DESIGN AND SIMULATION OF HYBRID INVERTER

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ABSTRACT

This research explores hybrid inverter systems for integrating solar power into modern grids. Hybrid inverters combine solar generation, battery storage, and grid connectivity, optimizing energy use and ensuring backup during outages. They dynamically balance supply and demand by supplying excess power to the grid and storing surplus energy. Advanced control strategies like Maximum Power Point Tracking (MPPT) enhance efficiency. The study employs theoretical analysis and MATLAB/Simulink modeling to simulate hybrid inverter performance. It includes power calculations, DC-DC converter modeling, and MPPT implementation. Sensitivity and comparative analyses assess system efficiency and inverter performance under varying conditions. Simulation results confirm that the hybrid inverter maintains stable output under fluctuating solar irradiance and dynamic loads. The integration of battery storage ensures reliable backup power. Comparative analysis highlights hybrid inverters’ advantages in both standalone and grid-connected applications, demonstrating their scalability and efficiency.

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