[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"_public_publisher_byId_ae4140ca-47c9-4bab-b631-6eb82df25714":3,"_public_publication_all{\"sortAscending\":false,\"sortField\":\"updateTime\",\"page\":0,\"size\":10,\"facet\":true,\"searchKey\":\"publisherId:ae4140ca-47c9-4bab-b631-6eb82df25714,\"}":19},{"code":4,"data":5,"meta":9},"SUCCESS",{"id":6,"createTime":7,"updateTime":7,"relativeEntities":8,"slug":9,"properties":10,"entityType":13,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15,"subjectFields":16,"manageAffiliations":17,"indexDatabases":18,"url":9,"thumbnailPath":9,"statistic":9,"gsStatistic":9,"type":9,"analyzePriority":9},"ae4140ca-47c9-4bab-b631-6eb82df25714","2023-12-20T11:08:34.846+00:00",[],null,{"title":11},{"EN":12},"2002 IEEE 33rd Annual IEEE Power Electronics Specialists Conference. Proceedings (Cat. No.02CH37289)","PUBLISHER","PENDING",0,[],[],[],{"meta":20,"data":22},{"total":21},"279",[23,123,207,303,376,447,506,567,626,685],{"id":24,"createTime":25,"updateTime":26,"relativeEntities":27,"slug":28,"properties":29,"entityType":40,"verifyStatus":41,"verifyTime":26,"verifyNote":42,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15,"primaryUrl":43,"fullTextUrl":44,"authors":45,"publicationType":108,"publisherRelationship":109,"citationCount":9,"citationInfo":9,"publishDate":9,"publishYear":9,"citationAnalyzeStatus":14,"lastCitationAnalyze":9,"indexDatabases":9,"openAccess":9,"references":9,"isForceReanalyzing":122},"0196284d-b469-4128-88d4-deeca015416e","2023-12-20T11:19:06.376+00:00","2024-12-14T23:58:40.744+00:00",[],"Islanding-behaviour-of-grid-connected-PV-inverters-operating-under-different-control-schemes",{"references":30,"keywords":32,"abstract":34,"title":36,"doi":38},{"VOID":31},"10.1007\u002F978-94-011-3622-8_260\n10.1049\u002Fip-epa:20000004\ncoccioni, 1993, High&#x2013; frequency isolated 4kW photovoltaic inverter for utility interface, Advances in Switched Mode Power Conversion, 3\ncullen, 2002, Risk analysis of Islanding, Proceedings of the workshop Impacts of PV Penetration In Distribution Networks Workshop\n10.1109\u002F60.790956\n2000, IEEE recommended practice for utility interface of photovoltaic (PV) systems, 929",{"EN":33},"Inverters,Frequency,Voltage control,Distortion measurement,Control system synthesis,Photovoltaic systems,Solar power generation,Production systems,Safety,Mesh generation",{"EN":35},"This paper compares the islanding behaviour of different inverter implementations, which have current source or voltage source characteristics. Measurements were made on a number of commercially available inverters, and simulation models were developed to enable further investigation of the influence of the type of control system on islanding operation. Additionally, a modified active-frequency-drift detection method is presented which reduces the amount of distortion introduced to the grid compared with the conventional approach often described in the literature.",{"EN":37},"Islanding behaviour of grid-connected PV inverters operating under different control schemes",{"VOID":39},"10.1109\u002FPSEC.2002.1022389","PUBLICATION","VERIFIED","Auto Verify","https:\u002F\u002Fieeexplore.ieee.org\u002Fabstract\u002Fdocument\u002F1022389\u002F","https:\u002F\u002Fieeexplore.ieee.org\u002Fstamp\u002Fstamp.jsp?tp=&arnumber=1022389",[46,64,80,93],{"id":47,"sortIndex":48,"researcher":9,"roles":49,"affiliations":51,"properties":61},"a3972845-8552-48de-85f6-ab9f0545695b",2,[50],"AUTHOR",[52],{"id":9,"sortIndex":15,"affiliation":53,"properties":9},{"id":54,"createTime":55,"updateTime":55,"relativeEntities":56,"slug":9,"properties":57,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},"cfd87482-4f02-496f-bd9e-8d234cd581ef","2024-01-13T20:58:31.473+00:00",[],{"title":58},{"VI":59},"Department of Electrical Engineering, Technical University of Eindhoven, The Netherlands","AFFILIATION",{"title":62},{"VI":63},"M.A.M. Hendrix",{"id":65,"sortIndex":66,"researcher":9,"roles":67,"affiliations":68,"properties":77},"65ad1533-847f-4d24-b25e-993736927d82",3,[50],[69],{"id":9,"sortIndex":15,"affiliation":70,"properties":9},{"id":71,"createTime":72,"updateTime":72,"relativeEntities":73,"slug":9,"properties":74,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},"1194114a-ecc1-43ca-b8cb-52c6477dc39c","2023-12-20T11:19:06.404+00:00",[],{"title":75},{"VI":76},"PV Systems Technology, Energy Research Centre of The Netherlands, ECN, Petten, The Netherlands",{"title":78},{"VI":79},"P.J.M. Heskes",{"id":81,"sortIndex":82,"researcher":9,"roles":83,"affiliations":84,"properties":90},"f8f94f6b-c97b-47cf-9cf4-c6c8eb0ee717",1,[50],[85],{"id":9,"sortIndex":15,"affiliation":86,"properties":9},{"id":54,"createTime":55,"updateTime":55,"relativeEntities":87,"slug":9,"properties":88,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},[],{"title":89},{"VI":59},{"title":91},{"VI":92},"J.L. Duarte",{"id":94,"sortIndex":15,"researcher":9,"roles":95,"affiliations":96,"properties":105},"b6b1ad6c-e822-4cba-8d0e-4e890f27cb00",[50],[97],{"id":9,"sortIndex":15,"affiliation":98,"properties":9},{"id":99,"createTime":100,"updateTime":100,"relativeEntities":101,"slug":9,"properties":102,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},"53dce222-674f-449e-9ca8-cfd021b82b4e","2024-01-11T07:43:34.101+00:00",[],{"title":103},{"VI":104},"Department of Electrical Engineering, Technical University of Eindhoven, Eindhoven, The