Segura David, Khatib Emil J, Munilla Jorge, Barco Raquel
Department of Communications Engineering, University of Malaga, 29071 Málaga, Spain.
Sensors (Basel). 2021 Apr 3;21(7):2489. doi: 10.3390/s21072489.
The fifth-generation (5G) network is presented as one of the main options for Industry 4.0 connectivity. Ultra-Reliable and Low Latency Communications (URLLC) is the 5G service category used by critical mechanisms, with a millisecond end-to-end delay and reduced probability of failure. 5G defines new numerologies, together with mini-slots for a faster scheduling. The main challenge of this is to select the appropriate numerology according to radio conditions. This fact is very important in industrial scenarios, where the fundamental problems are interference and multipath propagation, due to the presence of concrete walls and large metallic machinery and structures. Therefore, this paper is focused on analyzing the impact of the numerology selection on the delay experienced at radio link level for a remote-control service. The study, which has been carried out in a simulated cellular factory environment, has been performed for different packet sizes and channel conditions, focusing on outliers. Evaluation results show that not always a higher numerology, with a shorter slot duration, is appropriate for this type of service, particularly under Non-Line-of-Sight (NLOS) conditions.
第五代(5G)网络被视为工业4.0连接的主要选择之一。超可靠低延迟通信(URLLC)是关键机制所使用的5G服务类别,具有毫秒级的端到端延迟且故障概率降低。5G定义了新的数字学,以及用于更快调度的微时隙。其主要挑战在于根据无线电条件选择合适的数字学。这一点在工业场景中非常重要,因为在工业场景中,由于存在混凝土墙以及大型金属机械和结构,基本问题是干扰和多径传播。因此,本文专注于分析数字学选择对远程控制服务在无线链路层面所经历延迟的影响。该研究是在模拟蜂窝工厂环境中进行的,针对不同的数据包大小和信道条件展开,重点关注异常值。评估结果表明,对于这类服务,并非总是具有更短时隙持续时间的更高数字学就合适,特别是在非视距(NLOS)条件下。