Development of Grid-Connected Inverter Experiment Modules for Microgrid Learning
New paradigms in the modern power system should be introduced to student of electrical engineering, or engineer in training, as early as possible. Besides class-room study, experimental exercise may be introduced to help the student understand the concept of microgrid. One main challenge is the powe...
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Online Access: | https://www.mdpi.com/1996-1073/12/3/476 |
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doaj-f6a019b21a274347bda8f586588486c22020-11-25T00:02:45ZengMDPI AGEnergies1996-10732019-02-0112347610.3390/en12030476en12030476Development of Grid-Connected Inverter Experiment Modules for Microgrid LearningArwindra Rizqiawan0Pradita Hadi1Goro Fujita2School of Electrical Engineering and Informatics, Institut Teknologi Bandung, Bandung 40132, IndonesiaCollege of Engineering, Shibaura Insitute of Technology, Tokyo 135-8548, JapanCollege of Engineering, Shibaura Insitute of Technology, Tokyo 135-8548, JapanNew paradigms in the modern power system should be introduced to student of electrical engineering, or engineer in training, as early as possible. Besides class-room study, experimental exercise may be introduced to help the student understand the concept of microgrid. One main challenge is the power electronics converter, which connects the distributed energy source to the existing power grid. This study modeled and developed a grid-connected inverter that is useful for providing a close to real application for a student or engineer in training. This development is important for microgrid learning to give practical perspective to the student. A grid-connected inverter for distributed generation was developed at laboratory scale. The grid-connected inverter was developed modularly to make it easier for the student to understand the basic concept of grid-connected inverter building blocks, as well as its function as a whole. The developed grid-connected inverter was intended to be able to operate on two different mode: grid-forming mode and grid-injecting mode. Experiments were conducted to verify the results.https://www.mdpi.com/1996-1073/12/3/476invertergrid-connectedmicrogridexperimentmodules |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Arwindra Rizqiawan Pradita Hadi Goro Fujita |
spellingShingle |
Arwindra Rizqiawan Pradita Hadi Goro Fujita Development of Grid-Connected Inverter Experiment Modules for Microgrid Learning Energies inverter grid-connected microgrid experiment modules |
author_facet |
Arwindra Rizqiawan Pradita Hadi Goro Fujita |
author_sort |
Arwindra Rizqiawan |
title |
Development of Grid-Connected Inverter Experiment Modules for Microgrid Learning |
title_short |
Development of Grid-Connected Inverter Experiment Modules for Microgrid Learning |
title_full |
Development of Grid-Connected Inverter Experiment Modules for Microgrid Learning |
title_fullStr |
Development of Grid-Connected Inverter Experiment Modules for Microgrid Learning |
title_full_unstemmed |
Development of Grid-Connected Inverter Experiment Modules for Microgrid Learning |
title_sort |
development of grid-connected inverter experiment modules for microgrid learning |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2019-02-01 |
description |
New paradigms in the modern power system should be introduced to student of electrical engineering, or engineer in training, as early as possible. Besides class-room study, experimental exercise may be introduced to help the student understand the concept of microgrid. One main challenge is the power electronics converter, which connects the distributed energy source to the existing power grid. This study modeled and developed a grid-connected inverter that is useful for providing a close to real application for a student or engineer in training. This development is important for microgrid learning to give practical perspective to the student. A grid-connected inverter for distributed generation was developed at laboratory scale. The grid-connected inverter was developed modularly to make it easier for the student to understand the basic concept of grid-connected inverter building blocks, as well as its function as a whole. The developed grid-connected inverter was intended to be able to operate on two different mode: grid-forming mode and grid-injecting mode. Experiments were conducted to verify the results. |
topic |
inverter grid-connected microgrid experiment modules |
url |
https://www.mdpi.com/1996-1073/12/3/476 |
work_keys_str_mv |
AT arwindrarizqiawan developmentofgridconnectedinverterexperimentmodulesformicrogridlearning AT praditahadi developmentofgridconnectedinverterexperimentmodulesformicrogridlearning AT gorofujita developmentofgridconnectedinverterexperimentmodulesformicrogridlearning |
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1725436787990462464 |