LoRa indoor coverage and performance in an industrial environment: Case study

LoRa is a long range, low power, low bit rate, single hop wireless communication technology. It is intended to be used for Internet of Things (IoT) networks, where devices are battery powered and limited bandwidth is needed. In combination with its scalability and the low end device price, LoRa is a...

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Published in2017 22nd IEEE International Conference on Emerging Technologies and Factory Automation (ETFA) pp. 1 - 8
Main Authors Haxhibeqiri, Jetmir, Karaagac, Abdulkadir, Van den Abeele, Floris, Joseph, Wout, Moerman, Ingrid, Hoebeke, Jeroen
Format Conference Proceeding
LanguageEnglish
Published IEEE 01.09.2017
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Summary:LoRa is a long range, low power, low bit rate, single hop wireless communication technology. It is intended to be used for Internet of Things (IoT) networks, where devices are battery powered and limited bandwidth is needed. In combination with its scalability and the low end device price, LoRa is a candidate technology for low bandwidth industrial applications with a high number of communication devices spread across large areas. The use case for this paper is taken from the flower industry, where a large number of trolleys need to communicate with a server during their movement across the auction floor area. Once trolleys are outside of the auction floor they can use the public LoRaWAN network to communicate with the server, without switching communication technology. The LoRaWAN network consists of multiple end nodes and a single gateway per cell, acting as a transparent bridge between the end nodes and the network server. The measurements show that with a single LoRa gateway we can cover an indoor area of around 34000m2 only with spreading factor 7, while for spreading factor 12 the total covered area will be even higher. Also, the area outside the factory is covered when switching to spreading factor 12. We also show that the number of nodes (trolleys) that can be served by a gateway in such a case can be as high as 6000.
ISSN:1946-0759
DOI:10.1109/ETFA.2017.8247601