
基于移动用户的动态无人机基站三维部署
针对移动用户,研究了多动态旋翼无人机基站的部署问题。将无人机基站的信道总传输速率、移动能耗和覆盖效用三个参数相加应用,使通信网络的累积效用最大化。无人机基站在不同时隙进行不同的运动,将其转化为马尔可夫决策过程。由于用户在时隙内的移动是随机的,因此考虑动态无人机基站“下两步”的奖励函数值。在一定程度上考虑用户的移动性预测,最后综合选择无人机基站在当前时隙内的移动策略。仿真结果表明,改进算法能够有效地实现无人机基站的最佳覆盖。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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