[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"_public_publisher_byId_2860017b-d8d0-427c-8ccc-549c766e0c1e":3,"_public_publication_all{\"sortAscending\":false,\"sortField\":\"updateTime\",\"page\":0,\"size\":10,\"facet\":true,\"searchKey\":\"publisherId:2860017b-d8d0-427c-8ccc-549c766e0c1e,\"}":22},{"code":4,"data":5,"meta":10},"SUCCESS",{"id":6,"createTime":7,"updateTime":8,"relativeEntities":9,"slug":10,"properties":11,"entityType":16,"verifyStatus":17,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":18,"subjectFields":19,"manageAffiliations":20,"indexDatabases":21,"url":10,"thumbnailPath":10,"statistic":10,"gsStatistic":10,"type":10,"analyzePriority":10},"2860017b-d8d0-427c-8ccc-549c766e0c1e","2023-12-21T03:22:43.083+00:00","2023-12-21T03:35:10.701+00:00",[],null,{"issn":12,"title":14},{"VOID":13},"00942898",{"EN":15},"Proceedings of the Thirty-Fourth Southeastern Symposium on System Theory (Cat. No.02EX540)","PUBLISHER","PENDING",2,[],[],[],{"meta":23,"data":25},{"total":24},"104",[26,100,168,244,305,353,427,490,555,631],{"id":27,"createTime":28,"updateTime":29,"relativeEntities":30,"slug":31,"properties":32,"entityType":45,"verifyStatus":46,"verifyTime":47,"verifyNote":48,"languages":10,"translateLanguages":49,"viewCount":51,"primaryUrl":52,"fullTextUrl":53,"authors":54,"publicationType":85,"publisherRelationship":86,"citationCount":10,"citationInfo":10,"publishDate":10,"publishYear":10,"citationAnalyzeStatus":17,"lastCitationAnalyze":10,"indexDatabases":98,"openAccess":10,"references":10,"isForceReanalyzing":99},"21675de0-cf69-4cb8-905d-14dd1885dde5","2023-12-21T03:27:01.505+00:00","2026-09-05T13:13:28.539+00:00",[],"Two-dimensional-higher-order-wavelet-like-basis-functions-in-the-finite-element-method",{"abstract":33,"title":35,"keywords":38,"references":41,"doi":43},{"EN":34},"Wavelets and wavelet analysis have recently become increasingly important in the computational sciences. Wavelets have many applications in areas such as signal analysis, image compression, and the numerical solution of partial differential equations and integral equations. For instance, two-dimensional wavelet-like basis functions are used in the numerical solution of elliptic partial differential equations. With diagonal preconditioning, the use of these wavelet-like basis functions yields a system matrix that has a condition number that is bounded by a constant as the number of basis functions is increased. These two-dimensional wavelet-like functions are derived directly from the traditional two-dimensional first order finite element basis functions. Typically, however, higher dimensional wavelets are formed from products of one-dimensional wavelets. Thus, in this paper we consider this alternative method for generating wavelet-like basis functions. Specifically, we investigate the generation of higher order two-dimensional wavelet-like basis functions from products of higher order one-dimensional wavelet-like basis functions. A discussion of the advantages and disadvantages of this new approach will be presented.",{"EN":36,"VI":37},"Two-dimensional higher-order wavelet-like basis functions in the finite element method","Các hàm cơ sở dạng wavelet bậc cao hai chiều trong phương pháp phần tử hữu hạn",{"EN":39,"VI":40},"Finite element methods,Wavelet analysis,Integral equations,Multiresolution analysis,Iterative methods,Signal analysis,Image coding,Partial differential equations","phương pháp phần tử hữu hạn, phân tích wavelet, phương trình tích phân, phân tích đa phân giải, phương pháp lặp, phân tích tín hiệu, mã hóa hình ảnh, phương trình đạo hàm riêng",{"VOID":42},"10.1137\u002F0729059\nelliott hutchcraft, 2001, On the Generation of Two-dimensional Wavelet-Like Basis Functions, Proc Third Southeastern Symposium on System Theory, 387, 10.1109\u002FSSST.2001.918551\n10.1002\u002Fcpa.3160410705",{"VOID":44},"10.1109\u002FSSST.2002.1027023","PUBLICATION","VERIFIED","2024-12-27T07:04:31.343+00:00","Auto Verify",[50],"VI",0,"https:\u002F\u002Fieeexplore.ieee.org\u002Fabstract\u002Fdocument\u002F1027023\u002F","https:\u002F\u002Fieeexplore.ieee.org\u002Fstamp\u002Fstamp.jsp?tp=&arnumber=1027023",[55,71],{"id":56,"sortIndex":51,"researcher":10,"roles":57,"affiliations":59,"properties":68,"displayName":70,"givenName":10,"familyName":10},"d0da86af-9cda-4d7f-94fd-fa2cc66fb035",[58],"AUTHOR",[60],{"id":61,"sortIndex":51,"affiliation":62,"properties":10},"011da3e8-f03d-4426-82d9-8a4e89f9b73d",{"id":61,"createTime":10,"updateTime":10,"relativeEntities":63,"slug":10,"properties":64,"entityType":10,"verifyStatus":10,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":10,"url":10,"parentIds":67,"statistic":10},[],{"title":65},{"VI":66},"Department of Electrical Engineering, University of