Netherlands",{"title":106},{"VI":107},"A. Kotsopoulos","ARTICLE",{"url":43,"publisher":110,"properties":117},{"id":6,"createTime":7,"updateTime":7,"relativeEntities":111,"slug":9,"properties":112,"entityType":13,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15,"subjectFields":114,"manageAffiliations":115,"indexDatabases":116,"url":9,"thumbnailPath":9,"statistic":9,"gsStatistic":9,"type":9,"analyzePriority":9},[],{"title":113},{"EN":12},[],[],[],{"volume":118,"pages":120},{"VOID":119},"3",{"VOID":121},"1506-1511 vol.3",false,{"id":124,"createTime":125,"updateTime":126,"relativeEntities":127,"slug":128,"properties":129,"entityType":40,"verifyStatus":41,"verifyTime":126,"verifyNote":42,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15,"primaryUrl":140,"fullTextUrl":141,"authors":142,"publicationType":108,"publisherRelationship":194,"citationCount":9,"citationInfo":9,"publishDate":9,"publishYear":9,"citationAnalyzeStatus":14,"lastCitationAnalyze":9,"indexDatabases":9,"openAccess":9,"references":9,"isForceReanalyzing":122},"9dc0b8d8-4d80-4e50-93be-ec421e61ca3b","2023-12-20T16:10:31.622+00:00","2025-01-01T23:58:33.700+00:00",[],"A-sampling-algorithm-for-digitally-controlled-boost-PFC-converters",{"references":130,"keywords":132,"abstract":134,"title":136,"doi":138},{"VOID":131},"10.1109\u002FPESC.1999.788995\n10.1109\u002FPESC.1989.48584\n10.1109\u002FPESC.2000.879882\n10.1109\u002F41.633465\n10.1109\u002F63.712280\n10.1109\u002F63.486188\n10.1109\u002F5.931490\n10.1109\u002F63.911145\n10.1002\u002Fetep.4450100205",{"EN":133},"Sampling methods,Digital control,Pulse width modulation,Power factor correction,Frequency synchronization,Space vector pulse width modulation,Signal sampling,Current measurement,Noise measurement,Algorithm design and analysis",{"EN":135},"Digital control of a boost power factor correction (PFC) converter requires sampling of the input current. As the input current contains a considerable amount of switching ripple and high frequency switching noise, the choice of the sampling instant is very important. To avoid aliasing without employing a (very) high sampling frequency, the sampling is synchronized with the pulse width modulation (PWM). Sampling algorithms employing this technique successfully reject the input current ripple but are not immune to the high frequency switching noise present on all sampled signals. Therefore, a new sampling algorithm, intended for center-based or symmetric PWM, is deduced with as most important features: switching noise immunity, straightforwardness, accurate measurement of the averaged input current and the need for only few processor cycles. The operating principle, design issues and a theoretical study of the input current error induced by the sampling algorithm due to sampling instant timing errors are derived. All theoretical results are validated experimentally by using a digitally controlled boost PFC converter switching at 50 kHz.",{"EN":137},"A sampling algorithm for digitally controlled boost PFC converters",{"VOID":139},"10.1109\u002FPSEC.2002.1023054","https:\u002F\u002Fieeexplore.ieee.org\u002Fabstract\u002Fdocument\u002F1023054\u002F","https:\u002F\u002Fieeexplore.ieee.org\u002Fstamp\u002Fstamp.jsp?tp=&arnumber=1023054",[143,158,170,182],{"id":144,"sortIndex":66,"researcher":9,"roles":145,"affiliations":146,"properties":155},"fbe9037b-529c-4c37-bc97-4e4c0bb0d974",[50],[147],{"id":9,"sortIndex":15,"affiliation":148,"properties":9},{"id":149,"createTime":150,"updateTime":150,"relativeEntities":151,"slug":9,"properties":152,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},"245739af-db53-4155-b69b-daf4e6e6d601","2023-12-20T16:10:31.679+00:00",[],{"title":153},{"VI":154},"Electrical Energy Laboratory, Department of Electrical Energy, Systems and Automation (EESA), Ghent University, Ghent, Belgium",{"title":156},{"VI":157},"J.A. Melkebeek",{"id":159,"sortIndex":48,"researcher":9,"roles":160,"affiliations":161,"properties":167},"5e78fc63-e9c1-45e3-b0b7-ace95aad3a77",[50],[162],{"id":9,"sortIndex":15,"affiliation":163,"properties":9},{"id":149,"createTime":150,"updateTime":150,"relativeEntities":164,"slug":9,"properties":165,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},[],{"title":166},{"VI":154},{"title":168},{"VI":169},"A.P. Van den Bossche",{"id":171,"sortIndex":15,"researcher":9,"roles":172,"affiliations":173,"properties":179},"0da206bb-3eb9-4f82-ba1c-f6771f74ccf6",[50],[174],{"id":9,"sortIndex":15,"affiliation":175,"properties":9},{"id":149,"createTime":150,"updateTime":150,"relativeEntities":176,"slug":9,"properties":177,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},[],{"title":178},{"VI":154},{"title":180},{"VI":181},"D.M. Van de Sype",{"id":183,"sortIndex":82,"researcher":9,"roles":184,"affiliations":185,"properties":191},"e35899ba-0597-4cd5-bfaa-67bb3c4900fa",[50],[186],{"id":9,"sortIndex":15,"affiliation":187,"properties":9},{"id":149,"createTime":150,"updateTime":150,"relativeEntities":188,"slug":9,"properties":189,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},[],{"title":190},{"VI":154},{"title":192},{"VI":193},"K. De Gusseme",{"url":140,"publisher":195,"properties":202},{"id":6,"createTime":7,"updateTime":7,"relativeEntities":196,"slug":9,"properties":197,"entityType":13,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15,"subjectFields":199,"manageAffiliations":200,"indexDatabases":201,"url":9,"thumbnailPath":9,"statistic":9,"gsStatistic":9,"type":9,"analyzePriority":9},[],{"title":198},{"EN":12},[],[],[],{"volume":203,"pages":205},{"VOID":204},"4",{"VOID":206},"1693-1698 