LoRa and IoT communications
Experimental evaluation of long-range wireless links, frame error rate (FER), signal-to-noise ratio (SNR), and transmission redundancy.
My research focuses on reliable and efficient wireless communication, IoT systems, data-driven methods and experimental validation.
Experimental evaluation of long-range wireless links, frame error rate (FER), signal-to-noise ratio (SNR), and transmission redundancy.
Data-driven approaches to reducing unnecessary transmissions and selecting communication parameters according to network conditions.
Hardware-based IoT prototypes and laboratory measurements that connect mathematical models with real-world wireless performance.
Applied Sciences, 2025. Research on probabilistic modeling and optimization in long-range communication networks.
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Accepted for MobiWac 2026, co-located with MSWiM 2026. Work on FER, SNR, CFO and reliability in LoRa communications.
Conference program ↗Publication in Revista Politécnica Aguascalientes, 2023. IoT applications for monitoring and data acquisition.
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