Mississippi, MS, USA",[],{"title":69},{"VI":70},"W.E. Hutchcraft",{"id":72,"sortIndex":73,"researcher":10,"roles":74,"affiliations":75,"properties":82,"displayName":84,"givenName":10,"familyName":10},"a3b13b46-10d9-4628-8f4a-e3cb32105a97",1,[58],[76],{"id":61,"sortIndex":51,"affiliation":77,"properties":10},{"id":61,"createTime":10,"updateTime":10,"relativeEntities":78,"slug":10,"properties":79,"entityType":10,"verifyStatus":10,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":10,"url":10,"parentIds":81,"statistic":10},[],{"title":80},{"VI":66},[],{"title":83},{"VI":84},"R.K. Gordon","ARTICLE",{"url":52,"publisher":87,"properties":95},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":88,"slug":10,"properties":89,"entityType":16,"verifyStatus":17,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":18,"subjectFields":92,"manageAffiliations":93,"indexDatabases":94,"url":10,"thumbnailPath":10,"statistic":10,"gsStatistic":10,"type":10,"analyzePriority":10},[],{"issn":90,"title":91},{"VOID":13},{"EN":15},[],[],[],{"pages":96},{"VOID":97},"147-151",[],false,{"id":101,"createTime":102,"updateTime":103,"relativeEntities":104,"slug":105,"properties":106,"entityType":45,"verifyStatus":46,"verifyTime":119,"verifyNote":48,"languages":10,"translateLanguages":10,"viewCount":51,"primaryUrl":120,"fullTextUrl":121,"authors":122,"publicationType":85,"publisherRelationship":151,"citationCount":51,"citationInfo":163,"publishDate":10,"publishYear":10,"citationAnalyzeStatus":165,"lastCitationAnalyze":166,"indexDatabases":167,"openAccess":10,"references":10,"isForceReanalyzing":99},"90a9c3ed-34d5-4bbe-809e-411be520b189","2023-12-21T03:25:00.577+00:00","2026-07-20T12:02:11.568+00:00",[],"An-intelligent-universal-virtual-laboratory-UVL-",{"abstract":107,"title":109,"gsPaper":111,"keywords":113,"references":115,"doi":117},{"EN":108},"The objective of this project is to create a realistic, real-time, electrical engineering virtual laboratory for the use of disabled students. This project targets individuals who do not have adequate mobility of their upper bodies to perform laboratory experiments. To provide a more realistic and enhanced learning experience, the users of the virtual laboratory are allowed the freedom to build and test a wide variety of realistic electrical circuits, and be able to perform curriculum-based experiments. The main goal is to create an environment similar to a real electrical engineering laboratory, and to offer the user a way to learn the different aspects of instrumentation and circuitry.",{"EN":110},"An intelligent universal virtual laboratory (UVL)",{"VOID":112},"[\"1185522516537075855\",\"3972136647697871959\"]",{"EN":114},"Laboratories,Electrical engineering,Instruments,Circuit simulation,Circuit testing,Computational modeling,Graphical user interfaces,User interfaces,Performance evaluation,Diseases",{"VOID":116},"wells, 1997, LabVIEW for Everyone, 6\n1996, National Center for Education Statistics, The 1996 National Postsecondary Student Aid Study Data System\nmonssen, 1996, MicroSim PSpice With Circuit Analysis, 1\n0, National Science Foundation (1997), Award Abstract #9710548 SBIR Phase II Computer Simulation of Science and Technical Laboratory Exercises for Physically-Disabled Students\n1994, Center For Disease Control (1995), National Health Interview Survey",{"VOID":118},"10.1109\u002FSSST.2002.1027009","2024-05-08T03:20:31.212+00:00","https:\u002F\u002Fieeexplore.ieee.org\u002Fabstract\u002Fdocument\u002F1027009\u002F","https:\u002F\u002Fieeexplore.ieee.org\u002Fstamp\u002Fstamp.jsp?tp=&arnumber=1027009",[123,138],{"id":124,"sortIndex":51,"researcher":10,"roles":125,"affiliations":126,"properties":135,"displayName":137,"givenName":10,"familyName":10},"b9a45960-5adf-4c71-849d-3939d4af61df",[58],[127],{"id":128,"sortIndex":51,"affiliation":129,"properties":10},"bb04b8ad-f631-4605-95ad-bfa1e85c3d35",{"id":128,"createTime":10,"updateTime":10,"relativeEntities":130,"slug":10,"properties":131,"entityType":10,"verifyStatus":10,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":10,"url":10,"parentIds":134,"statistic":10},[],{"title":132},{"VI":133},"Electrical & Computer Eng. Department, Temple University, Philadelphia, PA, USA",[],{"title":136},{"VI":137},"M. Duarte",{"id":139,"sortIndex":73,"researcher":10,"roles":140,"affiliations":141,"properties":148,"displayName":150,"givenName":10,"familyName":10},"4a66dbd1-2c75-4507-ac90-c1a13f98e3b3",[58],[142],{"id":128,"sortIndex":51,"affiliation":143,"properties":10},{"id":128,"createTime":10,"updateTime":10,"relativeEntities":144,"slug":10,"properties":145,"entityType":10,"verifyStatus":10,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":10,"url":10,"parentIds":147,"statistic":10},[],{"title":146},{"VI":133},[],{"title":149},{"VI":150},"B.P. Butz",{"url":120,"publisher":152,"properties":160},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":153,"slug":10,"properties":154,"entityType":16,"verifyStatus":17,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":18,"subjectFields":157,"manageAffiliations":158,"indexDatabases":159,"url":10,"thumbnailPath":10,"statistic":10,"gsStatistic":10,"type":10,"analyzePriority":10},[],{"issn":155,"title":156},{"VOID":13},{"EN":15},[],[],[],{"pages":161},{"VOID":162},"75-80",{"total":51,"publishYear":10,"statisticByYear":164},{},"DONE_ANALYZE_CITATION","2026-07-20T12:02:11.567+00:00",[],{"id":169,"createTime":170,"updateTime":171,"relativeEntities":172,"slug":173,"properties":174,"entityType":45,"verifyStatus":46,"verifyTime":171,"verifyNote":48,"languages":10,"translateLanguages":10,"viewCount":51,"primaryUrl":185,"fullTextUrl":186,"authors":187,"publicationType":85,"publisherRelationship":231,"citationCount":10,"citationInfo":10,"publishDate":10,"publishYear":10,"citationAnalyzeStatus":17,"lastCitationAnalyze":10,"indexDatabases":243,"openAccess":10,"references":10,"isForceReanalyzing":99},"68d2c0e7-4ccb-43fe-b4f7-ba890f7066e1","2023-12-21T03:31:15.219+00:00","2025-02-26T13:15:46.207+00:00",[],"Base-case-power-flow-model-of-an-interconnected-power-system",{"abstract":175,"title":177,"keywords":179,"references":181,"doi":183},{"EN":176},"This