vol.4",{"id":208,"createTime":209,"updateTime":210,"relativeEntities":211,"slug":212,"properties":213,"entityType":40,"verifyStatus":41,"verifyTime":210,"verifyNote":42,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15,"primaryUrl":224,"fullTextUrl":225,"authors":226,"publicationType":108,"publisherRelationship":291,"citationCount":9,"citationInfo":9,"publishDate":9,"publishYear":9,"citationAnalyzeStatus":14,"lastCitationAnalyze":9,"indexDatabases":9,"openAccess":9,"references":9,"isForceReanalyzing":122},"016a2c9e-f4e2-44f7-9162-d6bf0259d398","2023-12-20T16:08:41.225+00:00","2024-12-28T23:57:33.805+00:00",[],"Fast-transient-response-with-combined-linear-non-linear-control-applied-to-buck-converters",{"references":214,"keywords":216,"abstract":218,"title":220,"doi":222},{"VOID":215},"wei, 2001, Comparison of Three Topology Candidates for 12V VRM, IEEE Applied Power Electronics Conference (APEC)\nzhou, 1998, Investigation of Candidate for Future Microprocessors, IEEE Applied Power Electronics Conference (APEC)\nvázquez, 2001, Theoretical Study and Implementation of High Dynamic Performance, High Efficiency and Low Voltage Hybrid Power Supply, IEEE Power Electronics Specialist Conference (PESC)\ncobos, 1994, Optimized Synchronous Rectification Stage for Low Output Voltage DC\u002FDC Conversion, IEEE Power Electronics Specialist Conference (PESC)\nxu, 2001, The Active-Clamp Coupled-Buck Converter-A Novel High Efficiency Voltage Regulator Modules, IEEE Applied Power Electronics Conference (APEC)\n10.1109\u002FAPEC.1994.316424\nwong, 0, VRM Transient Study and Output Filter Design for Future Processors, Proc VPEC Sem 97\nzhou, 1999, A Novel High-input-voltage, High Efficiency and Fast Transient Voltage Regulator Module&#x2014;Push-pull Forward Converter, IEEE Applied Power Electronics Conference (APEC), 10.1109\u002FAPEC.1999.749648\n10.1109\u002FAPEC.1999.749734\n0, AP-907 Pentium&#x00AE; III Processor Power Distribution Guidelines, Intel Applications Notes\n10.1109\u002FAPEC.1999.750470\ngoodfellow, 1997, Designing Power System Around Processors Specifications, Electronic Design, 53",{"EN":217},"Transient response,Voltage control,Power supplies,Feeds,Power generation,Microprocessors,Digital signal processing,Low voltage,Rectifiers,Buck converters",{"EN":219},"Nowadays, one of the main challenges for power supplies designers is to feed the latest generation of microprocessors and DSPs, since they require high current slew rates together with low output voltage. In this paper, a novel control technique is presented to help the designers to comply with the current requirements. The proposed combined linear-nonlinear control (LnLC) scheme increases significantly the capability of conventional linear control to reduce the recovery time of the output voltage drop produced when a load current step occurs. Experimental results have been obtained for two cases: a synchronous rectifier buck converter, with a conventional voltage loop and the same converter with the novel LnLC. The comparison of these experimental results shows that, with the new control, the recovery time of the output voltage is reduced.",{"EN":221},"Fast transient response with combined linear-non-linear control applied to buck converters",{"VOID":223},"10.1109\u002FPSEC.2002.1023037","https:\u002F\u002Fieeexplore.ieee.org\u002Fabstract\u002Fdocument\u002F1023037\u002F","https:\u002F\u002Fieeexplore.ieee.org\u002Fstamp\u002Fstamp.jsp?tp=&arnumber=1023037",[227,242,254,267,279],{"id":228,"sortIndex":66,"researcher":9,"roles":229,"affiliations":230,"properties":239},"17b08185-cf99-4490-a41f-2647346e2325",[50],[231],{"id":9,"sortIndex":15,"affiliation":232,"properties":9},{"id":233,"createTime":234,"updateTime":234,"relativeEntities":235,"slug":9,"properties":236,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},"90f712d8-aac9-410d-8d7b-7afe2e21d278","2023-12-20T16:08:41.430+00:00",[],{"title":237},{"VI":238},"Department Tecnologia Electronica, Grupo de Sistemas Electrhicos de Potencia, Universidad Carlos III de Madrid, Madrid, Spain",{"title":240},{"VI":241},"J. Pleite",{"id":243,"sortIndex":82,"researcher":9,"roles":244,"affiliations":245,"properties":251},"c36fa78f-fc84-40c0-8c1a-ed4632a2ab95",[50],[246],{"id":9,"sortIndex":15,"affiliation":247,"properties":9},{"id":233,"createTime":234,"updateTime":234,"relativeEntities":248,"slug":9,"properties":249,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},[],{"title":250},{"VI":238},{"title":252},{"VI":253},"R. Vazquez",{"id":255,"sortIndex":256,"researcher":9,"roles":257,"affiliations":258,"properties":264},"161874a3-6dbf-4a57-9b3b-de5b5d7b1ed6",4,[50],[259],{"id":9,"sortIndex":15,"affiliation":260,"properties":9},{"id":233,"createTime":234,"updateTime":234,"relativeEntities":261,"slug":9,"properties":262,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},[],{"title":263},{"VI":238},{"title":265},{"VI":266},"E. Olias",{"id":268,"sortIndex":15,"researcher":9,"roles":269,"affiliations":270,"properties":276},"e3beebbf-86b4-46ec-a27b-270322c7a573",[50],[271],{"id":9,"sortIndex":15,"affiliation":272,"properties":9},{"id":233,"createTime":234,"updateTime":234,"relativeEntities":273,"slug":9,"properties":274,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},[],{"title":275},{"VI":238},{"title":277},{"VI":278},"A. Barrado",{"id":280,"sortIndex":48,"researcher":9,"roles":281,"affiliations":282,"properties":288},"3f6a48c5-62fc-4b25-8639-6b91c8a325d1",[50],[283],{"id":9,"sortIndex":15,"affiliation":284,"properties":9},{"id":233,"createTime":234,"updateTime":234,"relativeEntities":285,"slug":9,"properties":286,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},[],{"title":287},{"VI":238},{"title":289},{"VI":290},"A. Lazaro",{"url":224,"publisher":292,"properties":299},{"id":6,"createTime":7,"updateTime":7,"relativeEntities":293,"slug":9,"properties":294,"entityType":13,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15,"subjectFields":296,"manageAffiliations":297,"indexDatabases":298,"url":9,"thumbnailPath":9,"statistic":9,"gsStatistic":9,"type":9,"analyzePriority":9},[],{"title":295},{"EN":12},[],[],[],{"volume":300,"pages":301},{"VOID":204},{"VOID":302},"1587-1592 