Pengembangan Electronic Load Controller untuk Self-Excited Induction Generator Berbasis Penyearah Tiga Fase Menggunakan Raspberry Pi
A self-excited induction generator (SEIG) could provide electricity for isolated areas appropriately. An electronic load controller (ELC) with Raspberry Pi is designed to overcome the voltage and frequency changing of SEIG caused by load changing, while ab le to support distributed system trend with...
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Universitas Andalas
2020-11-01
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doaj-f17cca1d9ef24cd89502dd91324a9ace2021-07-02T14:38:05ZengUniversitas AndalasJurnal Nasional Teknik Elektro2302-29492407-72672020-11-019310.25077/jnte.v9n3.802.2020290Pengembangan Electronic Load Controller untuk Self-Excited Induction Generator Berbasis Penyearah Tiga Fase Menggunakan Raspberry PiIhsan Nur Hakim0Aan Listanto Amdrian1Adlan Bagus Pradana2Awang Noor Indra Wardana3Universitas Gadjah MadaUniversitas Gadjah MadaUniversitas Gadjah MadaUniversitas Gadjah MadaA self-excited induction generator (SEIG) could provide electricity for isolated areas appropriately. An electronic load controller (ELC) with Raspberry Pi is designed to overcome the voltage and frequency changing of SEIG caused by load changing, while ab le to support distributed system trend with Framework for Distributed Industrial Automation and Control (4DIAC). The ELC design is based on the characteristics of SEIG and Indonesian electricity system standards. The design is then implemented, and the characteristics are identi?ed. The output of SEIG is regulated at frequency of 50 Hz and terminal voltage of 294 V. A voltage sensor is designed with a transformer, ?lters, recti?er, and ADC. The actuator consisted of a three-phase recti?er, dump load, optocoupler driver, and IGBT. A PI-controller based on Python is applied in Raspberry Pi Zero with experimentally tuned Kp and Ki values both of 5.0. The output changing of SEIG caused by load changing could be regulated within the Indonesian electricity frequency standard in its steady state. The maximum voltage deviation from the nominal value is -12.24%, while the maximum frequency deviation is +3.2%, and the longest settling time is 832 ms. Keywords : induction generator, electronic load controller and Raspberry Pi.http://jnte.ft.unand.ac.id/index.php/jnte/article/view/802 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ihsan Nur Hakim Aan Listanto Amdrian Adlan Bagus Pradana Awang Noor Indra Wardana |
spellingShingle |
Ihsan Nur Hakim Aan Listanto Amdrian Adlan Bagus Pradana Awang Noor Indra Wardana Pengembangan Electronic Load Controller untuk Self-Excited Induction Generator Berbasis Penyearah Tiga Fase Menggunakan Raspberry Pi Jurnal Nasional Teknik Elektro |
author_facet |
Ihsan Nur Hakim Aan Listanto Amdrian Adlan Bagus Pradana Awang Noor Indra Wardana |
author_sort |
Ihsan Nur Hakim |
title |
Pengembangan Electronic Load Controller untuk Self-Excited Induction Generator Berbasis Penyearah Tiga Fase Menggunakan Raspberry Pi |
title_short |
Pengembangan Electronic Load Controller untuk Self-Excited Induction Generator Berbasis Penyearah Tiga Fase Menggunakan Raspberry Pi |
title_full |
Pengembangan Electronic Load Controller untuk Self-Excited Induction Generator Berbasis Penyearah Tiga Fase Menggunakan Raspberry Pi |
title_fullStr |
Pengembangan Electronic Load Controller untuk Self-Excited Induction Generator Berbasis Penyearah Tiga Fase Menggunakan Raspberry Pi |
title_full_unstemmed |
Pengembangan Electronic Load Controller untuk Self-Excited Induction Generator Berbasis Penyearah Tiga Fase Menggunakan Raspberry Pi |
title_sort |
pengembangan electronic load controller untuk self-excited induction generator berbasis penyearah tiga fase menggunakan raspberry pi |
publisher |
Universitas Andalas |
series |
Jurnal Nasional Teknik Elektro |
issn |
2302-2949 2407-7267 |
publishDate |
2020-11-01 |
description |
A self-excited induction generator (SEIG) could provide electricity for isolated areas appropriately. An electronic load controller (ELC) with Raspberry Pi is designed to overcome the voltage and frequency changing of SEIG caused by load changing, while ab le to support distributed system trend with Framework for Distributed Industrial Automation and Control (4DIAC). The ELC design is based on the characteristics of SEIG and Indonesian electricity system standards. The design is then implemented, and the characteristics are identi?ed. The output of SEIG is regulated at frequency of 50 Hz and terminal voltage of 294 V. A voltage sensor is designed with a transformer, ?lters, recti?er, and ADC. The actuator consisted of a three-phase recti?er, dump load, optocoupler driver, and IGBT. A PI-controller based on Python is applied in Raspberry Pi Zero with experimentally tuned Kp and Ki values both of 5.0. The output changing of SEIG caused by load changing could be regulated within the Indonesian electricity frequency standard in its steady state. The maximum voltage deviation from the nominal value is -12.24%, while the maximum frequency deviation is +3.2%, and the longest settling time is 832 ms.
Keywords : induction generator, electronic load controller and Raspberry Pi. |
url |
http://jnte.ft.unand.ac.id/index.php/jnte/article/view/802 |
work_keys_str_mv |
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