2019
DOI: 10.3390/app10010104
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Magnetic Force Enhancement Using Air-Gap Magnetic Field Manipulation by Optimized Coil Currents

Abstract: This paper presents an air-gap magnetic field manipulation by optimized coil currents for a magnetic force enhancement in electromechanical devices. The external coil is designed near the device air-gap for manipulating the magnetic field distribution. The distribution of external coil currents is then optimized for maximizing the magnetic force in the tangential direction to the air-gap line. For the optimization, the design domain near air-gap is divided into small areas, and design variables are assigned at… Show more

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Cited by 5 publications
(1 citation statement)
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References 29 publications
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“…As one of the promising alternative refrigeration technologies, research in room temperature magnetic refrigeration mainly focusses on: magnetocaloric materials [1][2][3], magnet arrangements [4][5][6], and regenerator designs [7][8][9]. The last issue is to pursue the best practical performance of regenerators fabricated using industrially relevant magnetocaloric materials (MCMs) and processing paths.…”
Section: Introduction To Magnetic Refrigerationmentioning
confidence: 99%
“…As one of the promising alternative refrigeration technologies, research in room temperature magnetic refrigeration mainly focusses on: magnetocaloric materials [1][2][3], magnet arrangements [4][5][6], and regenerator designs [7][8][9]. The last issue is to pursue the best practical performance of regenerators fabricated using industrially relevant magnetocaloric materials (MCMs) and processing paths.…”
Section: Introduction To Magnetic Refrigerationmentioning
confidence: 99%