DSME-LoRa: Seamless Long Range Communication Between Arbitrary Nodes in the Constrained IoT
Abstract
Long range radio communication is preferred in many IoT deployments as it avoids the complexity of multi-hop wireless networks. LoRa is a popular, energy-efficient wireless modulation but its networking substrate LoRaWAN introduces severe limitations to its users. In this paper, we present and thoroughly analyze DSME-LoRa, a system design of LoRa with IEEE 802.15.4 DSME as a MAC layer. DSME-LoRa offers the advantage of seamless client-to-client communication beyond the pure gateway-centric transmission of LoRaWAN. We evaluate its feasibility via a full-stack implementation on the popular RIOT operating system, assess its steady-state packet flows in an analytical stochastic Markov model, and quantify its scalability in massive communication scenarios using large scale network simulations. Our findings indicate that DSME-LoRa is indeed a powerful approach that opens LoRa to standard network layers and outperforms LoRaWAN in many dimensions.
Cite
@article{arxiv.2206.14077,
title = {DSME-LoRa: Seamless Long Range Communication Between Arbitrary Nodes in the Constrained IoT},
author = {José Álamos and Peter Kietzmann and Thomas Schmidt and Matthias Wählisch},
journal= {arXiv preprint arXiv:2206.14077},
year = {2022}
}
Comments
44 pages (incl. References), 27 figures,8 tables