vol.4",{"id":304,"createTime":305,"updateTime":306,"relativeEntities":307,"slug":308,"properties":309,"entityType":40,"verifyStatus":41,"verifyTime":320,"verifyNote":42,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15,"primaryUrl":321,"fullTextUrl":322,"authors":323,"publicationType":108,"publisherRelationship":363,"citationCount":9,"citationInfo":9,"publishDate":9,"publishYear":9,"citationAnalyzeStatus":14,"lastCitationAnalyze":9,"indexDatabases":9,"openAccess":9,"references":9,"isForceReanalyzing":122},"123fb069-5ff5-4112-8a03-c5267ac380df","2023-12-20T12:55:02.349+00:00","2024-12-16T23:50:15.173+00:00",[],"Commutation-torque-ripple-reduction-in-brushless-DC-motor-drives-using-a-single-DC-current-sensor",{"references":310,"keywords":312,"abstract":314,"title":316,"doi":318},{"VOID":311},"cros, 1993, A novel current control strategy in trapezoidal EMF actuators to minimize torque ripples due to phases commutations, European Power Electronics Conference, 266\nlee, 1998, Current control algorithm to. reduce torque ripple in brushless dc motors, Inernational Conference on Power Electronics, 380\nschlting, 1991, A control method for permanent magnet synchronous motors with trapezoidal electromotive force, European Power Electronics Conference, 117\n10.1109\u002F28.31214\n10.1109\u002F28.137450\n10.1109\u002F41.491356",{"EN":313},"Commutation,Torque,Brushless DC motors,Equations,Current control,Intelligent sensors,Switches,Pulse width modulation inverters,Sensor systems,DC motors",{"EN":315},"This paper presents a comprehensive study result on reducing the commutation torque ripples generated in brushless DC motor drives with only a single DC-link current sensor provided in the inverter DC-link. In brushless DC motor drives equipped with only a single current sensor, it seems that commutation torque ripple suppression which is practically effective in low speed as well as high speed regions has not been reported. A proposed commutation compensation technique combined with a deadbeat DC-link current controller is based on a strategy that the current slopes of the incoming and the outgoing phases during the commutation interval can be equalized by a proper duty-ratio control. The proposed control method is verified through simulations and experiments.",{"EN":317},"Commutation torque ripple reduction in brushless DC motor drives using a single DC current sensor",{"VOID":319},"10.1109\u002FPSEC.2002.1022583","2024-12-16T23:50:15.172+00:00","https:\u002F\u002Fieeexplore.ieee.org\u002Fabstract\u002Fdocument\u002F1022583\u002F","https:\u002F\u002Fieeexplore.ieee.org\u002Fstamp\u002Fstamp.jsp?tp=&arnumber=1022583",[324,339,351],{"id":325,"sortIndex":48,"researcher":9,"roles":326,"affiliations":327,"properties":336},"c2549705-d117-43f6-9989-e4f443cdbdba",[50],[328],{"id":9,"sortIndex":15,"affiliation":329,"properties":9},{"id":330,"createTime":331,"updateTime":331,"relativeEntities":332,"slug":9,"properties":333,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},"6b45c386-e96a-419b-a2fd-2df4367a47f2","2023-12-20T12:55:02.366+00:00",[],{"title":334},{"VI":335},"Intelligent System Control Research Center, KIST, Seoul, South Korea",{"title":337},{"VI":338},"I. Choy",{"id":340,"sortIndex":15,"researcher":9,"roles":341,"affiliations":342,"properties":348},"ac83987c-32fa-4c87-84ef-5b9f6c4abe93",[50],[343],{"id":9,"sortIndex":15,"affiliation":344,"properties":9},{"id":330,"createTime":331,"updateTime":331,"relativeEntities":345,"slug":9,"properties":346,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},[],{"title":347},{"VI":335},{"title":349},{"VI":350},"Chang-hee Won",{"id":352,"sortIndex":82,"researcher":9,"roles":353,"affiliations":354,"properties":360},"ee16e9a2-e28a-4dae-b787-e351917ac719",[50],[355],{"id":9,"sortIndex":15,"affiliation":356,"properties":9},{"id":330,"createTime":331,"updateTime":331,"relativeEntities":357,"slug":9,"properties":358,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},[],{"title":359},{"VI":335},{"title":361},{"VI":362},"Joong-ho Song",{"url":321,"publisher":364,"properties":371},{"id":6,"createTime":7,"updateTime":7,"relativeEntities":365,"slug":9,"properties":366,"entityType":13,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15,"subjectFields":368,"manageAffiliations":369,"indexDatabases":370,"url":9,"thumbnailPath":9,"statistic":9,"gsStatistic":9,"type":9,"analyzePriority":9},[],{"title":367},{"EN":12},[],[],[],{"volume":372,"pages":374},{"VOID":373},"2",{"VOID":375},"985-990 vol.2",{"id":377,"createTime":378,"updateTime":379,"relativeEntities":380,"slug":381,"properties":382,"entityType":40,"verifyStatus":41,"verifyTime":379,"verifyNote":42,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15,"primaryUrl":393,"fullTextUrl":394,"authors":395,"publicationType":108,"publisherRelationship":435,"citationCount":9,"citationInfo":9,"publishDate":9,"publishYear":9,"citationAnalyzeStatus":14,"lastCitationAnalyze":9,"indexDatabases":9,"openAccess":9,"references":9,"isForceReanalyzing":122},"c6b75ef0-b21b-41c4-ad62-cca947d5db07","2023-12-20T16:16:20.820+00:00","2025-02-13T23:47:16.609+00:00",[],"Layout-optimization-to-reduce-EMI-of-a-switched-mode-power-supply",{"references":383,"keywords":385,"abstract":387,"title":389,"doi":391},{"VOID":384},"0, Microspire datasheet 16 parc d'activite du Beau Vallon 57970 ILLANGE - +33 3 82 