paper presents a user-friendly software in modeling daily base case by including the peak power interchange, forecast loads, scheduled generator, and transmission line outages. In order to model an interconnected power system accurately, the items mentioned above must be included into the base case before running the contingency screening. This software will abstract all downloaded files from the NERC web site and process them according to the requested query hour. Finally, the software will create an user defined input batch file (idv file) that will after the base case's power interchange, loads, and scheduled generator and transmission line outages in PSS\u002FE power load flow program. In fact, two versions of this software have been developed with a full power interchange model and a decoupled power interchange model. The decoupled power interchange model is only concentrating on the southern security coordinators' power interchange to the north. The full power interchange model is including all the transactions in that peak hour.",{"EN":178},"Base-case power flow model of an interconnected power system",{"EN":180},"Power system modeling,Power system interconnection,Load flow,Power system security,Power transmission lines,Predictive models,Load forecasting,Power engineering and energy,Power generation,Job shop scheduling",{"VOID":182},"kochhar, 1996, Introduction to Oracle SQL Edition 1 1, one\nhallberg, 1997, Using Microsoft Excel 97 Special Edition\n1995, Using Access 95 Special Edition\n2001, a Division of S&W Consultant Inc Introduction to PSS\u002FE",{"VOID":184},"10.1109\u002FSSST.2002.1027058","https:\u002F\u002Fieeexplore.ieee.org\u002Fabstract\u002Fdocument\u002F1027058\u002F","https:\u002F\u002Fieeexplore.ieee.org\u002Fstamp\u002Fstamp.jsp?tp=&arnumber=1027058",[188,203,216],{"id":189,"sortIndex":51,"researcher":10,"roles":190,"affiliations":191,"properties":200,"displayName":202,"givenName":10,"familyName":10},"71c9f845-cb30-4a95-953e-0e2cb4c00cd6",[58],[192],{"id":193,"sortIndex":51,"affiliation":194,"properties":10},"9baa2c12-9dad-4205-8b6c-1cd30a1bbed5",{"id":193,"createTime":10,"updateTime":10,"relativeEntities":195,"slug":10,"properties":196,"entityType":10,"verifyStatus":10,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":10,"url":10,"parentIds":199,"statistic":10},[],{"title":197},{"VI":198},"Electrical & Computer Engineering Department, Tennessee Technological University, Cookeville, TN, USA",[],{"title":201},{"VI":202},"A. Sekar",{"id":204,"sortIndex":73,"researcher":10,"roles":205,"affiliations":206,"properties":213,"displayName":215,"givenName":10,"familyName":10},"9657e87d-5be5-4e07-9daf-4314899ef581",[58],[207],{"id":193,"sortIndex":51,"affiliation":208,"properties":10},{"id":193,"createTime":10,"updateTime":10,"relativeEntities":209,"slug":10,"properties":210,"entityType":10,"verifyStatus":10,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":10,"url":10,"parentIds":212,"statistic":10},[],{"title":211},{"VI":198},[],{"title":214},{"VI":215},"Soon-Kin Chai",{"id":217,"sortIndex":18,"researcher":10,"roles":218,"affiliations":219,"properties":228,"displayName":230,"givenName":10,"familyName":10},"ae8639db-45b7-4df9-9a97-fb965fd9a964",[58],[220],{"id":221,"sortIndex":51,"affiliation":222,"properties":10},"98d67c08-e0d6-46ca-95c0-f2a5e4ccda9a",{"id":221,"createTime":10,"updateTime":10,"relativeEntities":223,"slug":10,"properties":224,"entityType":10,"verifyStatus":10,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":10,"url":10,"parentIds":227,"statistic":10},[],{"title":225},{"VI":226},"Transmission Security Department, Tennessee Valley Authority, Chattanooga, TN, USA",[],{"title":229},{"VI":230},"Wai-Ran Wu",{"url":185,"publisher":232,"properties":240},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":233,"slug":10,"properties":234,"entityType":16,"verifyStatus":17,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":18,"subjectFields":237,"manageAffiliations":238,"indexDatabases":239,"url":10,"thumbnailPath":10,"statistic":10,"gsStatistic":10,"type":10,"analyzePriority":10},[],{"issn":235,"title":236},{"VOID":13},{"EN":15},[],[],[],{"pages":241},{"VOID":242},"316-320",[],{"id":245,"createTime":246,"updateTime":247,"relativeEntities":248,"slug":249,"properties":250,"entityType":45,"verifyStatus":46,"verifyTime":247,"verifyNote":48,"languages":10,"translateLanguages":10,"viewCount":51,"primaryUrl":261,"fullTextUrl":262,"authors":263,"publicationType":85,"publisherRelationship":292,"citationCount":10,"citationInfo":10,"publishDate":10,"publishYear":10,"citationAnalyzeStatus":17,"lastCitationAnalyze":10,"indexDatabases":304,"openAccess":10,"references":10,"isForceReanalyzing":99},"4cf1a76b-0cef-4614-b436-fc714a90d404","2023-12-21T03:34:15.118+00:00","2025-02-25T04:28:16.754+00:00",[],"Optical-free-induction-decay-OFID-effect-in-Dymel-gas-mixtures",{"abstract":251,"title":253,"keywords":255,"references":257,"doi":259},{"EN":252},"Narrow