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Journal ArticleDOI

Monitoring of Large-Area IoT Sensors Using a LoRa Wireless Mesh Network System: Design and Evaluation

TLDR
This is the first academic study discussing LoRa mesh networking in detail and evaluating its performance via real experiments, and it is shown that in urban areas, LoRa requires dense deployment of LoRa gateways to ensure that indoor LoRa devices can successfully transfer data back to remote GWs.
Abstract
Although many techniques exist to transfer data from the widely distributed sensors that make up the Internet of Things (IoT) (e.g., using 3G/4G networks or cables), these methods are associated with prohibitively high costs, making them impractical for real-life applications. Recently, several emerging wireless technologies have been proposed to provide long-range communication for IoT sensors. Among these, LoRa has been examined for long-range performance. Although LoRa shows good performance for long-range transmission in the countryside, its radio signals can be attenuated over distance, and buildings, trees, and other radio signal sources may interfere with the signals. Our observations show that in urban areas, LoRa requires dense deployment of LoRa gateways (GWs) to ensure that indoor LoRa devices can successfully transfer data back to remote GWs. Wireless mesh networking is a solution for increasing communication range and packet delivery ratio (PDR) without the need to install additional GWs. This paper presents a LoRa mesh networking system for large-area monitoring of IoT applications. We deployed 19 LoRa mesh networking devices over an $800\,\,\text {m} \times 600$ m area on our university campus and installed a GW that collected data at 1-min intervals. The proposed LoRa mesh networking system achieved an average 88.49% PDR, whereas the star-network topology used by LoRa achieved only 58.7% under the same settings. To the best of our knowledge, this is the first academic study discussing LoRa mesh networking in detail and evaluating its performance via real experiments.

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Citations
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Proceedings ArticleDOI

LoRadar: An Efficient LoRa Channel Occupancy Acquirer based on Cross-channel Scanning

TL;DR: In this article , the authors proposed LoRadar, a novel LoRa channel occupancy acquirer based on cross-channel scanning, which can acquire the channel occupancy for LoRa networks.
Proceedings ArticleDOI

On the LoRa performances under different physical layer parameter selection

TL;DR: In this article, the authors investigated the LoRa promising performances under channel medium impairments different physical layer parameters selection that affect the data rate, reliability, and range of communication among Coding Rate (CR), Bandwidth (BW), Spreading Factors (SF).
Proceedings ArticleDOI

Information System for Collection, Processing and Presentation of Data from Sensor Nodes

TL;DR: The proposed system automates the data collection, processing and provisioning process using an open, flexible architecture that enables integration into a variety of complexity and character projects.
Journal ArticleDOI

LoRa Network-Based System for Monitoring the Agricultural Sector in Andean Areas: Case Study Ecuador

TL;DR: In this article , a system based on the long-range network (LoRa) is used for monitoring the agricultural sector and is implemented in areas of the Andean region of Ecuador.
Proceedings ArticleDOI

Smart Control for Energy Efficient Networking of IEEE 802.11ah-based IoT

TL;DR: The proposed HSCT MAC protocol enhances the performance of IEEE 802.11ah-based IoT with hybrid slotted CSMA/CA-TDMA (HSCT) MAC protocol on sub-1GHz RF channel with limited transmission rate.
References
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Journal ArticleDOI

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Posted Content

Long-Range Communications in Unlicensed Bands: the Rising Stars in the IoT and Smart City Scenarios

TL;DR: In this paper, the authors introduce a new approach to provide connectivity in the IoT scenario, discussing its advantages over the established paradigms in terms of efficiency, effectiveness, and architectural design, in particular for the typical Smart Cities applications.
Proceedings ArticleDOI

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TL;DR: This work studies the coverage of the recently developed LoRa LPWAN technology via real-life measurements and presents a channel attenuation model derived from the measurement data that can be used to estimate the path loss in 868 MHz ISM band in an area similar to Oulu, Finland.
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