AFPMG electromagnetic field analysis for 6D BIM applications
Torus, which refers to the toroidal arrangement of its stator core and winding, is a popular axial flux, permanent magnet generator (AFPMG) due to its ease of construction, high efficiency, and small size. As a result, Torus can be used as an alternative axial flux machine in many electric appliance...
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description | Torus, which refers to the toroidal arrangement of its stator core and winding, is a popular axial flux, permanent magnet generator (AFPMG) due to its ease of construction, high efficiency, and small size. As a result, Torus can be used as an alternative axial flux machine in many electric appliances to the conventional axial flux machine. Torus does appear to be a promising approach for wind power applications in Vietnam, so more research into its characteristics is required. The Torus generator was designed with slotted winding to maximize the use of available magnetic materials while lowering the cost of wind generators in Vietnam. The air gap is reduced by the slotted winding Torus generator, which increases the magnetic flux density. Four ferrite, rare earth-based magnet Torus generator models had been created. Torus is the new type of generator. The contribution of this paper is the analytical calculation for permanent magnet toroidal generators and the design formulas for this type of generator. |
doi_str_mv | 10.1063/5.0068982 |
format | Conference Proceeding |
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As a result, Torus can be used as an alternative axial flux machine in many electric appliances to the conventional axial flux machine. Torus does appear to be a promising approach for wind power applications in Vietnam, so more research into its characteristics is required. The Torus generator was designed with slotted winding to maximize the use of available magnetic materials while lowering the cost of wind generators in Vietnam. The air gap is reduced by the slotted winding Torus generator, which increases the magnetic flux density. Four ferrite, rare earth-based magnet Torus generator models had been created. Torus is the new type of generator. The contribution of this paper is the analytical calculation for permanent magnet toroidal generators and the design formulas for this type of generator.</description><identifier>ISSN: 0094-243X</identifier><identifier>EISSN: 1551-7616</identifier><identifier>DOI: 10.1063/5.0068982</identifier><identifier>CODEN: APCPCS</identifier><language>eng</language><publisher>Melville: American Institute of Physics</publisher><subject>Air gaps ; Electric appliances ; Electromagnetic fields ; Flux density ; Generators ; Magnetic flux ; Magnetic materials ; Magnetism ; Permanent magnets ; Toruses ; Wind power ; Winding ; Windpowered generators</subject><ispartof>AIP conference proceedings, 2021, Vol.2420 (1)</ispartof><rights>Author(s)</rights><rights>2021 Author(s). 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As a result, Torus can be used as an alternative axial flux machine in many electric appliances to the conventional axial flux machine. Torus does appear to be a promising approach for wind power applications in Vietnam, so more research into its characteristics is required. The Torus generator was designed with slotted winding to maximize the use of available magnetic materials while lowering the cost of wind generators in Vietnam. The air gap is reduced by the slotted winding Torus generator, which increases the magnetic flux density. Four ferrite, rare earth-based magnet Torus generator models had been created. Torus is the new type of generator. The contribution of this paper is the analytical calculation for permanent magnet toroidal generators and the design formulas for this type of generator.