bursts of laser pulses have many applications. OFID is one of the techniques used to shorten the pulsewidth of a CO2 laser after it passes through a gas such as Dymel. Present work is an extension of earlier studies in Dymel gas. Controlled mixtures of Dymel with Helium, Argon, and Nitrogen gas affect the original OFID effect in pure Dymel gas in different ways.",{"EN":254},"Optical free induction decay (OFID) effect in Dymel gas mixtures",{"EN":256},"Optical pulses,Gas lasers,Helium,Optical buffering,Optical filters,Optical pulse compression,Space vector pulse width modulation,Argon,Nitrogen,Laser excitation",{"VOID":258},"rodrigues, 1998, The OFID effect in Dymel gas using a pulsed CO2 laser\n10.1063\u002F1.1655319",{"VOID":260},"10.1109\u002FSSST.2002.1027085","https:\u002F\u002Fieeexplore.ieee.org\u002Fabstract\u002Fdocument\u002F1027085\u002F","https:\u002F\u002Fieeexplore.ieee.org\u002Fstamp\u002Fstamp.jsp?tp=&arnumber=1027085",[264,279],{"id":265,"sortIndex":51,"researcher":10,"roles":266,"affiliations":267,"properties":276,"displayName":278,"givenName":10,"familyName":10},"6f1b487b-f232-4c80-befa-57c025ce0320",[58],[268],{"id":269,"sortIndex":51,"affiliation":270,"properties":10},"7f40d827-4ccb-4528-a4b9-891485fb1f12",{"id":269,"createTime":10,"updateTime":10,"relativeEntities":271,"slug":10,"properties":272,"entityType":10,"verifyStatus":10,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":10,"url":10,"parentIds":275,"statistic":10},[],{"title":273},{"VI":274},"Electrical and Computer Engineering, Tennessee Technological University, Cookeville, TN, USA",[],{"title":277},{"VI":278},"S. Spurrier",{"id":280,"sortIndex":73,"researcher":10,"roles":281,"affiliations":282,"properties":289,"displayName":291,"givenName":10,"familyName":10},"da36b3c1-de53-4d55-99fb-9c713ed41bc4",[58],[283],{"id":269,"sortIndex":51,"affiliation":284,"properties":10},{"id":269,"createTime":10,"updateTime":10,"relativeEntities":285,"slug":10,"properties":286,"entityType":10,"verifyStatus":10,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":10,"url":10,"parentIds":288,"statistic":10},[],{"title":287},{"VI":274},[],{"title":290},{"VI":291},"S.M. Mahajan",{"url":261,"publisher":293,"properties":301},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":294,"slug":10,"properties":295,"entityType":16,"verifyStatus":17,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":18,"subjectFields":298,"manageAffiliations":299,"indexDatabases":300,"url":10,"thumbnailPath":10,"statistic":10,"gsStatistic":10,"type":10,"analyzePriority":10},[],{"issn":296,"title":297},{"VOID":13},{"EN":15},[],[],[],{"pages":302},{"VOID":303},"445-448",[],{"id":306,"createTime":307,"updateTime":308,"relativeEntities":309,"slug":310,"properties":311,"entityType":45,"verifyStatus":46,"verifyTime":308,"verifyNote":48,"languages":10,"translateLanguages":10,"viewCount":51,"primaryUrl":322,"fullTextUrl":323,"authors":324,"publicationType":85,"publisherRelationship":340,"citationCount":10,"citationInfo":10,"publishDate":10,"publishYear":10,"citationAnalyzeStatus":17,"lastCitationAnalyze":10,"indexDatabases":352,"openAccess":10,"references":10,"isForceReanalyzing":99},"171250cc-52f5-4b91-b319-71074171ed10","2023-12-21T03:24:36.350+00:00","2025-02-23T10:17:21.002+00:00",[],"Virtual-attendance-in-real-engineering-labs",{"abstract":312,"title":314,"keywords":316,"references":318,"doi":320},{"EN":313},"Engineering laboratory equipment at UTC has been made available for users via the World Wide Web. Users can conduct systems lab experiments from remote sites, anytime day-or-night, any day of the week. This paper describes the development of these systems, the current situation and future plans.",{"EN":315},"Virtual attendance in real engineering labs",{"EN":317},"Laboratories,Control systems,Temperature control,Computer networks,Radio access networks,Protocols,Educational institutions,Computer science,Engineering education,Pressure control",{"VOID":319},"henry, 1995, LabVIEW Applications in Teaching Controls Systems Laboratories, ASEE Annual Meeting\nhenry, 1993, Engineering Controls Systems with LabVIEW, Scientific and Engineering Applications for Macintosh\nhenry, 2001, Laboratory Remote Operation: Features and Opportunities, ASEE Annual Meeting\nhenry, 2001, Improving Laboratories with Internet Controlled Equipment and Internet Student Support, ASEE Southeastern Meeting\nhenry, 2001, Web-Based Laboratories: Technical and Pedagogical Considerations, AIChE Annual Meeting\nmasoud, 2001, Remote Laboratory Operation: Web Technology Successes, ASEE Annual Meeting\nhenry, 1998, Running Laboratory Experiments via the World Wide Web, ASEE Annual Meeting\nhenry, 1998, Laboratory Teaching via the World Wide Web, ASEE Southeastern Meeting",{"VOID":321},"10.1109\u002FSSST.2002.1027006","https:\u002F\u002Fieeexplore.ieee.org\u002Fabstract\u002Fdocument\u002F1027006\u002F","https:\u002F\u002Fieeexplore.ieee.org\u002Fstamp\u002Fstamp.jsp?tp=&arnumber=1027006",[325],{"id":326,"sortIndex":51,"researcher":10,"roles":327,"affiliations":328,"properties":337,"displayName":339,"givenName":10,"familyName":10},"326ceff4-f181-4d55-8097-bd54a73c573b",[58],[329],{"id":330,"sortIndex":51,"affiliation":331,"properties":10},"faba7d4d-d854-4c58-b4b6-f79033bf55f3",{"id":330,"createTime":10,"updateTime":10,"relativeEntities":332,"slug":10,"properties":333,"entityType":10,"verifyStatus":10,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":10,"url":10,"parentIds":336,"statistic":10},[],{"title":334},{"VI":335},"College