Design and analysis of a novel yokeless mover permanent magnet linear generator for free piston engine converter

Abstract Free piston engine generator (FPEG) is one of the recent solutions by researchers used in hybrid vehicles, which eventually can contribute to the reduction of environmental pollutants from public transports. The purpose of the this work is to introduce a novel dual‐stator permanent magnet l...

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Main Authors: Arman Tajdiny, Hassan Monsef, Hamid Lessani
Format: Article
Language:English
Published: Wiley 2021-10-01
Series:IET Electric Power Applications
Online Access:https://doi.org/10.1049/elp2.12101
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spelling doaj-024b50d1eaad4479a599fe3029c010b32021-09-04T14:45:27ZengWileyIET Electric Power Applications1751-86601751-86792021-10-0115101314133010.1049/elp2.12101Design and analysis of a novel yokeless mover permanent magnet linear generator for free piston engine converterArman Tajdiny0Hassan Monsef1Hamid Lessani2Centre of Excellence in Applied Electromagnetic Systems School of Electrical and Computer Engineering College of Engineering University of Tehran Tehran IranCentre of Excellence in Applied Electromagnetic Systems School of Electrical and Computer Engineering College of Engineering University of Tehran Tehran IranCentre of Excellence in Applied Electromagnetic Systems School of Electrical and Computer Engineering College of Engineering University of Tehran Tehran IranAbstract Free piston engine generator (FPEG) is one of the recent solutions by researchers used in hybrid vehicles, which eventually can contribute to the reduction of environmental pollutants from public transports. The purpose of the this work is to introduce a novel dual‐stator permanent magnet linear generator with yokeless mover (DSPMLG) to improve the key parameters of the linear generator used in FPEG systems. In this work, an analytical model of the DSPMLG magnetic field is developed to investigate magnetic field flux density distribution and for back‐EMF prediction. Then, a two‐dimensional (2D) model of the DSPMLG is put forth using the finite element method (FEM) to validate the analytical results. In the next section, 1D modelling and simulation of a two‐stroke free‐piston engine (FPE) with dual‐piston structure is done using Ricardo’s WAVE software. The obtained results are used in the FEM simulation and prototype development in order to accurately evaluate the performance of the introduced generator in the FPEG system. Since the FPE velocity profile distorts the back‐EMF, the effect of the velocity profile on back‐EMF distortion is investigated using fast Fourier transform. Also, the DSPMLG is optimised for minimum back‐EMF distortion, considering the maximum output power. To validate the simulation results, the DSPMLG is developed and the obtained experimental results have proper conformity with the simulation results. Finally, in order to weigh up the effectiveness of the proposed generator, its structure is compared with other reported structures in previous research studies based on the key indicators required for the linear generator used in FPEGs.https://doi.org/10.1049/elp2.12101
collection DOAJ
language English
format Article
sources DOAJ
author Arman Tajdiny
Hassan Monsef
Hamid Lessani
spellingShingle Arman Tajdiny
Hassan Monsef
Hamid Lessani
Design and analysis of a novel yokeless mover permanent magnet linear generator for free piston engine converter
IET Electric Power Applications
author_facet Arman Tajdiny
Hassan Monsef
Hamid Lessani
author_sort Arman Tajdiny
title Design and analysis of a novel yokeless mover permanent magnet linear generator for free piston engine converter
title_short Design and analysis of a novel yokeless mover permanent magnet linear generator for free piston engine converter
title_full Design and analysis of a novel yokeless mover permanent magnet linear generator for free piston engine converter
title_fullStr Design and analysis of a novel yokeless mover permanent magnet linear generator for free piston engine converter
title_full_unstemmed Design and analysis of a novel yokeless mover permanent magnet linear generator for free piston engine converter
title_sort design and analysis of a novel yokeless mover permanent magnet linear generator for free piston engine converter
publisher Wiley
series IET Electric Power Applications
issn 1751-8660
1751-8679
publishDate 2021-10-01
description Abstract Free piston engine generator (FPEG) is one of the recent solutions by researchers used in hybrid vehicles, which eventually can contribute to the reduction of environmental pollutants from public transports. The purpose of the this work is to introduce a novel dual‐stator permanent magnet linear generator with yokeless mover (DSPMLG) to improve the key parameters of the linear generator used in FPEG systems. In this work, an analytical model of the DSPMLG magnetic field is developed to investigate magnetic field flux density distribution and for back‐EMF prediction. Then, a two‐dimensional (2D) model of the DSPMLG is put forth using the finite element method (FEM) to validate the analytical results. In the next section, 1D modelling and simulation of a two‐stroke free‐piston engine (FPE) with dual‐piston structure is done using Ricardo’s WAVE software. The obtained results are used in the FEM simulation and prototype development in order to accurately evaluate the performance of the introduced generator in the FPEG system. Since the FPE velocity profile distorts the back‐EMF, the effect of the velocity profile on back‐EMF distortion is investigated using fast Fourier transform. Also, the DSPMLG is optimised for minimum back‐EMF distortion, considering the maximum output power. To validate the simulation results, the DSPMLG is developed and the obtained experimental results have proper conformity with the simulation results. Finally, in order to weigh up the effectiveness of the proposed generator, its structure is compared with other reported structures in previous research studies based on the key indicators required for the linear generator used in FPEGs.
url https://doi.org/10.1049/elp2.12101
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AT hassanmonsef designandanalysisofanovelyokelessmoverpermanentmagnetlineargeneratorforfreepistonengineconverter
AT hamidlessani designandanalysisofanovelyokelessmoverpermanentmagnetlineargeneratorforfreepistonengineconverter
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