arrow
Return

A Lightweight Algorithm for Efficient Synchronization in LoRaWAN Class-B Networks

delete2025-08-12
delete0
PRE
AI
L
Luca Scalambrin
A
Andréa Zanella
X
Xavier Vilajosana
DOI:10.1109/JIOT.2025.3582443delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
The Internet of Things (IoT) has become increasingly relevant in the context of large-scale asset monitoring, revolutionizing the way data is collected and analyzed. In addition to low power consumption and long-range coverage, these applications require precise time synchronization to generate accurate data to assess the structural health of critical assets. Meeting these synchronization requirements is challenging because the devices are battery-powered, deployed in extensive environments, and limited in computational capabilities. LoRaWAN, a widely adopted standard for long-range wireless networks, addresses some of these challenges. In fact, its Class-B operational mode introduces a time synchronization mechanism based on a beacon broadcasting system. However, the energy-intensive nature of this configuration can be inefficient when devices rely on limited power sources. To address this, we introduce a predictive mechanism to dynamically adjust the beacon period in LoRaWAN Class-B networks. Extensive experimentation proves that our approach reduces the average interbeacon synchronization error by three orders of magnitude compared to the LoRaWAN standard. This improvement in timing accuracy enables more efficient energy usage, extending device battery life by more than three times relative to standard configurations. Notably, these gains are achieved with a lightweight implementation requiring only 2.5 KB of memory. Overall, our solution enhances both synchronization performance and energy efficiency in an established standard, making it a practical and cost-effective solution for IoT-based monitoring systems.
Keywords:
Energy efficiency
Internet of Things (IoT)
large-scale asset monitoring
LoRaWAN class-B
synchronized wireless networks

Journal

IEEE Internet of Things Journal cover
IEEE Internet of Things Journal
IF:
8.9
Papers:
1.4W
Citations:
7.8W

Organization

U
University of Padua
Scholars:
5.1W
Papers: 4.3W
Citations: 57
O
Open University of Catalonia
Scholars:
22
Papers: 14
Citations: 0