Effects of Traffic Characteristics on Energy Consumption of IoT End Devices in Smart City

Augustine Ikpehai, B. Adebisi, K. Anoh
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引用次数: 9

Abstract

The rapid urbanisation in many parts of the world in the last few decades has intensified the challenges of urban living. Internet of Things (IoT) can be leveraged as a tool for transformation to provide technology-assisted city development and management. However, given that many of the nodes in smart cities are constrained devices, part of the medium-long term challenges is how to sustain the real-time monitoring capabilities of the city without disrupting services. This paper investigates the effects of data traffic characteristics on the active life of constrained devices in smart cities. The access network model employs two leading low-power wide area network (LP-WAN) technologies; long range wide area network (LoRaWAN) and Sigfox specifications in a star topology. The results show that in Europe, for lightweight applications such as smart street lighting that sends small payloads once a day, Sigfox and LoRaWAN can provide device lives of about 5.82 years and 13.25 years respectively. On the other hand, for intense applications such as smart bus stops, using payload of 12 bytes, if the number of messages sent per day is increased from 1 to 140, Sigfox device life reduces from 4.43 years to 0.8 years while that of that of LoRaWAN reduces from 13.1 years to 10.48 years.
智慧城市交通特性对物联网终端设备能耗的影响
过去几十年来,世界许多地区的快速城市化加剧了城市生活的挑战。物联网(IoT)可以作为转型的工具,提供技术辅助的城市发展和管理。然而,鉴于智慧城市中的许多节点都是受限设备,中长期挑战的一部分是如何在不中断服务的情况下维持城市的实时监控能力。本文研究了智能城市中数据流量特性对受限设备有效寿命的影响。接入网模型采用两种领先的低功耗广域网(LP-WAN)技术;远程广域网(LoRaWAN)和Sigfox规范在星形拓扑结构中。结果表明,在欧洲,对于轻量级应用,例如每天发送一次小有效载荷的智能街道照明,Sigfox和LoRaWAN可以分别提供约5.82年和13.25年的设备寿命。另一方面,对于智能公交车站等强度较大的应用,使用12字节的有效载荷,如果每天发送的消息数从1条增加到140条,Sigfox的设备寿命从4.43年减少到0.8年,LoRaWAN的设备寿命从13.1年减少到10.48年。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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