A preliminary study on conversion efficiency improvement of a multi-junction PV cell with MPPT

Edited book (chapter)


Das, Narottam, Wongsodihardjo, Hendy and Islam, Syed. 2016. "A preliminary study on conversion efficiency improvement of a multi-junction PV cell with MPPT." Jayaweera, Dilan (ed.) Smart power systems and renewable energy system integration. Switzerland. Springer. pp. 49-73
Chapter Title

A preliminary study on conversion efficiency improvement
of a multi-junction PV cell with MPPT

Book Chapter CategoryEdited book (chapter)
ERA Publisher ID3337
Book TitleSmart power systems and renewable energy system integration
AuthorsDas, Narottam (Author), Wongsodihardjo, Hendy (Author) and Islam, Syed (Author)
EditorsJayaweera, Dilan
Page Range49-73
SeriesStudies in Systems, Decision and Control
Chapter Number4
Number of Pages25
Year2016
PublisherSpringer
Place of PublicationSwitzerland
ISBN9783319304250
9783319304274
ISSN2198-4182
2198-4190
Digital Object Identifier (DOI)https://doi.org/10.1007/978-3-319-30427-4
Web Address (URL)http://www.springer.com/gp/book/9783319304250
Abstract

This chapter presents a preliminary study conducted to improve photovoltaic (PV) cell conversion efficiency using MATLAB/Simulink platform. The study uses multi-junction solar cell and investigates the maximum performance compared with a conventional silicon PV cell. Maximum Power Point Tracker (MPPT) is applied to assess the conversion efficiency of the PV system. Study integrates thermoelectric generator (TEG) with PV modules because the PV cells work by converting high frequency irradiation where as a TEG has the ability to convert wasted low frequency heat to the electricity. The combination delivers more power and contributes to enhance the conversion efficiency of a PV system. The simulation results show that a tandem cell can provide a considerable higher power
with a conventional PV cell operation.

KeywordsMATLAB/simulink, maximum power point tracker, multi-junction solar cell, photovoltaic cell, PV cell working temperature, thermoelectric generator
ANZSRC Field of Research 2020400899. Electrical engineering not elsewhere classified
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Byline AffiliationsSchool of Mechanical and Electrical Engineering
Curtin University
Institution of OriginUniversity of Southern Queensland
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