59 13 33\nschanen, 0, Prediction of current distribution between paralleled capacitors in Hard Switching operation: application to decoupling capacitor, IAS'97\ncrebier, 1999, A new method for E.M.I. study in PFC rectifiers, IEEE PESC\nschanen, 1996, Modeling of low inductive connections: the planar busbar structure, IEEE IAS'Magazine\n10.1109\u002F20.376466\n96, Scheich, Roudet Comparison of a forced and a quasi resonant series chopper with regard to RF noise emission, ETEP\n1986, Nave Prediction of conducted emissions in SMPS, IEEE Int Symp on EMC\nteulings, 0, Switching performances and EMI noise generation of a chopper on Insulated Metal Substrate, EPE'97 Trodheim\ncrébier, 1999, EMI analysis of single phase PFC boost rectifier in the frequency domain, Revue Internationale de G&#x00E9;nie Electrique, 12\nbensaied, 2001, Overall design methodology for power electronics converter, Attce",{"EN":386},"Switched-mode power supply,Electromagnetic interference,Electromagnetic compatibility,Capacitors,Circuit simulation,Predictive models,Insulation life,Geometry,Frequency domain analysis,Integrated circuit interconnections",{"EN":388},"This paper shows how to reach the \"best\" possible layout, satisfying simultaneously the minimal surface, all technological constraints due to the geometry of the components, and a reduced EMC signature. For this purpose, all components must be modeled in the high frequency domain, including interconnects. An interesting harmonic approach is used to predict EMI spectrum, which avoids the prohibitive computation times induced by temporal simulation. Therefore, optimization results are nearly instantaneous using a simple Mathcad\u002Fspl reg\u002F sheet. This method is illustrated in the case of a 14 V-42 V boost converter, realized on IMS.",{"EN":390},"Layout optimization to reduce EMI of a switched mode power supply",{"VOID":392},"10.1109\u002FPSEC.2002.1023111","https:\u002F\u002Fieeexplore.ieee.org\u002Fabstract\u002Fdocument\u002F1023111\u002F","https:\u002F\u002Fieeexplore.ieee.org\u002Fstamp\u002Fstamp.jsp?tp=&arnumber=1023111",[396,411,423],{"id":397,"sortIndex":82,"researcher":9,"roles":398,"affiliations":399,"properties":408},"8ea47ae1-a8c1-4bf9-87fc-12457dc619cf",[50],[400],{"id":9,"sortIndex":15,"affiliation":401,"properties":9},{"id":402,"createTime":403,"updateTime":403,"relativeEntities":404,"slug":9,"properties":405,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},"d5c807da-b48e-47cc-8328-d66bc10b5d34","2023-12-20T16:16:20.847+00:00",[],{"title":406},{"VI":407},"Laboratoire d'Electrotechnique Grenoble, Grenoble, France",{"title":409},{"VI":410},"L. Jourdan",{"id":412,"sortIndex":48,"researcher":9,"roles":413,"affiliations":414,"properties":420},"a8b2dbc0-063c-4526-b151-741090f1c09f",[50],[415],{"id":9,"sortIndex":15,"affiliation":416,"properties":9},{"id":402,"createTime":403,"updateTime":403,"relativeEntities":417,"slug":9,"properties":418,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},[],{"title":419},{"VI":407},{"title":421},{"VI":422},"J. Roudet",{"id":424,"sortIndex":15,"researcher":9,"roles":425,"affiliations":426,"properties":432},"3465039e-3a57-42c0-a7b3-87b4570a7943",[50],[427],{"id":9,"sortIndex":15,"affiliation":428,"properties":9},{"id":402,"createTime":403,"updateTime":403,"relativeEntities":429,"slug":9,"properties":430,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},[],{"title":431},{"VI":407},{"title":433},{"VI":434},"J.-L. Schanen",{"url":393,"publisher":436,"properties":443},{"id":6,"createTime":7,"updateTime":7,"relativeEntities":437,"slug":9,"properties":438,"entityType":13,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15,"subjectFields":440,"manageAffiliations":441,"indexDatabases":442,"url":9,"thumbnailPath":9,"statistic":9,"gsStatistic":9,"type":9,"analyzePriority":9},[],{"title":439},{"EN":12},[],[],[],{"volume":444,"pages":445},{"VOID":204},{"VOID":446},"2021-2026 vol.4",{"id":448,"createTime":449,"updateTime":450,"relativeEntities":451,"slug":452,"properties":453,"entityType":40,"verifyStatus":41,"verifyTime":450,"verifyNote":42,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15,"primaryUrl":464,"fullTextUrl":465,"authors":466,"publicationType":108,"publisherRelationship":494,"citationCount":9,"citationInfo":9,"publishDate":9,"publishYear":9,"citationAnalyzeStatus":14,"lastCitationAnalyze":9,"indexDatabases":9,"openAccess":9,"references":9,"isForceReanalyzing":122},"865c03d4-ec24-442b-b49d-cd38f3bb5152","2023-12-20T11:16:02.825+00:00","2025-02-25T23:38:23.441+00:00",[],"Distributed-control-scheme-for-parallel-connected-soft-switching-high-power-high-frequency-inverters",{"references":454,"keywords":456,"abstract":458,"title":460,"doi":462},{"VOID":455},"rüedi, 2000, 1.6 MW \u002F 150 kHz Inverter for Welding Applications, PCIM 2000 Power Conversion\ndieckerhoff, 0, Doncker: Design of an IGBT-based LCL-Resonant Inverter for High-Frequency Induction Heating, IEEE-IAS Conference Record 1999, 2039\n10.1109\u002FIECON.2001.975857\nbleck, 0, Pilotanlage zum kontinuierlichen Induktionsgl&#x00FC;hen von Stahlband Stahl und Eisen 8\u002F2000, 79\nnuns, 1998, High Frequency Transformers for Induction Heating, International Induction Heating Seminar IHS, 35\ndoht, 0, Control mode for inverters with resonance transformation in induction heating applications, Power Conversion June 1994 Proceedings, 57\n10.1109\u002FIAS.2000.882579\n10.1109\u002F28.315224\nschwarzer, 2001, Doncker: Hochleistungs-IGBT-Umrichter f&#x00FC;r induktive Erw&#x00E4;rmungs-anlagen, Elektrow&#x00E4;rme Int, 2, 68\nkleveland, 1999, IGBTs and Schottky diodes in high power high frequency