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      Known and Unknown Facts of LoRa : Experiences from a Large-scale Measurement Study

      1 , 1 , 1 , 1
      ACM Transactions on Sensor Networks
      Association for Computing Machinery (ACM)

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          Abstract

          Long Range (LoRa) is a Low-power Wide-area Network technology designed for the Internet of Things. In recent years, it has gained significant momentum among industrial and research communities. Patented by Semtech, LoRa makes use of chirp spread spectrum modulation to deliver data with promises of long battery life, far-reaching communication distances, and a high node density at the cost of data rate. In this article, we conduct a series of experiments to verify the claims made by Semtech on LoRa technology. Our results show that LoRa is capable of communicating over 10km under line-of-sight environments. However, under non-line-of-sight environments, LoRa’s performance is severely affected by obstructions such as buildings and vegetations. Moreover, the promise of prolonged battery life requires extreme tuning of parameters. Last, a LoRa gateway supports up to 6,000 nodes with PRR requirement of >70%. This study also explores the relationship between LoRa transmission parameters and proposes an algorithm to determine optimal settings in terms of coverage and power consumption under non-line-of-sight environments. It further investigates the impact of LoRa Wide-area Networks on energy consumption and network capacity along with implementation of a LoRa medium access mechanism and possible gains brought forth by implementing such a mechanism.

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          Most cited references47

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          A Study of LoRa: Long Range & Low Power Networks for the Internet of Things

          LoRa is a long-range, low-power, low-bitrate, wireless telecommunications system, promoted as an infrastructure solution for the Internet of Things: end-devices use LoRa across a single wireless hop to communicate to gateway(s), connected to the Internet and which act as transparent bridges and relay messages between these end-devices and a central network server. This paper provides an overview of LoRa and an in-depth analysis of its functional components. The physical and data link layer performance is evaluated by field tests and simulations. Based on the analysis and evaluations, some possible solutions for performance enhancements are proposed.
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            Understanding the Limits of LoRaWAN

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              A survey on LPWA technology: LoRa and NB-IoT

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                Author and article information

                Journal
                ACM Transactions on Sensor Networks
                ACM Trans. Sen. Netw.
                Association for Computing Machinery (ACM)
                1550-4859
                1550-4867
                April 24 2019
                April 24 2019
                : 15
                : 2
                : 1-35
                Affiliations
                [1 ]School of Computer Science and Engineering, Nanyang Technological University, Singapore
                Article
                10.1145/3293534
                02b79230-0b94-475f-9177-03b8ca44e1c4
                © 2019

                http://www.acm.org/publications/policies/copyright_policy#Background

                History

                Quantitative & Systems biology,Biophysics
                Quantitative & Systems biology, Biophysics

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