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Design, analysis and prototyping of a low-cost monopole machine

Identifieur interne : 000660 ( Main/Exploration ); précédent : 000659; suivant : 000661

Design, analysis and prototyping of a low-cost monopole machine

Auteurs : Solmaz Kahourzade [Malaisie] ; Amin Mahmoudi [Malaisie] ; HEW WOOI PING [Malaisie]

Source :

RBID : Pascal:13-0220465

Descripteurs français

English descriptors

Abstract

This study presents the design, analysis and prototyping of a low-cost monopole machine capable of battery charging. The designed monopole machine encompasses a rotor disc including eight permanent magnets with the same magnetising direction and a stator consists of a magnetic core and three windings: power coil winding, trigger coil winding and recovery coil winding. This machine includes an electronic circuit as a trigger and a magnetic circuit that converts electrical energy to mechanical energy and vice versa. The machine captures energy in the form of back-electromagnetic force generated by a collapsing field in the stator and rotor to avoid wasting energy and stores it in a battery. To simulate the machine, electromagnetic and electrical analyses were conducted simultaneously to predict the design parameters and machine performance: three-dimensional finite element analysis via Vector Field Opera, and MATLAB/Simulink. To validate the simulation results accuracy, the machine was fabricated and tested. Experimental data were compared with simulation results, and showed good agreement with that of simulation.


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Le document en format XML

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<term>Electromagnetism</term>
<term>Electronic circuit</term>
<term>Finite element method</term>
<term>MATLAB software</term>
<term>Machine windings</term>
<term>Magnetic circuit</term>
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<term>Performance evaluation</term>
<term>Permanent magnet</term>
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<term>Diminution coût</term>
<term>Chargement batterie</term>
<term>Rotor</term>
<term>Aimant permanent</term>
<term>Stator</term>
<term>Noyau magnétique</term>
<term>Enroulement machine</term>
<term>Circuit déclenchement</term>
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<div type="abstract" xml:lang="en">This study presents the design, analysis and prototyping of a low-cost monopole machine capable of battery charging. The designed monopole machine encompasses a rotor disc including eight permanent magnets with the same magnetising direction and a stator consists of a magnetic core and three windings: power coil winding, trigger coil winding and recovery coil winding. This machine includes an electronic circuit as a trigger and a magnetic circuit that converts electrical energy to mechanical energy and vice versa. The machine captures energy in the form of back-electromagnetic force generated by a collapsing field in the stator and rotor to avoid wasting energy and stores it in a battery. To simulate the machine, electromagnetic and electrical analyses were conducted simultaneously to predict the design parameters and machine performance: three-dimensional finite element analysis via Vector Field Opera, and MATLAB/Simulink. To validate the simulation results accuracy, the machine was fabricated and tested. Experimental data were compared with simulation results, and showed good agreement with that of simulation.</div>
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