Optimization of Three-Dimensional Magnetic Field in Vacuum Interrupter Using Particle Swarm Optimization Algorithm
Based on particle swarm optimization algorithm, a three-dimensional model of the contact system of vacuum interrupter is established. Combined with the particle swarm optimization algorithm and finite element magnetic field numerical simulation method, the contact structure parameters of a 400V/20kA...
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Veröffentlicht in: | IEEE transactions on applied superconductivity 2021-11, Vol.31 (8), p.1-4, Article 5000804 |
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creator | Li, Peiyuan Liu, Xiaoming Chen, Hai Li, Bingyu Ma, Tianxiang Jiang, Wentao |
description | Based on particle swarm optimization algorithm, a three-dimensional model of the contact system of vacuum interrupter is established. Combined with the particle swarm optimization algorithm and finite element magnetic field numerical simulation method, the contact structure parameters of a 400V/20kA vacuum interrupter is taken as the optimization variables, and the maximum magnetic field intensity at the arc root is determined as the optimization objective. The distribution of the maximum transverse magnetic field intensity at the contact gap under the optimum parameters has been illustrated and analyzed. |
doi_str_mv | 10.1109/TASC.2021.3107800 |
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Combined with the particle swarm optimization algorithm and finite element magnetic field numerical simulation method, the contact structure parameters of a 400V/20kA vacuum interrupter is taken as the optimization variables, and the maximum magnetic field intensity at the arc root is determined as the optimization objective. The distribution of the maximum transverse magnetic field intensity at the contact gap under the optimum parameters has been illustrated and analyzed.</description><identifier>ISSN: 1051-8223</identifier><identifier>EISSN: 1558-2515</identifier><identifier>DOI: 10.1109/TASC.2021.3107800</identifier><identifier>CODEN: ITASE9</identifier><language>eng</language><publisher>PISCATAWAY: IEEE</publisher><subject>Algorithms ; Contact ; Contacts ; Engineering ; Engineering, Electrical & Electronic ; Finite element method ; Interrupters ; Magnetic circuits ; magnetic field ; Magnetic fields ; Magnetic flux ; Magnetism ; Mathematical models ; optimization ; Optimization algorithms ; Parameters ; Particle swarm optimization ; Physical Sciences ; Physics ; Physics, Applied ; Science & Technology ; Superconducting magnets ; Technology ; Three dimensional models ; Vacuum arcs ; vacuum interrupter ; Vacuum systems</subject><ispartof>IEEE transactions on applied superconductivity, 2021-11, Vol.31 (8), p.1-4, Article 5000804</ispartof><rights>Copyright The Institute of Electrical and Electronics Engineers, Inc. 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Combined with the particle swarm optimization algorithm and finite element magnetic field numerical simulation method, the contact structure parameters of a 400V/20kA vacuum interrupter is taken as the optimization variables, and the maximum magnetic field intensity at the arc root is determined as the optimization objective. The distribution of the maximum transverse magnetic field intensity at the contact gap under the optimum parameters has been illustrated and analyzed.</description><subject>Algorithms</subject><subject>Contact</subject><subject>Contacts</subject><subject>Engineering</subject><subject>Engineering, Electrical & Electronic</subject><subject>Finite element method</subject><subject>Interrupters</subject><subject>Magnetic circuits</subject><subject>magnetic field</subject><subject>Magnetic fields</subject><subject>Magnetic flux</subject><subject>Magnetism</subject><subject>Mathematical models</subject><subject>optimization</subject><subject>Optimization algorithms</subject><subject>Parameters</subject><subject>Particle swarm optimization</subject><subject>Physical Sciences</subject><subject>Physics</subject><subject>Physics, Applied</subject><subject>Science & Technology</subject><subject>Superconducting magnets</subject><subject>Technology</subject><subject>Three dimensional models</subject><subject>Vacuum arcs</subject><subject>vacuum interrupter</subject><subject>Vacuum systems</subject><issn>1051-8223</issn><issn>1558-2515</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2021</creationdate><recordtype>article</recordtype><sourceid>RIE</sourceid><sourceid>HGBXW</sourceid><recordid>eNqNkF1LHDEUQAdpodb2BxRfAj7KbG-Syc7N4zLVKlgsuPZ1yGTurJH5WJMMor--WVcsvjUPSQjnXMjJsm8cFpyD_r5e3VQLAYIvJIcSAQ6yQ64U5kJx9SHdQfEchZCfss8h3APwAgt1mPnrbXSDezbRTSObOra-80T5DzfQGNKT6dkvsxkpOsvOHfUtcyP7Y-w8D-xyjOT9vE07uw1u3LDfxiewJ3bzaPzA3s1e9ZvJu3g3fMk-dqYP9PX1PMpuz8_W1UV-df3zslpd5VZoGfNiCQ1Zi7oFAizLpkFdtB11jSlICCwRl23ZSNt23VJLg7xtNXGrpdAGNcqj7GQ_d-unh5lCrO-n2acfhVqoUvEU6oXie8r6KQRPXb31bjD-qeZQ79LWu7T1Lm39mjY5uHceqZm6YB2Nlt48ACgBl8hht7By8SVANc1jTOrp_6uJPt7TjugfpZVQUoL8C3q4l7Y</recordid><startdate>20211101</startdate><enddate>20211101</enddate><creator>Li, Peiyuan</creator><creator>Liu, Xiaoming</creator><creator>Chen, Hai</creator><creator>Li, Bingyu</creator><creator>Ma, Tianxiang</creator><creator>Jiang, Wentao</creator><general>IEEE</general><general>The Institute of Electrical and Electronics Engineers, Inc. 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subjects | Algorithms Contact Contacts Engineering Engineering, Electrical & Electronic Finite element method Interrupters Magnetic circuits magnetic field Magnetic fields Magnetic flux Magnetism Mathematical models optimization Optimization algorithms Parameters Particle swarm optimization Physical Sciences Physics Physics, Applied Science & Technology Superconducting magnets Technology Three dimensional models Vacuum arcs vacuum interrupter Vacuum systems |
title | Optimization of Three-Dimensional Magnetic Field in Vacuum Interrupter Using Particle Swarm Optimization Algorithm |
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