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An Optimal Photovoltaic Conversion System for Future Smart Grids

An Optimal Photovoltaic Conversion System for Future Smart Grids

Carlo Makdisie, Badia Haidar, Hassan Haes Alhelou
Copyright: © 2018 |Pages: 57
ISBN13: 9781522539353|ISBN10: 1522539352|EISBN13: 9781522539360
DOI: 10.4018/978-1-5225-3935-3.ch018
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MLA

Makdisie, Carlo, et al. "An Optimal Photovoltaic Conversion System for Future Smart Grids." Handbook of Research on Power and Energy System Optimization, edited by Pawan Kumar, et al., IGI Global, 2018, pp. 601-657. https://doi.org/10.4018/978-1-5225-3935-3.ch018

APA

Makdisie, C., Haidar, B., & Alhelou, H. H. (2018). An Optimal Photovoltaic Conversion System for Future Smart Grids. In P. Kumar, S. Singh, I. Ali, & T. Ustun (Eds.), Handbook of Research on Power and Energy System Optimization (pp. 601-657). IGI Global. https://doi.org/10.4018/978-1-5225-3935-3.ch018

Chicago

Makdisie, Carlo, Badia Haidar, and Hassan Haes Alhelou. "An Optimal Photovoltaic Conversion System for Future Smart Grids." In Handbook of Research on Power and Energy System Optimization, edited by Pawan Kumar, et al., 601-657. Hershey, PA: IGI Global, 2018. https://doi.org/10.4018/978-1-5225-3935-3.ch018

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Abstract

Smart grid technology is the key for a reliable and efficient use of distributed energy resources. Amongst all the renewable sources, solar power takes the prominent position due to its availability in abundance. In this chapter, the authors present smart grid infrastructure issues and integrating solar PV-sourced electricity in the smart grid. Smart grid has many features, including reliability, flexibility on network topology, efficiency, sustainability, and market-enabling. The authors select a photovoltaic active power line conditioner as a case study. This line conditioner is a device designed to extract the maximum power of a photovoltaic (PV) system and to compensate the nonlinear and unbalanced loads of the electrical power systems. The performance of the PV conditioner with the neuro-fuzzy control designed has been analyzed through a simulation platform.

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