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PyLoGreen: Design and implementation of a low-cost agricultural data acquisition and monitoring system using
Renzo Victor Carpio Hallasi1, Yusef Mamani Arqque1, Franco Alessandro Arenas Mamani1
1School of Electronic Engineering, National University of San Agustin, Arequipa, Peru.
Abstract:
This article presents PyLoGreen, an open-source hardware platform that enables continuous monitoring of air temperature, relative humidity, soil moisture, soil pH, and internal and external light levels inside greenhouses located in the High-Andean tundra of Juliaca (3824 m a.s.l.). The system is designed as a cost-accessible and reproducible scientific platform for regions where commercial greenhouse monitoring solutions are either unavailable or economically inaccessible for small-scale farmers. A hybrid architecture, combining long-range LoRa links (up to 7.5 km validated in dedicated line-of-sight tests with 100% packet delivery, and 2.53 km operational deployment) between a Raspberry Pi 4B Main Base and a remote greenhouse with a local nRF24L01 sensor network based on Raspberry Pi Pico nodes, is implemented to ensure reliable operation under harsh climatic conditions and limited connectivity. A one-month deployment in a real greenhouse demonstrates stable data acquisition from all nodes and robust LoRa communication, validating PyLoGreen as a practical tool for generating high-resolution environmental datasets that can support agronomic and environmental research in high-altitude systems.