of Engineering and Computer Science, University of Tennessee, Chattanooga, Chattanooga, TN, USA",[],{"title":338},{"VI":339},"J. Henry",{"url":322,"publisher":341,"properties":349},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":342,"slug":10,"properties":343,"entityType":16,"verifyStatus":17,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":18,"subjectFields":346,"manageAffiliations":347,"indexDatabases":348,"url":10,"thumbnailPath":10,"statistic":10,"gsStatistic":10,"type":10,"analyzePriority":10},[],{"issn":344,"title":345},{"VOID":13},{"EN":15},[],[],[],{"pages":350},{"VOID":351},"61-65",[],{"id":354,"createTime":355,"updateTime":356,"relativeEntities":357,"slug":358,"properties":359,"entityType":45,"verifyStatus":46,"verifyTime":356,"verifyNote":48,"languages":10,"translateLanguages":10,"viewCount":51,"primaryUrl":370,"fullTextUrl":371,"authors":372,"publicationType":85,"publisherRelationship":414,"citationCount":10,"citationInfo":10,"publishDate":10,"publishYear":10,"citationAnalyzeStatus":17,"lastCitationAnalyze":10,"indexDatabases":426,"openAccess":10,"references":10,"isForceReanalyzing":99},"06d83a0f-fb6a-4eb9-b318-2e33d19d8208","2023-12-21T03:29:25.519+00:00","2025-02-23T07:01:04.740+00:00",[],"Some-implementation-results-and-system-effects-of-power-electronic-speed-control-of-three-phase-AC-motors-in-closed-loop-operation",{"abstract":360,"title":362,"keywords":364,"references":366,"doi":368},{"EN":361},"Certain properties of electronic speed control of three-phase AC motors are described, including some properties that can be modified by the user in the field. Emphasis is placed on the closed-loop operation. Test results for one system are obtained. Using a standard control algorithm from the linear control theory, a method of reducing steady-state speed error is demonstrated. No case of instability is found using various starting speeds, final speeds, and controller parameters for test results. Simulation results are obtained for the closed-loop operation using a controller model previously obtained for open-loop operation of this type system. The model contains multiple nonlinearities. No case of instability is found for various starting speeds, final speeds, controller parameters, and motor parameters for the simulation.",{"EN":363},"Some implementation results and system effects of power electronic speed control of three-phase AC motors in closed-loop operation",{"EN":365},"Velocity control,Open loop systems,Programmable control,Induction motors,AC motors,DC generators,Frequency,Control systems,Testing,Power electronics",{"VOID":367},"10.1109\u002FIIS.1997.645433\nwildi, 2000, Electrical Machines, Drives, and Power Systems\nsen, 1997, Principles of Electric Machines and Power Electronics",{"VOID":369},"10.1109\u002FSSST.2002.1027039","https:\u002F\u002Fieeexplore.ieee.org\u002Fabstract\u002Fdocument\u002F1027039\u002F","https:\u002F\u002Fieeexplore.ieee.org\u002Fstamp\u002Fstamp.jsp?tp=&arnumber=1027039",[373,388,401],{"id":374,"sortIndex":51,"researcher":10,"roles":375,"affiliations":376,"properties":385,"displayName":387,"givenName":10,"familyName":10},"b6809bb3-bacb-40ca-9913-b4ef70c8bf4d",[58],[377],{"id":378,"sortIndex":51,"affiliation":379,"properties":10},"31305e98-0248-44cf-8f75-4d3b3ab72ecd",{"id":378,"createTime":10,"updateTime":10,"relativeEntities":380,"slug":10,"properties":381,"entityType":10,"verifyStatus":10,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":10,"url":10,"parentIds":384,"statistic":10},[],{"title":382},{"VI":383},"School of Engineering, Christian Brothers University, Memphis, TN, USA",[],{"title":386},{"VI":387},"R. Drake",{"id":389,"sortIndex":73,"researcher":10,"roles":390,"affiliations":391,"properties":398,"displayName":400,"givenName":10,"familyName":10},"215328c9-281b-4c30-8a85-b58fd9028f28",[58],[392],{"id":378,"sortIndex":51,"affiliation":393,"properties":10},{"id":378,"createTime":10,"updateTime":10,"relativeEntities":394,"slug":10,"properties":395,"entityType":10,"verifyStatus":10,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":10,"url":10,"parentIds":397,"statistic":10},[],{"title":396},{"VI":383},[],{"title":399},{"VI":400},"A. Howard",{"id":402,"sortIndex":18,"researcher":10,"roles":403,"affiliations":404,"properties":411,"displayName":413,"givenName":10,"familyName":10},"61b15ab2-51e0-4600-b02d-2aed9bc1d891",[58],[405],{"id":378,"sortIndex":51,"affiliation":406,"properties":10},{"id":378,"createTime":10,"updateTime":10,"relativeEntities":407,"slug":10,"properties":408,"entityType":10,"verifyStatus":10,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":10,"url":10,"parentIds":410,"statistic":10},[],{"title":409},{"VI":383},[],{"title":412},{"VI":413},"J. Ventura",{"url":370,"publisher":415,"properties":423},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":416,"slug":10,"properties":417,"entityType