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使用LoRa和IEEE802.15.4技术的智慧城市试点项目。

Smart City Pilot Projects Using LoRa and IEEE802.15.4 Technologies.

作者信息

Pasolini Gianni, Buratti Chiara, Feltrin Luca, Zabini Flavio, De Castro Cristina, Verdone Roberto, Andrisano Oreste

机构信息

DEI, University of Bologna, Viale Risorgimento 2, 40136 Bologna, Italy.

IEIIT, National Research Council, Viale Risorgimento 2, 40136 Bologna, Italy.

出版信息

Sensors (Basel). 2018 Apr 6;18(4):1118. doi: 10.3390/s18041118.

Abstract

Information and Communication Technologies (ICTs), through wireless communications and the Internet of Things (IoT) paradigm, are the enabling keys for transforming traditional cities into smart cities, since they provide the core infrastructure behind public utilities and services. However, to be effective, IoT-based services could require different technologies and network topologies, even when addressing the same urban scenario. In this paper, we highlight this aspect and present two smart city testbeds developed in Italy. The first one concerns a smart infrastructure for public lighting and relies on a heterogeneous network using the IEEE 802.15.4 short-range communication technology, whereas the second one addresses smart-building applications and is based on the LoRa low-rate, long-range communication technology. The smart lighting scenario is discussed providing the technical details and the economic benefits of a large-scale (around 3000 light poles) flexible and modular implementation of a public lighting infrastructure, while the smart-building testbed is investigated, through measurement campaigns and simulations, assessing the coverage and the performance of the LoRa technology in a real urban scenario. Results show that a proper parameter setting is needed to cover large urban areas while maintaining the airtime sufficiently low to keep packet losses at satisfactory levels.

摘要

信息通信技术(ICT)通过无线通信和物联网(IoT)范式,成为将传统城市转变为智慧城市的关键要素,因为它们为公共事业和服务提供了核心基础设施。然而,即使针对相同的城市场景,基于物联网的服务要想有效运行,可能也需要不同的技术和网络拓扑结构。在本文中,我们着重强调这一方面,并展示了在意大利开发的两个智慧城市试验台。第一个试验台涉及公共照明的智能基础设施,它依赖于使用IEEE 802.15.4短程通信技术的异构网络,而第二个试验台则针对智能建筑应用,基于LoRa低速率、长距离通信技术。文中讨论了智能照明场景,介绍了大规模(约3000根灯杆)灵活且模块化的公共照明基础设施实施的技术细节和经济效益,同时通过测量活动和模拟对智能建筑试验台进行了研究,评估了LoRa技术在实际城市场景中的覆盖范围和性能。结果表明,需要进行适当的参数设置,以覆盖大面积城市区域,同时将空中时间保持在足够低的水平,以使数据包丢失率处于令人满意的水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3fe/5948573/c4d360e8faba/sensors-18-01118-g001.jpg

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