Specifically, this study aimed to (1) design an automated solar-powered aeroponics structure for plant cultivation and monitoring; (2) develop a program logic for the prototype; (3) test the functionality of the system in terms of the parameters pH level, humidity . Specifically, this study aimed to (1) design an automated solar-powered aeroponics structure for plant cultivation and monitoring; (2) develop a program logic for the prototype; (3) test the functionality of the system in terms of the parameters pH level, humidity . Abstract – The embedded solar-powered water pump system was considered an efficient irrigation technique for rice fields, and farmers have responded favorably. On the other hand, a complicated assembly process is needed for proper installation. The. Smart Agriculture aims to develop a technology-based agricultural system that addresses climate resiliency, sustainability, and productivity of upland rice. The sy tem utilizes photovoltaic (PV) panels to generate electricity, powering an ESP32-based microcontroller that monitors soil moisture and. Abstract—Innovating an IoT hydroponics farming system in a cabinet setup offers a more manageable and accessible sys- tem, which addresses manpower, space, and agricultural issues. This case study investigates the benefits and challenges of adopting solar-powered irrigation systems (SPIS) among small-scale farmers in the Philippines. The system, consisting of a 300W solar panel, a 24-volt (24V), 50-ampere-hour (50Ah) lead-acid battery, and automatic soil.