The ongoing surge in applications of robotics brings both opportunities and challenges for the fifth-generation (5G) and beyond (B5G) of communication networks. This article focuses on 5G/B5G-enabled terrestrial robotic communications with an emphasis on distinct characteristics of such communications. Firstly, signal and spatial modeling for robotic communications are presented. To elaborate further, both the benefits and challenges derived from robots' mobility are discussed. As a further advance, a novel simultaneous localization and radio mapping (SLARM) framework is proposed for integrating localization and communications into robotic networks. Furthermore, dynamic trajectory design and resource allocation for both indoor and outdoor robots are provided to verify the performance of robotic communications in the context of typical robotic application scenarios.
翻译:机器人应用的不断激增为通信网络第五代(5G)及以后的第五代(5G)带来了机遇和挑战,本条侧重于5G/B5G驱动的地面机器人通信,强调这种通信的特性;首先,介绍了机器人通信的信号和空间建模;为了进一步阐述,讨论了机器人流动带来的惠益和挑战;作为进一步的进展,提出了将本地化和通信纳入机器人网络的新型同步本地化和无线电制图框架;此外,为室内和室外机器人提供了动态轨迹设计和资源分配,以核实在典型机器人应用情况下机器人通信的性能。