Intelligent Power Management using MPPT-Controlled Buck-Boost Converter for Hybrid Solar-Fuel Cell Systems in Single and Three-Phase Applications

Authors

  • Anjali Tikalkar, Dr. CS Rajeshwari, Dr. Anjali Potnis,Dr Anurag S D Rai

Keywords:

Hybrid Renewable Energy, Solar PV, Fuel Cell Integration, MPPT Control, Buck Boost Converter, Adaptive Power Management, Real-Time Control, Microgrid Applications

Abstract

This study presents an intelligent power management framework for a hybrid solarphotovoltaic (PV) and fuel cell system using a Maximum Power Point Tracking (MPPT)controlled Buck-Boost Converter. The proposed system is engineered for dual operation in bothsingle-phase and three-phase load environments, ensuring efficient voltage regulation under dynamic irradiance and load conditions. 

References

H. A. Patel and V. Agarwal, "Maximum Power Point Tracking Scheme for PV Systems Operating Under Partially Shaded Conditions," IEEE Transactions on Industrial Electronics, vol. 55, no. 4, pp. 1689–1698, Apr. 2008.

M. G. Villalva, J. R. Gazoli, and E. Ruppert, "Comprehensive Approach to Modeling and Simulation of Photovoltaic Arrays," IEEE Transactions on Power Electronics, vol. 24, no. 5, pp. 1198–1208, May 2009.

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Published

2024-02-15

How to Cite

Anjali Tikalkar, Dr. CS Rajeshwari, Dr. Anjali Potnis,Dr Anurag S D Rai. (2024). Intelligent Power Management using MPPT-Controlled Buck-Boost Converter for Hybrid Solar-Fuel Cell Systems in Single and Three-Phase Applications . Journal of Computational Analysis and Applications (JoCAAA), 32(2), 407–419. Retrieved from https://www.eudoxuspress.com/index.php/pub/article/view/2916

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Articles