Matz Andreas Philipp, Fernandez-Prieto Jose-Angel, Cañada-Bago Joaquin, Birkel Ulrich
Department of Electrical Engineering and Information Technology, Technische Hochschule Mittelhessen, Wiesenstraße 14, 35390 Gießen, Germany.
Telematic Engineering System Research Group, CEATIC Center of Advanced Studies in Information and Communication Technologies, University of Jaén, Campus Científico-Tecnológico de Linares, C.P. 23700 Linares, Spain.
Sensors (Basel). 2020 Mar 14;20(6):1636. doi: 10.3390/s20061636.
Narrowband-IoT (NB-IoT) is part of a novel group of access technologies referred to as Low-Power Wide Area Networks (LPWANs), which provide energy-efficient and long-range network access to IoT devices. Although NB-IoT Release 13 has been deployed by Mobile Network Operators (MNO), detailed Quality of Service (QoS) evaluations in public networks are still rare. In this paper, systematic physical layer measurements are conducted, and the application layer performance is verified. Special consideration is given to the influence of the radio parameters on the application layer QoS. Additionally, NB-IoT is discussed in the context of typical smart metering use cases. The results indicate that NB-IoT meets most theoretical Third Generation Partnership Project (3GPP) design goals in a commercial deployment. NB-IoT provides a wide coverage by using signal repetitions, which improve the receiver sensitivity, but simultaneously increase the system latency. The maximum data rates are consistent over a wide range of coverage situations. Overall, NB-IoT is a reliable and flexible LPWAN technology for sensor applications even under challenging radio conditions. Four smart metering transmission categories are analyzed, and NB-IoT is verified to be appropriate for applications that are not latency sensitive.
窄带物联网(NB-IoT)是被称为低功耗广域网(LPWAN)的新型接入技术组的一部分,该技术组为物联网设备提供节能且远程的网络接入。尽管移动网络运营商(MNO)已部署了NB-IoT版本13,但公共网络中详细的服务质量(QoS)评估仍然很少。本文进行了系统的物理层测量,并验证了应用层性能。特别考虑了无线电参数对应用层QoS的影响。此外,还在典型的智能电表用例背景下讨论了NB-IoT。结果表明,NB-IoT在商业部署中满足了大多数理论上的第三代合作伙伴计划(3GPP)设计目标。NB-IoT通过使用信号重复提供广泛的覆盖范围,这提高了接收器灵敏度,但同时增加了系统延迟。在广泛的覆盖情况下,最大数据速率是一致的。总体而言,即使在具有挑战性的无线电条件下,NB-IoT对于传感器应用也是一种可靠且灵活的LPWAN技术。分析了四种智能电表传输类别,并验证了NB-IoT适用于对延迟不敏感的应用。