</description><subject>Air gaps</subject><subject>Electric appliances</subject><subject>Electromagnetic fields</subject><subject>Flux density</subject><subject>Generators</subject><subject>Magnetic flux</subject><subject>Magnetic materials</subject><subject>Magnetism</subject><subject>Permanent magnets</subject><subject>Toruses</subject><subject>Wind power</subject><subject>Winding</subject><subject>Windpowered generators</subject><issn>0094-243X</issn><issn>1551-7616</issn><fulltext>true</fulltext><rsrctype>conference_proceeding</rsrctype><creationdate>2021</creationdate><recordtype>conference_proceeding</recordtype><recordid>eNp9kM1KAzEYRYMoWKsL3yDgTpia5MvPBNzUamuhRRcK7kJmkkjKtDMmU6Fvb7WCO1d3c7gcDkKXlIwokXAjRoTIUpfsCA2oELRQkspjNCBE84JxeDtFZzmvCGFaqXKAbsfT5-UM-8bXfWrX9n3j-1jjEH3jsN3YZpdjxqFNWN7ju_kS265rYm372G7yOToJtsn-4neH6HX68DJ5LBZPs_lkvCg6RoAVHGqquKsqkMJxK7ytnHRBUaJFIBwkKAbWVRDAAy-htMr6WpRBl5ZJQWGIrg6_XWo_tj73ZtVu014uGyY0SC0lUXvq-kDlOvY_gqZLcW3TzlBivusYYX7r_Ad_tukPNJ0L8AU9-2Nu</recordid><startdate>20211105</startdate><enddate>20211105</enddate><creator>Hung, Tien Le</creator><general>American Institute of Physics</general><scope>8FD</scope><scope>H8D</scope><scope>L7M</scope></search><sort><creationdate>20211105</creationdate><title>AFPMG electromagnetic field analysis for 6D BIM applications</title><author>Hung, Tien Le</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-p2032-43c174dbb365d4a5eabd6df71095f04363723adb3f3e34838a7aec58f98a26513</frbrgroupid><rsrctype>conference_proceedings</rsrctype><prefilter>conference_proceedings</prefilter><language>eng</language><creationdate>2021</creationdate><topic>Air gaps</topic><topic>Electric appliances</topic><topic>Electromagnetic fields</topic><topic>Flux density</topic><topic>Generators</topic><topic>Magnetic flux</topic><topic>Magnetic materials</topic><topic>Magnetism</topic><topic>Permanent magnets</topic><topic>Toruses</topic><topic>Wind power</topic><topic>Winding</topic><topic>Windpowered generators</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Hung, Tien Le</creatorcontrib><collection>Technology Research Database</collection><collection>Aerospace Database</collection><collection>Advanced Technologies Database with Aerospace</collection></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Hung, Tien Le</au><au>Le, Tien</au><au>Bhagat, Kunal</au><au>Huynh, Thu</au><au>Nguyen, Y</au><au>Le, Nam</au><au>Phan, Le</au><au>Truong, Tri</au><au>Nguyen, Dung</au><au>Ly, Anh</au><au>Tran, Long</au><au>Nguyen, Cuong</au><au>Vo, Nghiep</au><au>Phuong, Ha</au><au>Hyunh, Phuoc</au><format>book</format><genre>proceeding</genre><ristype>CONF</ristype><atitle>AFPMG electromagnetic field analysis for 6D BIM applications</atitle><btitle>AIP conference proceedings</btitle><date>2021-11-05</date><risdate>2021</risdate><volume>2420</volume><issue>1</issue><issn>0094-243X</issn><eissn>1551-7616</eissn><coden>APCPCS</coden><abstract>Torus, which refers to the toroidal arrangement of its stator core and winding, is a popular axial flux, permanent magnet generator (AFPMG) due to its ease of construction, high efficiency, and small size. As a result, Torus can be used as an alternative axial flux machine in many electric appliances to the conventional axial flux machine. Torus does appear to be a promising approach for wind power applications in Vietnam, so more research into its characteristics is required. The Torus generator was designed with slotted winding to maximize the use of available magnetic materials while lowering the cost of wind generators in Vietnam. The air gap is reduced by the slotted winding Torus generator, which increases the magnetic flux density. Four ferrite, rare earth-based magnet Torus generator models had been created. Torus is the new type of generator. The contribution of this paper is the analytical calculation for permanent magnet toroidal generators and the design formulas for this type of generator.</abstract><cop>Melville</cop><pub>American Institute of Physics</pub><doi>10.1063/5.0068982</doi><tpages>5</tpages><oa>free_for_read</oa></addata></record> |
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source | AIP Journals Complete |
subjects | Air gaps Electric appliances Electromagnetic fields Flux density Generators Magnetic flux Magnetic materials Magnetism Permanent magnets Toruses Wind power Winding Windpowered generators |
title | AFPMG electromagnetic field analysis for 6D BIM applications |
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