Performance Test of 2.5 kW DC Boost Converter for Nanogrid System Applications
The development of power electronics continues to grow rapidly. One type of power electronics is the DC boost converter, which steps up DC voltage to another level. DC boost converters are widely used in many applications; for renewable energy, DC boost converters are very useful for stepping up DC...
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doaj-9e9c7a8d144e4844b60d2028190cebe62020-11-24T21:28:51ZengUniversitas IndonesiaInternational Journal of Technology2086-96142087-21002018-12-01961285129410.14716/ijtech.v9i6.24292429Performance Test of 2.5 kW DC Boost Converter for Nanogrid System ApplicationsJamsep Andreas0Eko Adhi Setiawan1Suharsono Halim2Muhammad Atar3Hanifati Nur Shabrina4Department of Electrical Engineering, Faculty of Engineering, Universitas Indonesia, Kampus UI Depok, Depok 16424, Indonesia-Department of Electrical Engineering, Faculty of Engineering, Universitas Indonesia, Kampus UI Depok, Depok 16424, Indonesia -Tropical Renewable Energy Center (TREC), Faculty of Engineering, UniversTropical Renewable Energy Center (TREC), Faculty of Engineering, Universitas Indonesia, Kampus UI Depok, Depok 16424, IndonesiaTropical Renewable Energy Center (TREC), Faculty of Engineering, Universitas Indonesia, Kampus UI Depok, Depok 16424, IndonesiaTropical Renewable Energy Center (TREC), Faculty of Engineering, Universitas Indonesia, Kampus UI Depok, Depok 16424, IndonesiaThe development of power electronics continues to grow rapidly. One type of power electronics is the DC boost converter, which steps up DC voltage to another level. DC boost converters are widely used in many applications; for renewable energy, DC boost converters are very useful for stepping up DC voltage levels from nonconventional energy resources, such as photovoltaics, wind turbines, and fuel cells, to the main system. In this study, we tested a DC boost converter that has been developed to step up 48 VDC from energy storage to 235 VDC in the main bus. The DC boost converter will be used in the nanogrids system, developed by TREC and will supply household appliances such as televisions, lamps, laptops, and mobile phones. The performance tests showed between +3% and -1.2% of voltage deviation and 66–98% efficiency.http://ijtech.eng.ui.ac.id/article/view/2429DC boostEfficiencyNanogridsPerformance test |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jamsep Andreas Eko Adhi Setiawan Suharsono Halim Muhammad Atar Hanifati Nur Shabrina |
spellingShingle |
Jamsep Andreas Eko Adhi Setiawan Suharsono Halim Muhammad Atar Hanifati Nur Shabrina Performance Test of 2.5 kW DC Boost Converter for Nanogrid System Applications International Journal of Technology DC boost Efficiency Nanogrids Performance test |
author_facet |
Jamsep Andreas Eko Adhi Setiawan Suharsono Halim Muhammad Atar Hanifati Nur Shabrina |
author_sort |
Jamsep Andreas |
title |
Performance Test of 2.5 kW DC Boost Converter for Nanogrid System Applications |
title_short |
Performance Test of 2.5 kW DC Boost Converter for Nanogrid System Applications |
title_full |
Performance Test of 2.5 kW DC Boost Converter for Nanogrid System Applications |
title_fullStr |
Performance Test of 2.5 kW DC Boost Converter for Nanogrid System Applications |
title_full_unstemmed |
Performance Test of 2.5 kW DC Boost Converter for Nanogrid System Applications |
title_sort |
performance test of 2.5 kw dc boost converter for nanogrid system applications |
publisher |
Universitas Indonesia |
series |
International Journal of Technology |
issn |
2086-9614 2087-2100 |
publishDate |
2018-12-01 |
description |
The development of power electronics continues to grow rapidly. One type of power electronics is the DC boost converter, which steps up DC voltage to another level. DC boost converters are widely used in many applications; for renewable energy, DC boost converters are very useful for stepping up DC voltage levels from nonconventional energy resources, such as photovoltaics, wind turbines, and fuel cells, to the main system. In this study, we tested a DC boost converter that has been developed to step up 48 VDC from energy storage to 235 VDC in the main bus. The DC boost converter will be used in the nanogrids system, developed by TREC and will supply household appliances such as televisions, lamps, laptops, and mobile phones. The performance tests showed between +3% and -1.2% of voltage deviation and 66–98% efficiency. |
topic |
DC boost Efficiency Nanogrids Performance test |
url |
http://ijtech.eng.ui.ac.id/article/view/2429 |
work_keys_str_mv |
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