":16,"verifyStatus":17,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":18,"subjectFields":420,"manageAffiliations":421,"indexDatabases":422,"url":10,"thumbnailPath":10,"statistic":10,"gsStatistic":10,"type":10,"analyzePriority":10},[],{"issn":418,"title":419},{"VOID":13},{"EN":15},[],[],[],{"pages":424},{"VOID":425},"224-228",[],{"id":428,"createTime":429,"updateTime":430,"relativeEntities":431,"slug":432,"properties":433,"entityType":45,"verifyStatus":46,"verifyTime":430,"verifyNote":48,"languages":10,"translateLanguages":10,"viewCount":73,"primaryUrl":444,"fullTextUrl":445,"authors":446,"publicationType":85,"publisherRelationship":477,"citationCount":10,"citationInfo":10,"publishDate":10,"publishYear":10,"citationAnalyzeStatus":17,"lastCitationAnalyze":10,"indexDatabases":489,"openAccess":10,"references":10,"isForceReanalyzing":99},"454e6521-0782-4cb1-b2ec-34fb950c0ef2","2023-12-21T03:35:05.942+00:00","2025-02-23T05:33:09.586+00:00",[],"Helicopter-hover-control-using-linear-adaptive-control-techniques",{"abstract":434,"title":436,"keywords":438,"references":440,"doi":442},{"EN":435},"The dynamics of a helicopter are inherently unstable, highly nonlinear and exhibit strong cross-couplings between controls. This paper is concerned with the application of linear adaptive control techniques to stabilize helicopter hover maneuvers. Linear adaptive control techniques enable the de-coupling of multiple-input, multiple-output control problems into simpler single-input, single-Output control problems. This is achieved by using disturbance accommodation control observers to estimate in real-time the effects of all the terms with the exception of nominal effects of the control terms. This approach is inherently robust because the only knowledge of the plant it requires is the approximate representation of the effects of the control. The specific challenge in this application is that, unlike aircraft applications where actuator responses can be accurately modeled, in helicopter the rotors play the role of actuators, and their responses are subject to considerable uncertainty. Numerical results presented here demonstrate that the proposed approach achieves improved tracking of commanded maneuvers, compared to traditional multi-loop designs.",{"EN":437},"Helicopter hover control using linear adaptive control techniques",{"EN":439},"Helicopters,Adaptive control,Actuators,Velocity control,Computer errors,Robust control,Aircraft,Uncertainty,Tail,Vectors",{"VOID":441},"10.1109\u002FTSMC.1981.4308749\ntournes, 1999, Aircraft Guidance and Control Using Subspace Stabilization Control Techniques, Paper AIAA-99&#x2013;3979 Proceedings of AIAA Guidance Navigation and Control Conference AIAA, 1551\n10.1016\u002F0022-247X(73)90034-6\n10.1002\u002Facs.4480030205\n10.2514\u002F2.4746",{"VOID":443},"10.1109\u002FSSST.2002.1027093","https:\u002F\u002Fieeexplore.ieee.org\u002Fabstract\u002Fdocument\u002F1027093\u002F","https:\u002F\u002Fieeexplore.ieee.org\u002Fstamp\u002Fstamp.jsp?tp=&arnumber=1027093",[447,462],{"id":448,"sortIndex":51,"researcher":10,"roles":449,"affiliations":450,"properties":459,"displayName":461,"givenName":10,"familyName":10},"0e6f3890-dc6a-44ee-aa89-644f946b9a25",[58],[451],{"id":452,"sortIndex":51,"affiliation":453,"properties":10},"bbaf5ec2-51a8-467e-a42f-b41db0fdc499",{"id":452,"createTime":10,"updateTime":10,"relativeEntities":454,"slug":10,"properties":455,"entityType":10,"verifyStatus":10,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":10,"url":10,"parentIds":458,"statistic":10},[],{"title":456},{"VI":457},"Davidson Technologies, Inc., Huntsville, AL, USA",[],{"title":460},{"VI":461},"C. Tournes",{"id":463,"sortIndex":73,"researcher":10,"roles":464,"affiliations":465,"properties":474,"displayName":476,"givenName":10,"familyName":10},"a97fcbba-6910-4aa1-8d45-13007b7f8a29",[58],[466],{"id":467,"sortIndex":51,"affiliation":468,"properties":10},"dec624e8-b5f6-4c1a-8dbc-4d784756b7f0",{"id":467,"createTime":10,"updateTime":10,"relativeEntities":469,"slug":10,"properties":470,"entityType":10,"verifyStatus":10,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":10,"url":10,"parentIds":473,"statistic":10},[],{"title":471},{"EN":472},"University of Alabama, Huntsville, Huntsville, AL, USA",[],{"title":475},{"VI":476},"C.D. Johnson",{"url":444,"publisher":478,"properties":486},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":479,"slug":10,"properties":480,"entityType":16,"verifyStatus":17,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":18,"subjectFields":483,"manageAffiliations":484,"indexDatabases":485,"url":10,"thumbnailPath":10,"statistic":10,"gsStatistic":10,"type":10,"analyzePriority":10},[],{"issn":481,"title":482},{"VOID":13},{"EN":15},[],[],[],{"pages":487},{"VOID":488},"479-483",[],{"id":491,"createTime":492,"updateTime":493,"relativeEntities":494,"slug":495,"properties":496,"entityType":45,"verifyStatus":46,"verifyTime":493,"verifyNote":48,"languages":10,"translateLanguages":10,"viewCount":51,"primaryUrl":507,"fullTextUrl":508,"authors":509,"publicationType":85,"publisherRelationship":542,"citationCount":10,"citationInfo":10,"publishDate":10,"publishYear":10,"citationAnalyzeStatus":17,"lastCitationAnalyze":10,"indexDatabases":554,"openAccess":10,"references":10,"isForceReanalyzing":99},"99ebee4e-0ba6-433c-b2bc-b2725e9df88b","2023-12-21T03:29:17.431+00:00","2025-02-22T20:15:16.096+00:00",[],"Analysis-of-a-linear-variable-reluctance-motor-with-magnetically-coupled-phases",{"abstract":497,"title":499,"keywords":501,"references":503,"doi":505},{"EN":498},"This