论文标题

空降应用的联合通信,传感和本地化

Joint Communication, Sensing and Localization for Airborne Applications

论文作者

Johannsen, Nils L., Schurwanz, Max, Grundmann, Lukas, Mietzner, Jan, Manteuffel, Dirk, Hoeher, Peter A.

论文摘要

随着即将到来的自动驾驶和城市空气流动性的趋势,自动驱动的车辆的数量将增加,因为它们可以预见到交付以及自动驾驶出租车以及其他应用中。为此,用于无线通信,环境感应和本地化的众多板载系统将成为强制性。对于无人驾驶汽车(UAV)尤其如此,因为参与空域需要与已建立的用户的兼容性和安全的互动。一定数量的系统已经是使用中的,并且占用定义的光谱以及安装空间,这限制了新系统设计的自由。用于交付服务的无人机等航空车的小型化进一步降低了自由度,尤其是在任何其他设备的尺寸和重量方面。因此,在本文中,讨论了无人机的联合通信,传感和本地化的联合方法。为了实现这一目标,在将自主驾驶提升到第三维时,提出了多模式多端口天线和关节波形设计作为解决方案的一部分。

With the upcoming trends in autonomous driving and urban air mobility, the number of self-navigating vehicles will increase, since they are foreseen for deliveries as well as autonomous taxis among other applications. To this end, a multitude of on-board systems for wireless communication, environment sensing, and localization will become mandatory. This is particularly true for unmanned aerial vehicles (UAVs), since participation in the airspace requires compatibility to and safe interaction with established users. A certain number of systems are already in-use and occupy defined spectra as well as installation space, which limits the freedom in the design of new systems. The miniaturization of aerial vehicles like drones for delivery services further reduces the degrees of freedom, especially in terms of size and weight of any additional equipment. Hence, in this paper a joint approach of the design of joint communication, sensing and localization for UAVs is discussed. Towards this goal, multi-mode multi-port antennas and joint waveform design are proposed as a part of the solution, when elevating autonomous driving to the third dimension.

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