Smart City Pilot Projects Using LoRa and IEEE802.15.4 Technologies
Пилотные проекты умного города с использованием технологий LoRa и IEEE 802.15.4
2018-04-06
SCID: 54.1/xhgfepbz
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IEEE 802.15.4LoRa technologySmart city testbedsSmart public lightingSmart-building applications
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Abstract (AI)
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.
Key Findings
1
A large-scale public-lighting infrastructure covering approximately 3,000 light poles uses a flexible, modular heterogeneous network based on IEEE 802.15.4 and provides economic benefits.
2
A smart-building testbed evaluates LoRa coverage and performance in a real urban environment through measurement campaigns and simulations.
3
LoRa deployment in large urban areas requires careful parameter configuration to maintain sufficiently low airtime and satisfactory packet-loss levels.
4
The paper presents two Italian smart-city testbeds demonstrating that different IoT services require different communication technologies and network topologies.
Research Object
Two Italian smart-city IoT testbeds: a large-scale IEEE 802.15.4-based public-lighting infrastructure and a LoRa-based smart-building deployment
Research Subject
The technologies’ deployment economics, coverage, performance, and parameter-dependent packet-loss behavior in real urban scenarios
Publication Details
Publication Date
2018-04-06
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