Reference Hub2
Multilevel Inverter for Hybrid Fuel Cell/PV Energy Conversion System

Multilevel Inverter for Hybrid Fuel Cell/PV Energy Conversion System

Arezki Fekik, Mohamed Lamine Hamida, Hakim Denoun, Ahmad Taher Azar, Nashwa Ahmad Kamal, Sundarapandian Vaidyanathan, Amar Bousbaine, Nacereddine Benamrouche
ISBN13: 9781799874478|ISBN10: 1799874478|ISBN13 Softcover: 9781799874485|EISBN13: 9781799874492
DOI: 10.4018/978-1-7998-7447-8.ch009
Cite Chapter Cite Chapter

MLA

Fekik, Arezki, et al. "Multilevel Inverter for Hybrid Fuel Cell/PV Energy Conversion System." Modeling and Control of Static Converters for Hybrid Storage Systems, edited by Arezki Fekik and Nacereddine Benamrouche, IGI Global, 2022, pp. 233-270. https://doi.org/10.4018/978-1-7998-7447-8.ch009

APA

Fekik, A., Hamida, M. L., Denoun, H., Azar, A. T., Kamal, N. A., Vaidyanathan, S., Bousbaine, A., & Benamrouche, N. (2022). Multilevel Inverter for Hybrid Fuel Cell/PV Energy Conversion System. In A. Fekik & N. Benamrouche (Eds.), Modeling and Control of Static Converters for Hybrid Storage Systems (pp. 233-270). IGI Global. https://doi.org/10.4018/978-1-7998-7447-8.ch009

Chicago

Fekik, Arezki, et al. "Multilevel Inverter for Hybrid Fuel Cell/PV Energy Conversion System." In Modeling and Control of Static Converters for Hybrid Storage Systems, edited by Arezki Fekik and Nacereddine Benamrouche, 233-270. Hershey, PA: IGI Global, 2022. https://doi.org/10.4018/978-1-7998-7447-8.ch009

Export Reference

Mendeley
Favorite

Abstract

Power converters assume a significant part in fuel cell power generation systems and solar power conversion systems which are an alternative to fossil fuel production systems. There is therefore a demand for high quality power conditioning used in PEMFC systems and photovoltaic panels. This chapter proposes a hybrid electric power (FC/PV) production strategy with the use of converter topology as the power interface and also introduces a three-level inverter topology for different operating levels. The converter increases the input voltage to the rated voltage and turns into a DC bus; the multi-level inverter converts the voltage to AC and supplies AC loads. This chapter develops a hybrid electric power generation strategy, which can produce output with positive and zero sequences. Integrating the three-stage inverter into the hybrid renewable energy (FC/PV) production system allows for near sinusoidal current with low THD. The topology of hybrid energy production using the multi-level converter is tested on Matlab.

Request Access

You do not own this content. Please login to recommend this title to your institution's librarian or purchase it from the IGI Global bookstore.