Exploring LoRaWAN Traffic: In-Depth Analysis of IoT Network Communications

Author:

Povalac Ales1ORCID,Kral Jan1ORCID,Arthaber Holger2ORCID,Kolar Ondrej1ORCID,Novak Marek1ORCID

Affiliation:

1. Faculty of Electrical Engineering and Communication, Brno University of Technology, Technicka 12, 61600 Brno, Czech Republic

2. Institute of Electrodynamics, Microwave and Circuit Engineering, TU Wien, Gusshausstrasse 25/354, 1040 Vienna, Austria

Abstract

In the past decade, Long-Range Wire-Area Network (LoRaWAN) has emerged as one of the most widely adopted Low Power Wide Area Network (LPWAN) standards. Significant efforts have been devoted to optimizing the operation of this network. However, research in this domain heavily relies on simulations and demands high-quality real-world traffic data. To address this need, we monitored and analyzed LoRaWAN traffic in four European cities, making the obtained data and post-processing scripts publicly available. For monitoring purposes, we developed an open-source sniffer capable of capturing all LoRaWAN communication within the EU868 band. Our analysis discovered significant issues in current LoRaWAN deployments, including violations of fundamental security principles, such as the use of default and exposed encryption keys, potential breaches of spectrum regulations including duty cycle violations, SyncWord issues, and misaligned Class-B beacons. This misalignment can render Class-B unusable, as the beacons cannot be validated. Furthermore, we enhanced Wireshark’s LoRaWAN protocol dissector to accurately decode recorded traffic. Additionally, we proposed the passive reception of Class-B beacons as an alternative timebase source for devices operating within LoRaWAN coverage under the assumption that the issue of misaligned beacons can be addressed or mitigated in the future. The identified issues and the published dataset can serve as valuable resources for researchers simulating real-world traffic and for the LoRaWAN Alliance to enhance the standard to facilitate more reliable Class-B communication.

Funder

Brno University of Technology

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference47 articles.

1. Semtech (2023, July 12). LoRa® and LoRaWAN®: A Technical Overview. Available online: https://lora-developers.semtech.com/uploads/documents/files/LoRa_and_LoRaWAN-A_Tech_Overview-Downloadable.pdf.

2. Low Power Wide Area Networks: An Overview;Raza;IEEE Commun. Surv. Tutorials,2017

3. Haxhibeqiri, J., De Poorter, E., Moerman, I., and Hoebeke, J. (2018). A Survey of LoRaWAN for IoT: From Technology to Application. Sensors, 18.

4. Semtech (2023, May 02). AN1200.22 LoRa™ Modulation Basics. Available online: https://www.semtech.com/products/wireless-rf/lora-connect/sx1276.

5. LoRa Alliance (2023, May 02). TS001-1.0.4 LoRaWAN® L2 1.0.4 Specification. Available online: https://lora-alliance.org/resource_hub/ts001-1-0-4-lorawan-l2-1-0-4-specification/.

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