applications\nschönknecht, 2001, Doncker: Novel Topology for Parallel Connection of Soft Switching, High Power, High Frequency Inverters, IEEE Industry Application Society (IAS) Annual Meeting",{"EN":457},"Distributed control,Inverters,Communication system control,Frequency,Control systems,Welding,Annealing,Power semiconductor devices,Voltage control,Zero voltage switching",{"EN":459},"Inductive heating applications, such as pipe welding or steel-tape annealing, require electrical power ratings of several MWs at frequencies up to 100 kHz and higher. To realize this high power frequency product, several inverters or several power semiconductor devices have to be connected in parallel, because the maximum rating of a single inverter unit is often far below the required rated power. In this paper, a control strategy for parallel connected soft-switching (ZVS and near ZCS) high-frequency voltage-source IGBT- or MOSFET-inverters is presented. The proposed distributed control system, where one control unit is dedicated to each inverter, ensures synchronous switching without any communication between individual control units. Distinctive features include high reliability, flexible configurations, reduction of long communication lines and good monitoring properties.",{"EN":461},"Distributed control scheme for parallel connected soft-switching high-power high-frequency inverters",{"VOID":463},"10.1109\u002FPSEC.2002.1022371","https:\u002F\u002Fieeexplore.ieee.org\u002Fabstract\u002Fdocument\u002F1022371\u002F","https:\u002F\u002Fieeexplore.ieee.org\u002Fstamp\u002Fstamp.jsp?tp=&arnumber=1022371",[467,482],{"id":468,"sortIndex":82,"researcher":9,"roles":469,"affiliations":470,"properties":479},"6e3ed44e-0cfc-46b3-8f50-3480c8ab4a31",[50],[471],{"id":9,"sortIndex":15,"affiliation":472,"properties":9},{"id":473,"createTime":474,"updateTime":474,"relativeEntities":475,"slug":9,"properties":476,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},"8f0b20f3-e679-4a51-8612-9c6d7c3a8b46","2023-12-20T11:16:02.840+00:00",[],{"title":477},{"VI":478},"Institute for Power Electronics and Electrical Drives, RWTH Aachen University of Technology, Aachen, Germany",{"title":480},{"VI":481},"R.W. De Doncker",{"id":483,"sortIndex":15,"researcher":9,"roles":484,"affiliations":485,"properties":491},"38a75779-87b2-4122-b578-8380260f7a96",[50],[486],{"id":9,"sortIndex":15,"affiliation":487,"properties":9},{"id":473,"createTime":474,"updateTime":474,"relativeEntities":488,"slug":9,"properties":489,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},[],{"title":490},{"VI":478},{"title":492},{"VI":493},"A. Schonknecht",{"url":464,"publisher":495,"properties":502},{"id":6,"createTime":7,"updateTime":7,"relativeEntities":496,"slug":9,"properties":497,"entityType":13,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15,"subjectFields":499,"manageAffiliations":500,"indexDatabases":501,"url":9,"thumbnailPath":9,"statistic":9,"gsStatistic":9,"type":9,"analyzePriority":9},[],{"title":498},{"EN":12},[],[],[],{"volume":503,"pages":504},{"VOID":119},{"VOID":505},"1395-1400 vol.3",{"id":507,"createTime":508,"updateTime":509,"relativeEntities":510,"slug":511,"properties":512,"entityType":40,"verifyStatus":41,"verifyTime":509,"verifyNote":42,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15,"primaryUrl":523,"fullTextUrl":524,"authors":525,"publicationType":108,"publisherRelationship":555,"citationCount":9,"citationInfo":9,"publishDate":9,"publishYear":9,"citationAnalyzeStatus":14,"lastCitationAnalyze":9,"indexDatabases":9,"openAccess":9,"references":9,"isForceReanalyzing":122},"ebe038fe-3d94-4201-b371-6d5a2289e2e6","2023-12-20T11:49:22.835+00:00","2025-02-23T23:38:14.665+00:00",[],"Protection-of-VSC-multi-terminal-HVDC-against-DC-faults",{"references":513,"keywords":515,"abstract":517,"title":519,"doi":521},{"VOID":514},"nakjima, 2000, Field Testing of 53 MVA Three-Terminal DC Link between Power Systems Using GTO Converters, International Power Electronics Conference-Tokyo\nasplund, 1997, DC Transmission based on Voltage Source Converters, Proc CIGRE SC14 Colloq South Africa\n10.1109\u002F61.714496\n10.1109\u002FPESS.2000.867439\nlu, 2001, Multi-Terminal LVDC System for Optimal Acquisition of Power in Wind-Farm Using Induction Generators, Power Electronics Specialists' Conference\nlu, 2001, Multi-terminal DC transmission system for wind-farms, Power Engineering Society Winter Meeting 2001, 3, 1091, 10.1109\u002FPESW.2001.917221\n10.1109\u002F61.97692\nlu, 0, Multi-Terminal HVDC as Enabling Technology of Premium Power Quality Park, IEEE 2002 Winter Meeting\n10.1109\u002F63.53160",{"EN":516},"Protection,HVDC transmission,Insulated gate bipolar transistors,Converters,Power conversion,Voltage,Diodes,Rectifiers,Bridge circuits,Feeds",{"EN":518},"Voltage-source converters (VSCs), by themselves, are defenseless against DC faults. Their anti-parallel diodes conduct as rectifier bridges to feed the fault. Their IGBTs (insulated gate bipolar transistors) are helplessly by-passed, unable to extinguish the fault current. This paper shows how a VSC-multi-terminal high voltage direct current (MTDC) transmission system can survive DC faults by a using protection scheme based on: (1) fast, reliable fault detection; (2) blocking of IGBT-circuit breakers (IGBT-CBs) and blocking of the IGBTs of VSCs; (3) locating of the faulted DC line; (4) isolation of the faulted DC line by economical fast DC switches; and (5) de-blocking of IGBT-CBs and IGBTs of VSCs to resume normal service.",{"EN":520},"Protection of VSC-multi-terminal HVDC against DC