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2021 | OriginalPaper | Chapter

11. Advances in Hybrid Solar System

Authors : P. Vipin Das, Navneet K. Singh, Rakesh Maurya, Asheesh K. Singh, Sri Niwas Singh

Published in: Fundamentals and Innovations in Solar Energy

Publisher: Springer Singapore

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Abstract

The electric power industry is moving toward a deregulated structure from the conventional centralized structure. The renewable energy sources (RES) penetration fastens the restructuring. Among the various RESs available, the solar photovoltaic (PV) is considered as the candidate in this chapter. Along with the advantages, solar PV power production exhibits stochastic nature due to its environmental dependency. The solar PV hybridized with several other RESs to form the hybrid power system (HPS) that mitigates the issues created by its environment dependency. The various HPS such as solar PV-grid, solar PV-battery, solar PV-wind, solar PV-fuel cell, solar PV-diesel, solar PV-diesel-fuel cell, solar PV-diesel-battery, and solar PV-battery-grid are reviewed in this chapter. Several maximum power point tracking (MPPT) technologies for mitigating the intermittency effect are discussed. Control algorithms have been introduced recently to cope with the issues related to solar PV hybrid power systems. This chapter investigates various conventional and derived topologies of DC-DC/DC-AC converters for solar PV applications and the standards for solar PV integration. Finally, a simulation model of the solar PV system using MATLAB®/Simulink is provided for better understanding the operation and control of the solar PV HPS. A cost optimization of solar PV HPS is investigated in this chapter using Hybrid Optimization Model for Electric Renewables (HOMER) Pro software.

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Appendix
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Metadata
Title
Advances in Hybrid Solar System
Authors
P. Vipin Das
Navneet K. Singh
Rakesh Maurya
Asheesh K. Singh
Sri Niwas Singh
Copyright Year
2021
Publisher
Springer Singapore
DOI
https://doi.org/10.1007/978-981-33-6456-1_11