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Energy efficiency of slotted LoRaWANcommunication with out-of-band synchronization
Mid Sweden University, Faculty of Science, Technology and Media, Department of Information Systems and Technology.
Mid Sweden University, Faculty of Science, Technology and Media, Department of Information Systems and Technology.ORCID iD: 0000-0003-3717-7793
Mid Sweden University, Faculty of Science, Technology and Media, Department of Information Systems and Technology.ORCID iD: 0000-0003-3433-2997
Mid Sweden University, Faculty of Science, Technology and Media, Department of Information Systems and Technology.ORCID iD: 0000-0003-0873-7827
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2021 (English)In: IEEE Transactions on Instrumentation and Measurement, ISSN 0018-9456, E-ISSN 1557-9662Article in journal (Refereed) Published
Abstract [en]

Although the idea of using wireless links for covering large areas is not new, the advent of Low Power Wide area networks (LPWANs) has recently started changing the game. Simple, robust, narrowband modulation schemes permit the implementation of low-cost radio devices offering high receiver sensitivity, thus improving the overall link budget. The several technologies belonging to the LPWAN family, including the well-known LoRaWAN solution, provide a cost-effective answer to many Internet-of-things (IoT) applications, requiring wireless communication capable of supporting large networks of many devices (e.g., smart metering). Generally, the adopted medium access control (MAC) strategy is based on pure ALOHA, which, among other things, allows to minimize the traffic overhead under constrained duty cycle limitations of the unlicensed bands. Unfortunately, ALOHA suffers from poor scalability, rapidly collapsing in dense networks. This work investigates the design of an improved LoRaWAN MAC scheme based on slotted ALOHA. In particular, the required time dissemination is provided by out-of-band communications leveraging on Radio Data System(FM-RDS) broadcasting, which natively covers wide areas both indoor and outdoor. An experimental setup based on low-cost hardware is used to characterize the obtainable synchronization performance and derive a timing error model. Consequently, improvements in success probability and energy efficiency have been validated by means of simulations in very large networks with up to 10000 nodes. It is shown that the advantage of the proposed scheme over conventional LoRaWAN communication is up to 100% when short update time and large payload are required. Similar results are obtained regarding the energy efficiency improvement, that is close to 100% for relatively short transmission intervals and long message duration; however, due to the additional overhead for listening the time dissemination messages, efficiency gain can be negative for very short duration of message fastly repeating.

Place, publisher, year, edition, pages
2021.
Keywords [en]
LoRaWAN, LPWAN, slotted ALOHA, time synchronization, FM-RDS
National Category
Communication Systems Telecommunications
Identifiers
URN: urn:nbn:se:miun:diva-41035DOI: 10.1109/TIM.2021.3051238ISI: 000930605900013Scopus ID: 2-s2.0-85099535787OAI: oai:DiVA.org:miun-41035DiVA, id: diva2:1524563
Funder
Knowledge Foundation, NIITAvailable from: 2021-02-01 Created: 2021-02-01 Last updated: 2023-03-24Bibliographically approved

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Beltramelli, LucaMahmood, AamirÖsterberg, PatrikGidlund, MikaelSisinni, Emiliano

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Beltramelli, LucaMahmood, AamirÖsterberg, PatrikGidlund, MikaelSisinni, Emiliano
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IEEE Transactions on Instrumentation and Measurement
Communication SystemsTelecommunications

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