Diego Maldonado

dblp:18/9859 · DBLP profile ↗
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8ranked-venue papers
4as first author
6since 2021 · last 2026
—ORCID · conflict

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Theory of computation · 4 · 1 first-author · 2 since 2021Computer networks · 3 · 2 first-author · 3 since 2021Applied, interdisciplinary, general and emerging computing · 1 · 1 first-author · 1 since 2021
YearPublicationVenuePosition
2026 Joint LoRa and LR-FHSS Resource Allocation Optimization in Direct-to-Satellite IoT Networks
abstract
International audience
Diego Maldonado, Megumi Kaneko, Juan A. Fraire, Alexandre Guitton, Oana Iova, Hervé Rivano
WoWMoM1
2025 Network Size Estimation in DtS-IoT: A LoRaWAN Approach for Satellite Constellations
abstract
Low Earth Orbit (LEO) constellations are pivotal for the global connectivity of Internet of Things (IoT) networks. They facilitate Direct-to-Satellite (DtS) communications for ground nodes and address the absence of terrestrial infrastructure in remote regions. Although LoRa-based solutions provide low-cost connectivity to constrained devices in DtS-IoT networks, scalability remains a significant challenge due to heavy channel congestion associated with large-scale deployments. The LoRa Optimistic Collision Information-based (L-OCI) mechanism has been designed to estimate efficiently the network size of a LoRa-based DtS-IoT deployment. It enables a passing satellite to gauge the potential congestion in the served region by estimating the number of active ground nodes within its coverage area. However, this mechanism was devised to operate assuming a single LEO satellite. This paper introduces the constellation LOCI (CL-OCI), a new methodology for network size estimation designed for LEO satellite constellations. We thoroughly tested CL-OCI using FLoRaSat, a discrete-event satellite constellation simulator with realistic orbital DtS-IoT scenarios. Results indicate a substantial improvement in scalability, doubling the maximum number of nodes CL-OCI can estimate, and a sevenfold reduction in energy wasted due to collided transmissions compared to the baseline single-satellite L-OCI.
Pablo Ilabaca, Diego Maldonado, Juan A. Fraire, Samuel Montejo Sanchez, Sandra Céspedes Umaña
ICC2
2025 Enhanced LR-FHSS receiver for headerless frame recovery in space-terrestrial integrated IoT networks
Diego Maldonado, Leonardo S. Cardoso, Juan A. Fraire, Alexandre Guitton, Oana Iova, Megumi Kaneko, Hervé Rivano
Comput. Networks1
2024 The Hardness of Local Certification of Finite-State Dynamics
Diego Maldonado, Pedro Montealegre-Barba, Martín Ríos-Wilson
LATIN (1)1
2024 Local Certification of Majority Dynamics
Diego Maldonado, Pedro Montealegre-Barba, Martín Ríos-Wilson, Guillaume Theyssier
SOFSEM1
2021 On the complexity of asynchronous freezing cellular automata
Eric Goles Ch., Diego Maldonado, Pedro Montealegre-Barba, Martín Ríos-Wilson
Inf. Comput.2
2020 On the complexity of the stability problem of binary freezing totalistic cellular automata
Eric Goles Ch., Diego Maldonado, Pedro Montealegre-Barba, Nicolas Ollinger
Inf. Comput.2
2018 Universality in Freezing Cellular Automata
Florent Becker, Diego Maldonado, Nicolas Ollinger, Guillaume Theyssier
CiE2