paper deals with the magnetic modeling of a type of linear variable reluctance motor. The motor under study is a three-phase motor that exhibits strong magnetic coupling between its phases. Two modeling techniques are used: the magnetic circuit analysis is emphasized due to its simplicity and computational efficiency; and the finite element analysis is used primarily to provide accurate benchmark data for comparison. Qualitative agreement between the two modeling techniques is demonstrated.",{"EN":500},"Analysis of a linear variable reluctance motor with magnetically coupled phases",{"EN":502},"Magnetic analysis,Reluctance motors,Couplings,Synchronous motors,Magnetic flux,Magnetic circuits,Permanent magnet motors,Circuit analysis,Finite element methods,Magnetic materials",{"VOID":504},"10.1109\u002F28.370283\n10.1017\u002FCBO9780511529641\nish-shalom, 1985, Commutation and control of step motors, Proceedings of the 14th Annual Symposium on Incremental Motion Control Systems and Devices, 283\n10.1109\u002F28.871284\nchai, 1973, Permeance model and reluctance force between toothed structures, Proceedings of the 2nd Annual Symposium on Incremental Motion Control Systems and Devices, 1k\n10.1109\u002F28.855959\npawletko, 1973, Linear step motors, Proceedings of the 2nd Annual Symposium on Incremental Motion Control Systems and Devices, 1v\n10.1109\u002F28.887208\nnasar, 1987, Linear Electric Motors\npawletko, 1976, Dynamic responses and control aspects of linear stepping motors, Proc 15th Annual Symp Incremental Motion Controls System and Devices, 1p\nlaithwaite, 1987, A History of Linear Electric Motors, 10.1007\u002F978-1-349-08296-4",{"VOID":506},"10.1109\u002FSSST.2002.1027038","https:\u002F\u002Fieeexplore.ieee.org\u002Fabstract\u002Fdocument\u002F1027038\u002F","https:\u002F\u002Fieeexplore.ieee.org\u002Fstamp\u002Fstamp.jsp?tp=&arnumber=1027038",[510,527],{"id":511,"sortIndex":51,"researcher":10,"roles":512,"affiliations":513,"properties":524,"displayName":526,"givenName":10,"familyName":10},"29300dfd-9825-45bf-842b-75985c387c52",[58],[514],{"id":515,"sortIndex":51,"affiliation":516,"properties":522},"0f7ce304-c78c-487b-aeda-8476deacd2d1",{"id":515,"createTime":10,"updateTime":10,"relativeEntities":517,"slug":10,"properties":518,"entityType":10,"verifyStatus":10,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":10,"url":10,"parentIds":521,"statistic":10},[],{"title":519},{"EN":520},"School of Electrical and Computer Engineering, Georgia Institute of Technology, Atlanta, GA, USA",[],{"title":523},{"VI":520},{"title":525},{"VI":526},"D.G. Taylor",{"id":528,"sortIndex":73,"researcher":10,"roles":529,"affiliations":530,"properties":539,"displayName":541,"givenName":10,"familyName":10},"81ca7514-d840-417b-a81f-e4cc6be9cec1",[58],[531],{"id":515,"sortIndex":51,"affiliation":532,"properties":537},{"id":515,"createTime":10,"updateTime":10,"relativeEntities":533,"slug":10,"properties":534,"entityType":10,"verifyStatus":10,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":10,"url":10,"parentIds":536,"statistic":10},[],{"title":535},{"EN":520},[],{"title":538},{"VI":520},{"title":540},{"VI":541},"R. Ahmed",{"url":507,"publisher":543,"properties":551},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":544,"slug":10,"properties":545,"entityType":16,"verifyStatus":17,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":18,"subjectFields":548,"manageAffiliations":549,"indexDatabases":550,"url":10,"thumbnailPath":10,"statistic":10,"gsStatistic":10,"type":10,"analyzePriority":10},[],{"issn":546,"title":547},{"VOID":13},{"EN":15},[],[],[],{"pages":552},{"VOID":553},"219-223",[],{"id":556,"createTime":557,"updateTime":558,"relativeEntities":559,"slug":560,"properties":561,"entityType":45,"verifyStatus":17,"verifyTime":575,"verifyNote":576,"languages":10,"translateLanguages":577,"viewCount":51,"primaryUrl":578,"fullTextUrl":579,"authors":580,"publicationType":85,"publisherRelationship":618,"citationCount":10,"citationInfo":10,"publishDate":10,"publishYear":10,"citationAnalyzeStatus":17,"lastCitationAnalyze":10,"indexDatabases":630,"openAccess":10,"references":10,"isForceReanalyzing":99},"b8a76ba4-5539-416f-a51f-30b00c398fb8","2023-12-21T03:34:05.649+00:00","2025-02-22T19:46:56.891+00:00",[],"Predicting-the-elasto-plastic-response-of-an-arc-weld-process-using-artificial-neural-networks",{"abstract":562,"title":565,"keywords":568,"references":571,"doi":573},{"EN":563,"VI":564},"The quality of a steel arc-welded joint greatly depends on the parameters of the welding process used. Given a particular geometry of the weld, the corresponding welding materials and the restraints used to fix the parts, the feed rate, the speed and the heat input play a significant role in the thermal and elasto-plastic response of the plates. Residual stresses and overall distortions are always of great concern in welding processes and a number of simulation approaches have