论文标题
MMWave和微波带飞机通信的一般框架
A General Framework for Airplane Air-to-Ground Communications in mmWave and Microwave Bands
论文作者
论文摘要
飞机传感器和板载设备在用于飞机维护的飞行过程中收集了越来越多的维护数据。我们建议在飞机下降期间通过位于机场的蜂窝基站(BS)下载部分数据。我们制定并解决了一个离线优化问题,以量化在非专用频段中可以将多少数据卸载,同时确保机场附近的地面BSS的干扰仍低于最大允许阈值。我们的问题允许发射功率的自适应调整,要使用的频道数量以及根据平面在下降路径上的位置进行横向形成。我们的结果表明,在下降的最后5分钟,在微波带中,平面可以在20〜MHz频段中卸载多达5 GB的维护数据,而在MMWave频段中,平面可以在1〜GHz频段中卸载多达24倍的数据。波束形成,功率和带宽调整对于保持MMWave频段的良好性能至关重要,而在微波频带中,带宽的动态调整并不能太大提高性能。
Airplane sensors and on-board equipment collect an increasingly large amount of maintenance data during flights that are used for airplane maintenance. We propose to download part of the data during airplane's descent via a cellular base station (BS) located at the airport. We formulate and solve an offline optimization problem to quantify how much data can be offloaded in a non-dedicated band while ensuring that the interference at the terrestrial BSs in the vicinity of the airport remains below a maximum allowable threshold. Our problem allows for adaptive tuning of transmit power, number of frequency channels to be used, and beamforming according to the position of the plane on the descent path. Our results show that during the last 5 minutes of descent, in the microwave band the plane can offload up to 5 GB of maintenance data in a 20~MHz band, while in the mmWave band the plane can offload up to 24 times more data in a 1~GHz band. Beamforming, power and bandwidth tuning are all crucial in maintaining a good performance in the mmWave band while in the microwave band, dynamic tuning of bandwidth does not improve the performance much.