Long-range communications in unlicensed bands: the rising stars in the IoT and smart city scenarios
Дальнодействующая связь в нелицензируемых диапазонах: новые перспективные технологии для Интернета вещей и сценариев умного города
2016-10-01
SCID: 54.1/gs6bet9k
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Internet of Thingslong-range communicationslow-power wide-area networkssmart city applicationsunlicensed sub-gigahertz bands
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Abstract (AI)
Connectivity is probably the most basic building block of the IoT paradigm. Up to now, the two main approaches to provide data access to things have been based on either multihop mesh networks using short-range communication technologies in the unlicensed spectrum, or long-range legacy cellular technologies, mainly 2G/GSM/GPRS, operating in the corresponding licensed frequency bands. Recently, these reference models have been challenged by a new type of wireless connectivity, characterized by low-rate, long-range transmission technologies in the unlicensed sub-gigahertz frequency bands, used to realize access networks with star topology referred to as low-power WANs (LPWANs). In this article, we introduce this new approach to provide connectivity in the IoT scenario, discussing its advantages over the established paradigms in terms of efficiency, effectiveness, and architectural design, particularly for typical smart city applications.
Key Findings
1
LPWAN architectural design is presented as advantageous for supporting connectivity in IoT and smart city scenarios.
2
LPWANs introduce a new IoT connectivity model using low-rate, long-range transmission in unlicensed sub-gigahertz bands.
3
The abstract identifies LPWANs as potentially more efficient and effective than established connectivity paradigms for typical smart city applications.
4
Unlike short-range multihop meshes and legacy cellular systems, LPWANs use star-topology access networks for IoT connectivity.
Research Object
low-power wide-area networks (LPWANs) using low-rate, long-range wireless transmission in unlicensed sub-gigahertz bands for IoT and smart-city connectivity
Research Subject
the connectivity advantages, efficiency, effectiveness, and architectural design of LPWANs compared with short-range mesh and legacy cellular approaches
Publication Details
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2016-10-01
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