面向天空地一体化网络可靠通信的多城市空中机动轨迹优化

Y. Park, Kitae Kim, Seong-Bae Park, C. Hong
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引用次数: 2

摘要

在个人车辆和建筑供应密集的智慧城市,有时会出现超载和交通堵塞。此时,城市空中交通(UAM)可以提供无人服务,如送货或出租车,而不考虑地面基础设施。但是,如果UAM的远程控制或通信出现问题,则存在严重的风险,可以立即造成大量人员伤亡。因此,优化uam的弹道,避免uam之间的碰撞,保证通信的可靠性是必要的。另一方面,通过星链等卫星进行通信具有覆盖范围广的优势,因此卫星可以在通信基础设施不足的地区支持通信业务。因此,在本文中,通过星-空-地一体化网络,为UAMs的可靠通信提供了资金。此时,每个UAM考虑通信基础设施和其他UAM的位置,避免碰撞,并导出可靠通信的轨迹。提出了一种基于近端策略优化(PPO)的算法,以在短时间内推导出无人机的最优轨迹。实验结果表明,uam可以避免与其他uam的碰撞,同时获得可靠的通信服务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Trajectory Optimization of Multiple Urban Air Mobility for Reliable Communications with Integrated Space-Air-Ground Network
In smart cities where the supply of personal vehicles and buildings is intensively constructed, overload and traffic jams sometimes occur. At this time, Urban Air Mobility (UAM) can provide unmanned services such as delivery or taxis regardless of ground infrastructure. However, if there is a problem with the remote control or communication of UAM, there is a serious risk that can cause a lot of casualties immediately. Therefore, optimizing the trajectory of UAMs to avoid collisions between UAMs and ensure reliable communication is necessary. On the other hand, communication through satellites such as Starlink has the advantage of having wide coverage, so satellites can support communication services in areas where communication infrastructure is insufficient. Thus, in this paper, reliable communication of UAMs is funded through the satellite-air-terrestrial integrated network. At this time, each UAM considers the location of the communication infrastructure and other UAMs, avoids collisions, and derives a trajectory for reliable communication. We proposed an algorithm based on proximal policy optimization (PPO) to derive the optimal trajectory of UAMs in a short time. As a result of the experiment, UAMs can avoid collisions with other UAMs and simultaneously receive a reliable communication service.
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