NB-IoT Network Field Trial: Indoor, Outdoor and Underground Coverage Campaign

Hassan Malik, S. Khan, Jeffrey Leonel Redondo Sarmiento, A. Kuusik, M. Alam, Y. Moullec, Sven Pärand
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引用次数: 14

Abstract

Recent advancements in cellular technologies allow discrete computing devices embedded with sensors to communicate over long distances with low-cost and low-energy consumption. This could drastically impact the future internet of thing (IoT) ecosystem. In this regard, Third Generation Partnership Project (3GPP) has introduced a new cellular-based technology called Narrowband Internet of Things (NB-IoT) which is one of the potential technologies for enabling IoT application in vehicular, health-care, industry 4.0, etc. However, NB-IoT technology is still in its infancy and so far it is unclear whether it is sufficiently reliable to complement or replace existing short-range and cellular technologies to enable such use-case scenarios. Therefore, this paper presents a preliminary investigation of the coverage of NB-IoT in three different scenarios i.e., outdoor, indoor, and underground with empirical measurements, one of the key performance indicators in which operators are most interested. The measurements were conducted on Tallinn University of Technology (TalTech) campus and nearby residential areas within a range of 700 m. The obtained results indicate that NB-IoT is able to provide good connectivity to meet the IoT application requirements in outdoor and indoor environments. However, for an underground scenario with the beam enabled for 700 m, it is only possible to provide connectivity to the devices up to 400 m. Furthermore, it is also observed that NB-IoT is able to provide connectivity to devices with a received signal strength indicator (RSSI) value as low as −105 dBm as compared to −95 dBm as in long-term evolution (LTE).
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NB-IoT网络外场试验:室内、室外、地下覆盖战役
蜂窝技术的最新进展允许嵌入传感器的离散计算设备以低成本和低能耗进行长距离通信。这可能会极大地影响未来的物联网(IoT)生态系统。在这方面,第三代合作伙伴计划(3GPP)推出了一种名为窄带物联网(NB-IoT)的基于蜂窝的新技术,该技术是实现物联网在汽车、医疗保健、工业4.0等领域应用的潜在技术之一。然而,NB-IoT技术仍处于起步阶段,目前尚不清楚它是否足够可靠,可以补充或取代现有的短距离和蜂窝技术,以实现这些用例场景。因此,本文对NB-IoT在室外、室内和地下三种不同场景下的覆盖范围进行了初步调查,并进行了实证测量,这是运营商最感兴趣的关键性能指标之一。测量是在塔林理工大学校园和附近700米范围内的居民区进行的。结果表明,NB-IoT能够提供良好的连通性,满足室外和室内环境下的物联网应用需求。然而,对于地下场景,波束启用700米,只能提供连接到400米的设备。此外,还观察到NB-IoT能够为接收信号强度指示器(RSSI)值低至- 105 dBm的设备提供连接,而在长期演进(LTE)中为- 95 dBm。
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