论文标题
基于5G NR的系统体系结构,用于实时控制,无电Bowd RFID传感器
A 5G NR based System Architecture for Real-Time Control with Batteryless RFID Sensors
论文作者
论文摘要
已经开发了第五代无线网络(5G)技术,以满足各种至关时间性的用例,这些用例具有非常可靠的,低延迟和庞大的机器型通信,对于触觉互联网应用来说是必不可少的。在5G新无线电(NR)网络上,在非常低成本和无电射频识别(RFID)传感器的最新进展方面已经承诺要在5G新无线电(NR)网络上部署大量此类传感器。但是,此类应用程序的系统设计和性能尚未得到很好的研究。本文提出了一种新型的系统体系结构,适用于在5G NR MMWAVE环境中通用实时控制应用中代表性无电BFID触摸传感器。我们将使用5G NR基站上的Edge Computing节点讨论解决方案,以实现所提出的系统体系结构。与长期进化(LTE)网络比较的实时性能评估显示了所提出的系统体系结构的有效性。
The fifth-generation wireless networking (5G) technologies have been developed to meet various time-critical use cases with ultra-reliable, low-latency and massive machine-type communications which are indispensable for tactile Internet applications. Recent advancements in very low-cost and batteryless radio-frequency identification (RFID) sensors have given promises of deploying a massive amount of such sensors for real-time sensing and control applications on a 5G New Radio (NR) network. However, the system design and performance of such applications have not been well studied. This paper proposes a novel system architecture for the representative batteryless RFID touch sensors in generic real-time control applications in a 5G NR mmWave environment. We will discuss the solution using edge computing nodes on the 5G NR base station to the implementation of the proposed system architecture. The real-time performance evaluation with the comparison of the Long-Term Evolution (LTE) networks has shown the effectiveness of the proposed system architecture.