Study on different loading topologies of a six-phase self excited induction generator
High number of phases of a multi-phase machine equip it with greater operational versatility. Due to the presence of dual 3-phases, a six-phase self excited induction generator (6φ-SEIG) is considered very convenient for grid connected as well as off-grid renewable energy based electricity generatio...
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doaj-2cafb42f51344600a781514927146c952020-11-24T20:50:19ZengElsevierEngineering Science and Technology, an International Journal2215-09862018-08-01214654663Study on different loading topologies of a six-phase self excited induction generatorM. Faisal Khan0M. Rizwan Khan1Electrical Engineering Section, University Polytechnic, Faculty of Engineering & Technology, Aligarh Muslim University, Aligarh 202002, India; Corresponding author.Electrical Engineering Department, Zakir Husain College of Engineering & Technology, Aligarh Muslim University, Aligarh 202002, UP, IndiaHigh number of phases of a multi-phase machine equip it with greater operational versatility. Due to the presence of dual 3-phases, a six-phase self excited induction generator (6φ-SEIG) is considered very convenient for grid connected as well as off-grid renewable energy based electricity generation systems. Besides, the multi-phase induction generators have been proposed as starter/generator for aero-engines in the aviation industry as more electric aircrafts (MEAs) gain prominence. In this paper six-phase simultaneous loading and three-phase loading at a time of a 6φ-SEIG are investigated. Terminal capacitors provide the reactive power for exciting the SEIG windings. Series capacitances are employed in short shunt connection for self- voltage correction of 6φ-SEIG. A dual d-q mathematical model of short shunt, symmetrical, 6φ-SEIG in dual-stator configuration is developed for the study. All the steady state and transient results are obtained through simulation model. Verification of simulation results is achieved with good accuracy on a prime mover driven open-end stator winding induction machine operated as 6φ-SEIG. For both loading configurations, the full load voltage regulation is maintained within 2% across all phases with optimum excitation and series capacitances of 4 µF/phase and 19 µF respectively. Keywords: Six-phase SEIG, Loading topologies, Short shunt, Dynamic model, Renewable energyhttp://www.sciencedirect.com/science/article/pii/S2215098618302180 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
M. Faisal Khan M. Rizwan Khan |
spellingShingle |
M. Faisal Khan M. Rizwan Khan Study on different loading topologies of a six-phase self excited induction generator Engineering Science and Technology, an International Journal |
author_facet |
M. Faisal Khan M. Rizwan Khan |
author_sort |
M. Faisal Khan |
title |
Study on different loading topologies of a six-phase self excited induction generator |
title_short |
Study on different loading topologies of a six-phase self excited induction generator |
title_full |
Study on different loading topologies of a six-phase self excited induction generator |
title_fullStr |
Study on different loading topologies of a six-phase self excited induction generator |
title_full_unstemmed |
Study on different loading topologies of a six-phase self excited induction generator |
title_sort |
study on different loading topologies of a six-phase self excited induction generator |
publisher |
Elsevier |
series |
Engineering Science and Technology, an International Journal |
issn |
2215-0986 |
publishDate |
2018-08-01 |
description |
High number of phases of a multi-phase machine equip it with greater operational versatility. Due to the presence of dual 3-phases, a six-phase self excited induction generator (6φ-SEIG) is considered very convenient for grid connected as well as off-grid renewable energy based electricity generation systems. Besides, the multi-phase induction generators have been proposed as starter/generator for aero-engines in the aviation industry as more electric aircrafts (MEAs) gain prominence. In this paper six-phase simultaneous loading and three-phase loading at a time of a 6φ-SEIG are investigated. Terminal capacitors provide the reactive power for exciting the SEIG windings. Series capacitances are employed in short shunt connection for self- voltage correction of 6φ-SEIG. A dual d-q mathematical model of short shunt, symmetrical, 6φ-SEIG in dual-stator configuration is developed for the study. All the steady state and transient results are obtained through simulation model. Verification of simulation results is achieved with good accuracy on a prime mover driven open-end stator winding induction machine operated as 6φ-SEIG. For both loading configurations, the full load voltage regulation is maintained within 2% across all phases with optimum excitation and series capacitances of 4 µF/phase and 19 µF respectively. Keywords: Six-phase SEIG, Loading topologies, Short shunt, Dynamic model, Renewable energy |
url |
http://www.sciencedirect.com/science/article/pii/S2215098618302180 |
work_keys_str_mv |
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