Buck-Boost Single-Stage Microinverter for Building Integrated Photovoltaic Systems

Author:

Mathew DerickORCID,Farrag Mohamed EmadORCID,Naidu Rani ChinnappaORCID,Muthu Rajesh KumarORCID,Sivaprakasam A,Somasundaram P

Abstract

Microinverters for Building Integrated Photovoltaic (BIPV) systems must have had a small number of components, be efficient, and be reliable. In this context, a single-phase Buck-Boost Single-stage Microinverter (BBSM) for grid-connected BIPV systems is presented. The concept of topology is extracted from the buck-boost converter. The leakage current in the system is kept under control. It uses an optimal number of active and passive components to function at a high-efficiency level. The suggested topology provides a high level of reliability due to the absence of shoot-through problems. To validate the findings, a simulation in combination with an experimental system for a 70 W system is developed with the design approach. The efficiency of the microinverter, total harmonic distortion of the grid current are measured as 96.4% and 4.09% respectively. Finally, a comparison study has indicated the advantages and disadvantages of the suggested inverter.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

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3. Development and Integration of Biomass and Concentrating Photovoltaic System for Rural and Urban Areas;2022 7th International Conference on Environment Friendly Energies and Applications (EFEA);2022-12-14

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