
Developed an ESP32-based water pump control web interface for the ISPC-PI-II-2024/Proyecto_hidroponico repository, enabling remote irrigation management for a hydroponics project. The solution featured WiFi setup, on/off pump controls, and LED status indicators, all accessible through an embedded web server. Emphasizing maintainability, the codebase adopted a modular multi-file architecture and included setup diagrams in the README to streamline onboarding. C++ and HTML were used to implement the core functionality, while Markdown supported comprehensive documentation. A unit test for pump control was added to enhance reliability, establishing a scalable IoT foundation for future automation and operational improvements.
April 2025: Delivered ESP32-based Water Pump Control Web Interface for the hydroponics project, enabling WiFi setup and remote pump control via a web server with on/off controls and LED status indicators. Established a modular multi-file architecture and provided setup diagrams in the README; updated contributor information to recognize Nicolás Barrionuevo. Added a unit test for pump control to improve reliability and maintainability. README and documentation improvements supported smoother onboarding for new contributors and easier maintenance. Impact: Enables remote irrigation management, improves automation and operational efficiency, and provides a scalable IoT foundation for future features. This work demonstrates strong embedded systems development, web-enabled control, and robust documentation practices. Technologies/skills demonstrated: ESP32/IoT development, embedded web server, WiFi networking, modular software architecture, unit testing, and clear README-driven documentation.
April 2025: Delivered ESP32-based Water Pump Control Web Interface for the hydroponics project, enabling WiFi setup and remote pump control via a web server with on/off controls and LED status indicators. Established a modular multi-file architecture and provided setup diagrams in the README; updated contributor information to recognize Nicolás Barrionuevo. Added a unit test for pump control to improve reliability and maintainability. README and documentation improvements supported smoother onboarding for new contributors and easier maintenance. Impact: Enables remote irrigation management, improves automation and operational efficiency, and provides a scalable IoT foundation for future features. This work demonstrates strong embedded systems development, web-enabled control, and robust documentation practices. Technologies/skills demonstrated: ESP32/IoT development, embedded web server, WiFi networking, modular software architecture, unit testing, and clear README-driven documentation.

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