DESIGN AND INSTALLATION OF 2.0KVA, 24 VOLT INVERTER WITH TWO NEW 200AH DEEP CYCLE BATTERIES, MPPT SOLAR CHARGE CONTROLLER, ONE 380W MONO SOLAR PANEL INSTALLATION ACCESSORIES (TO BE INSTALLED IN H.O.D OFFICE BLOCK)
Abstract
This project focuses on the design and installation of a 2.0KVA, 24-volt inverter system integrated with two 200Mah deep cycle batteries, an MPPT (Maximum Power Point Tracking) solar charge controller, and a 380W mono-crystalline solar panel. The aim is to provide a reliable, efficient, and sustainable backup power solution for the H.O.D office block, ensuring continuous operation of essential electrical appliances during power outages.The design process involved system sizing, component selection, wiring layout, safety considerations, and cost estimation. The installation ensured proper electrical connections, circuit protection, and load management to enhance performance and longevity. Test results revealed that the system delivers a stable output voltage of 220V AC with minimal losses and provides sufficient backup duration for the office load requirements.In conclusion, the project demonstrates a practical and cost-effective approach to addressing unreliable power supply through renewable energy integration. It promotes environmental sustainability and energy efficiency while serving as a model for small-scale solar-powered inverter installations in institutional settings.
Full-Text Access Notice
In accordance with the NERD Policy on promoting peer-reviewed publication, public access to the full text of a project, thesis or dissertation is restricted for three years, allowing the author and supervisors sufficient time to pursue peer-reviewed publication.
During this period, researchers with legitimate academic or research purposes may request authorisation directly from the author to enable NERD to release the indexed full texts of the work using the form below.