faults",{"VOID":522},"10.1109\u002FPSEC.2002.1022539","https:\u002F\u002Fieeexplore.ieee.org\u002Fabstract\u002Fdocument\u002F1022539\u002F","https:\u002F\u002Fieeexplore.ieee.org\u002Fstamp\u002Fstamp.jsp?tp=&arnumber=1022539",[526,543],{"id":527,"sortIndex":82,"researcher":9,"roles":528,"affiliations":529,"properties":540},"e716b726-5925-4817-a820-a2e63f4df958",[50],[530],{"id":9,"sortIndex":15,"affiliation":531,"properties":9},{"id":532,"createTime":533,"updateTime":534,"relativeEntities":535,"slug":536,"properties":537,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},"dfd75544-8e7d-4da6-803b-27188c3b091e","2023-12-20T11:49:22.845+00:00","2025-02-01T17:20:40.783+00:00",[],"Department-of-Electrical-and-Computer-Engineering-McGill-University-Montreal-QUE-Canada",{"title":538},{"VI":539},"Department of Electrical and Computer Engineering, McGill University, Montreal, QUE, Canada",{"title":541},{"VI":542},"Boon-Teck Ooi",{"id":544,"sortIndex":15,"researcher":9,"roles":545,"affiliations":546,"properties":552},"e0fc4a19-46e0-4090-b6b5-0adc23eced4a",[50],[547],{"id":9,"sortIndex":15,"affiliation":548,"properties":9},{"id":532,"createTime":533,"updateTime":534,"relativeEntities":549,"slug":536,"properties":550,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},[],{"title":551},{"VI":539},{"title":553},{"VI":554},"Lianxiang Tang",{"url":523,"publisher":556,"properties":563},{"id":6,"createTime":7,"updateTime":7,"relativeEntities":557,"slug":9,"properties":558,"entityType":13,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15,"subjectFields":560,"manageAffiliations":561,"indexDatabases":562,"url":9,"thumbnailPath":9,"statistic":9,"gsStatistic":9,"type":9,"analyzePriority":9},[],{"title":559},{"EN":12},[],[],[],{"volume":564,"pages":565},{"VOID":373},{"VOID":566},"719-724 vol.2",{"id":568,"createTime":569,"updateTime":570,"relativeEntities":571,"slug":572,"properties":573,"entityType":40,"verifyStatus":41,"verifyTime":570,"verifyNote":42,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15,"primaryUrl":584,"fullTextUrl":585,"authors":586,"publicationType":108,"publisherRelationship":614,"citationCount":9,"citationInfo":9,"publishDate":9,"publishYear":9,"citationAnalyzeStatus":14,"lastCitationAnalyze":9,"indexDatabases":9,"openAccess":9,"references":9,"isForceReanalyzing":122},"b88c7ef0-8ab1-4723-9c25-0266f6dfe624","2023-12-20T11:46:44.764+00:00","2025-01-15T23:27:34.195+00:00",[],"Automatic-tuning-of-coupled-inductor-filters",{"references":574,"keywords":576,"abstract":578,"title":580,"doi":582},{"VOID":575},"suranyi, 2001, System powering architectures part IV: The distribution bus, PCIM Magazine, 48\nmiddlebrook, 1976, Input filter considerations in design and application of switching regulators, Proc IEEE Industry Applications Society Annual Meeting, 366\nliu, 2001, Stability margin monitoring for DC distributed power systems via current\u002Fvoltage perturbation, Proc IEEE Applied Power Electronics Conference, 2, 745\n10.1109\u002FPESC.2001.953991\n10.1109\u002FPESC.1996.548811\nkrein, 2001, Ripple correlation control, Nonlinear Phenomena in Power Electronics, 386\nbalog, 2000, Coupled Inductors - A Basic Filter Building Block, Proceedings Electrical Manufacturing & Coil Winding Association Conference, 271\n10.1109\u002FPESC.1999.785659",{"EN":577},"Inductors,Active filters,Nonlinear filters,Coupling circuits,Magnetic separation,Passive filters,Frequency conversion,Magnetic devices,Circuit optimization,Smoothing methods",{"EN":579},"A coupled inductor filter is presented with interesting notch mode filtering characteristics. Although this configuration has been long established, it has received little attention. The new contribution of this paper is to provide an automatic tuning process that can make use of the frequency domain characteristics of the coupled inductor building block. In a sense, this becomes an \"active\" filter technique that uses passive elements for implementation. The combination offers potential performance improvements in comparison with active filters.",{"EN":581},"Automatic tuning of coupled inductor filters",{"VOID":583},"10.1109\u002FPSEC.2002.1022517","https:\u002F\u002Fieeexplore.ieee.org\u002Fabstract\u002Fdocument\u002F1022517\u002F","https:\u002F\u002Fieeexplore.ieee.org\u002Fstamp\u002Fstamp.jsp?tp=&arnumber=1022517",[587,602],{"id":588,"sortIndex":82,"researcher":9,"roles":589,"affiliations":590,"properties":599},"f27cb60d-799a-4ec3-b722-bf0cd482c3fe",[50],[591],{"id":9,"sortIndex":15,"affiliation":592,"properties":9},{"id":593,"createTime":594,"updateTime":594,"relativeEntities":595,"slug":9,"properties":596,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},"6d88e990-75dc-45ad-972f-15a83b833290","2023-12-20T11:46:44.774+00:00",[],{"title":597},{"VI":598},"Department of Electrical and Computer Engineering, University of Illinois, Urbana-Champaign, USA",{"title":600},{"VI":601},"P.T. Krein",{"id":603,"sortIndex":15,"researcher":9,"roles":604,"affiliations":605,"properties":611},"6bd49705-0a86-4793-8a41-34bb7b5ac442",[50],[606],{"id":9,"sortIndex":15,"affiliation":607,"properties":9},{"id":593,"createTime":594,"updateTime":594,"relativeEntities":608,"slug":9,"properties":609,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},[],{"title":610},{"VI":598},{"title":612},{"VI":613},"R. Balog",{"url":584,"publisher":615,"properties":622},{"id":6,"createTime":7,"updateTime":7,"relativeEntities":616,"slug":9,"properties":617,"entityType":13,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15,"subjectFields":619,"manageAffiliations":620,"indexDatabases":621,"url":9,"thumbnailPath":9,"statistic":9,"gsStatistic":9,"type":9,"analyzePriority":9},[],{"title":618},{"EN":12},[],[],[],{"volume":623,"pages":624},{"VOID":373},{"VOID":625},"591-596 