论文标题
超越D2D:全尺寸无用的6G沟通
Beyond D2D: Full Dimension UAV-to-Everything Communications in 6G
论文作者
论文摘要
在本文中,我们在蜂窝网络上考虑了无人驾驶汽车(UAV)的互联网,在该网络中,无人机作为空中用户可以收集各种感官数据,并将收集到的数据通过蜂窝链路发送到其传输目的地。与传统的蜂窝网络中的地面用户不同,由于其感应应用程序,不同的无人机具有各种通信要求,并且需要更灵活的通信框架。为了解决这个问题,我们提出了一个无与伦比的全部网络(U2X)网络,该网络使无人机可以根据其传感应用程序的要求在尺寸上调整其通信模式。在本文中,我们首先介绍了U2X通信的概念,并详细介绍了其三种通信模式。之后,我们讨论U2X通信的关键技术,包括关节传感和传输协议,无人机轨迹设计和无线电资源管理。然后提出了基于增强学习的基于学习的数学框架。最后,提出了U2X通信的扩展。
In this paper, we consider an Internet of unmanned aerial vehicles (UAVs) over cellular networks, where UAVs work as aerial users to collect various sensory data, and send the collected data to their transmission destinations over cellular links. Unlike the terrestrial users in the conventional cellular networks, different UAVs have various communication requirements due to their sensing applications, and a more flexible communication framework is in demand. To tackle this problem, we propose a UAV-to-Everything (U2X) networking, which enables the UAVs to adjust their communication modes full dimensionally according to the requirements of their sensing applications. In this article, we first introduce the concept of U2X communications, and elaborate on its three communication modes. Afterwards, we discuss the key techniques of the U2X communications, including joint sensing and transmission protocol, UAV trajectory design, and radio resource management. A reinforcement learning-based mathematical framework for U2X communications is then proposed. Finally, the extensions of the U2X communications are presented.