In-depth Real-World Evaluation of NB-IoT Module Energy Consumption

Milan Lukić, Srdjan Sobot, I. Mezei, Dragan Danilovic, D. Vukobratović
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引用次数: 6

Abstract

Narrowband Internet of Things (NB-IoT) is a recent addition to the 3GPP standards offering low power wide area networking (LP-WAN) for a massive amount of IoT devices communicating at low data rates in the licensed bands. As the number of deployed NB-IoT devices worldwide increases, the question of energy-efficient real-world NB-IoT device and network operation that would maximize the device battery lifetime becomes crucial for NB-IoT service popularity and adoption. In this paper, we present a detailed energy consumption of an NB-IoT module obtained from a custom-designed NB-IoT platform from which a large amount of high time-resolution data is collected. We perform a detailed energy consumption analysis of each NB-IoT data transfer phase and discuss both the device and the network-side configurations that may affect the module energy consumption in each of the phases. Preliminary results and conclusions are put forth along with the discussion of ongoing and future study plans.
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NB-IoT模块能耗真实世界深度评估
窄带物联网(NB-IoT)是3GPP标准的新成员,为大量物联网设备提供低功耗广域网(LP-WAN),可在许可频段内以低数据速率通信。随着全球部署的NB-IoT设备数量的增加,节能的实际NB-IoT设备和网络运营问题将最大限度地延长设备电池寿命,这对NB-IoT服务的普及和采用至关重要。在本文中,我们展示了从定制的NB-IoT平台获得的NB-IoT模块的详细能耗,并从中收集了大量高时间分辨率数据。我们对每个NB-IoT数据传输阶段进行了详细的能耗分析,并讨论了可能影响每个阶段模块能耗的设备和网络侧配置。提出初步结果和结论,并讨论正在进行的和未来的研究计划。
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