vol.2",{"id":627,"createTime":628,"updateTime":629,"relativeEntities":630,"slug":631,"properties":632,"entityType":40,"verifyStatus":41,"verifyTime":629,"verifyNote":42,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15,"primaryUrl":643,"fullTextUrl":644,"authors":645,"publicationType":108,"publisherRelationship":673,"citationCount":9,"citationInfo":9,"publishDate":9,"publishYear":9,"citationAnalyzeStatus":14,"lastCitationAnalyze":9,"indexDatabases":9,"openAccess":9,"references":9,"isForceReanalyzing":122},"527d92c0-7bbb-41bc-8bd1-b3d7d183655f","2023-12-20T12:52:08.211+00:00","2024-12-19T23:25:58.601+00:00",[],"A-geometry-based-simplified-analytical-model-of-switched-reluctance-machines-for-real-time-controller-implementation",{"references":633,"keywords":635,"abstract":637,"title":639,"doi":641},{"VOID":634},"10.1109\u002F60.815034\n10.1109\u002FIAS.2001.955391\n10.1109\u002F20.809140\n10.1109\u002F20.875277\n10.1109\u002F28.903126\ntorrey, 1995, Analytical modeling of variable reluctance machine magnetization characteristics, EE Proc -Electr Power Appl, 142, 14, 10.1049\u002Fip-epa:19951567\n10.1109\u002FTAC.1987.1104616",{"EN":636},"Geometry,Analytical models,Reluctance machines,Reluctance motors,Torque control,Electromagnetic coupling,Rotors,Magnetic analysis,Solid modeling,Student members",{"EN":638},"A geometry based simplified analytical model that decouples the current and position effect on flux and torque in the switched reluctance motor (SRM) drives is presented in this paper. This model gives a direct relation between phase current and torque accounting for the high degree of nonlinearity of the machine. A simple flux model and its inverse relationship have been developed to meet diverse requirements of controller design. The paper emphasizes and demonstrates the importance of these relationships for real time controller implementation of high performance SRM drives.",{"EN":640},"A geometry based simplified analytical model of switched reluctance machines for real-time controller implementation",{"VOID":642},"10.1109\u002FPSEC.2002.1022558","https:\u002F\u002Fieeexplore.ieee.org\u002Fabstract\u002Fdocument\u002F1022558\u002F","https:\u002F\u002Fieeexplore.ieee.org\u002Fstamp\u002Fstamp.jsp?tp=&arnumber=1022558",[646,661],{"id":647,"sortIndex":82,"researcher":9,"roles":648,"affiliations":649,"properties":658},"c44ace46-5416-46a4-8631-70b412616bde",[50],[650],{"id":9,"sortIndex":15,"affiliation":651,"properties":9},{"id":652,"createTime":653,"updateTime":653,"relativeEntities":654,"slug":9,"properties":655,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},"7bdf152b-3afb-4eca-93c0-6b3d0203052b","2023-12-20T12:52:08.222+00:00",[],{"title":656},{"VI":657},"Department of Electrical Engineering, University of Akron, Akron, USA",{"title":659},{"VI":660},"I. 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By nullifying the oscillating components of instantaneous power at the poles of the converter instead of the front-end through solving a set of nonlinear control equations in real time, the harmonics in the output DC voltage can be eliminated more effectively under generalized unbalanced operating conditions in the ac input side. The control scheme allows the pwm rectifier to generate a DC output without substantial even-order harmonics and to maintain nearly unity power factor under generalized unbalanced operating conditions, which makes it possible to reduce the size of the DC-link capacitor and AC inductors leading to reduced total cost. Simulation results along with experimental results for the open-loop control using a laboratory prototype converter confirm the feasibility of the new control method.",{"EN":699},"A control method in dq synchronous frame for PWM boost rectifier under generalized unbalanced operating conditions",{"VOID":701},"10.1109\u002FPSEC.2002.1022376","https:\u002F\u002Fieeexplore.ieee.org\u002Fabstract\u002Fdocument\u002F1022376\u002F","https:\u002F\u002Fieeexplore.ieee.org\u002Fstamp\u002Fstamp.jsp?tp=&arnumber=1022376",[705,726,743],{"id":706,"sortIndex":15,"researcher":9,"roles":707,"affiliations":708,"properties":723},"1eea3995-b765-49c2-a9ba-7fb7ba093095",[50],[709],{"id":710,"sortIndex":15,"affiliation":711,"properties":720},"c3a609ce-294b-416b-bb3b-2498bdfad8dc",{"id":712,"createTime":713,"updateTime":714,"relativeEntities":715,"slug":716,"properties":717,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},"1bf58686-7ee8-4922-ae40-4538cf1860b4","2023-12-26T13:35:22.973+00:00","2024-09-30T02:04:08.275+00:00",[],"University-of-Wisconsin-Madison-Madison-WI-United-States",{"title":718},{"VI":719},"University of Wisconsin-Madison, Madison, WI, United States",{"title":721},{"VI":722},"University of Wisconsin-Madison, Madison, WI, USA",{"title":724},{"VI":725},"Yongsug Suh",{"id":727,"sortIndex":48,"researcher":9,"roles":728,"affiliations":729,"properties":740},"d33f214a-0ec6-4b48-a048-eab96b527058",[50],[730],{"id":9,"sortIndex":15,"affiliation":731,"properties":9},{"id":732,"createTime":733,"updateTime":734,"relativeEntities":735,"slug":736,"properties":737,"entityType":60,"verifyStatus":14,"verifyTime":9,"verifyNote":9,"syncStatus":14,"languages":9,"translateLanguages":9,"viewCount":15},"e862be64-8135-4420-9e47-5a5253ae70e1","2024-04-17T03:57:30.731+00:00","2024-12-26T21:18:59.781+00:00",[],"University-of-Wisconsin-Madison-Madison-WI-USA-",{"title":738},{"EN":739},"University of Wisconsin Madison, Madison, WI, USA;",{"title":741},{"VI":742},"T.A. 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