been developed to assess this behavior. However, these simulations are very computationally intense, making it extremely costly to optimize weld designs. In the paper, a strategically selected set of finite element simulations of a typical welding process are made to train a neural network model, which in turn can be used to effectively predict the weld response at a minimal fraction of the effort required by a standard finite element simulation.","Chất lượng của mối hàn thép hồ quang phụ thuộc rất nhiều vào các thông số của quy trình hàn được sử dụng. Dựa trên một hình học nhất định của mối hàn, các vật liệu hàn tương ứng và các thiết bị cố định các bộ phận, tốc độ cấp nguyên liệu, tốc độ hàn và lượng nhiệt đầu vào đóng một vai trò quan trọng trong phản ứng nhiệt và đàn hồi-plastic của các tấm. Căng thẳng dư và biến dạng tổng thể luôn là mối quan tâm lớn trong các quy trình hàn và nhiều phương pháp mô phỏng đã được phát triển để đánh giá hành vi này. Tuy nhiên, những mô phỏng này rất tốn kém về tính toán, khiến việc tối ưu hóa thiết kế mối hàn trở nên vô cùng tốn kém. Trong bài báo, một tập hợp chiến lược các mô phỏng phần tử hữu hạn của một quy trình hàn điển hình được thực hiện để đào tạo một mô hình mạng nơ-ron, mô hình này có thể được sử dụng để dự đoán hiệu quả phản ứng hàn với một phần nhỏ nỗ lực so với một mô phỏng phần tử hữu hạn tiêu chuẩn.",{"EN":566,"VI":567},"Predicting the elasto-plastic response of an arc-weld process using artificial neural networks","Dự đoán phản ứng đàn hồi-plastic của quy trình hàn hồ quang bằng cách sử dụng mạng nơ-ron nhân tạo",{"EN":569,"VI":570},"Artificial neural networks,Welding,Computational modeling,Predictive models,Finite element methods,Steel,Geometry,Feeds,Residual stresses,Design optimization","Mạng nơ-ron nhân tạo, Hàn, Mô hình tính toán, Mô hình dự đoán, Phương pháp phần tử hữu hạn, Thép, Hình học, Tốc độ cấp, Căng thẳng dư, Tối ưu hóa thiết kế",{"VOID":572},"1976, Welding Handbook?Volume 1 Fundamentals of Welding, 1\n1973, The Procedure Handbook of Arc Welding\ntsai, 1999, Welding Distortion of a Thin-Plate Panel, Welding Journal, 156\npuchaicela, 1998, Control of Distortion of Welded Steel Structures, Welding Journal, 49\n0, ANSYS Finite Element Code Version 5 7\nmandal, 1997, Analysis of Welding Shrinkage, Welding Journal, 233\nmichaleris, 0, Minimizing of Welding Residual Stress and Distortion in Large Structure, 1\n10.1115\u002F1.2900696\nbonifaz, 2000, Finite Element Analysis of Heat Flow in Single-Pass Arc Welds, Welding Research Supplement, 79, 121s\nmichaleris, 1997, Prediction of Welding Distribution, Welding Journal, 76, 172\n10.1115\u002F1.3454296",{"VOID":574},"10.1109\u002FSSST.2002.1027084","2025-01-31T03:10:48.235+00:00","Author affiliation is blank",[50],"https:\u002F\u002Fieeexplore.ieee.org\u002Fabstract\u002Fdocument\u002F1027084\u002F","https:\u002F\u002Fieeexplore.ieee.org\u002Fstamp\u002Fstamp.jsp?tp=&arnumber=1027084",[581,596,611],{"id":582,"sortIndex":51,"researcher":10,"roles":583,"affiliations":584,"properties":593,"displayName":595,"givenName":10,"familyName":10},"8b4ad1a5-5223-40aa-88ea-19ba97c06090",[58],[585],{"id":586,"sortIndex":51,"affiliation":587,"properties":10},"5362fd3e-19f5-4b00-8209-34ce6b8e2619",{"id":586,"createTime":10,"updateTime":10,"relativeEntities":588,"slug":10,"properties":589,"entityType":10,"verifyStatus":10,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":10,"url":10,"parentIds":592,"statistic":10},[],{"title":590},{"VI":591},"Lane Department of Computer Science and Electrical Eng., West Virginia University, Morgantown, WV, USA",[],{"title":594},{"VI":595},"R. Klein",{"id":597,"sortIndex":73,"researcher":10,"roles":598,"affiliations":599,"properties":608,"displayName":610,"givenName":10,"familyName":10},"b4558399-aec8-4b02-b467-46888ac59c68",[58],[600],{"id":601,"sortIndex":51,"affiliation":602,"properties":10},"d4f273a2-5617-4c90-8a3c-544f79ad26ef",{"id":601,"createTime":10,"updateTime":10,"relativeEntities":603,"slug":10,"properties":604,"entityType":10,"verifyStatus":10,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":10,"url":10,"parentIds":607,"statistic":10},[],{"title":605},{"VI":606},"Department of Mecnahical and Aerospace Eng., West Virginia University, Morgantown, WV, USA",[],{"title":609},{"VI":610},"V.H. Mucino",{"id":612,"sortIndex":18,"researcher":10,"roles":613,"affiliations":614,"properties":615,"displayName":617,"givenName":10,"familyName":10},"be48c691-0e7b-4638-b8ab-b9ad2e57b83b",[58],[],{"title":616},{"VI":617},"P. Klinckhachom",{"url":578,"publisher":619,"properties":627},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":620,"slug":10,"properties":621,"entityType":16,"verifyStatus":17,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":18,"subjectFields":624,"manageAffiliations":625,"indexDatabases":626,"url":10,"thumbnailPath":10,"statistic":10,"gsStatistic":10,"type":10,"analyzePriority":10},[],{"issn":622,"title":623},{"VOID":13},{"EN":15},[],[],[],{"pages":628},{"VOID":629},"440-444",[],{"id":632,"createTime":633,"updateTime":634,"relativeEntities":635,"slug":636,"properties":637,"entityType":45,"verifyStatus":46,"verifyTime":651,"verifyNote":48,"languages":10,"translateLanguages":652,"viewCount":51,"primaryUrl":653,"fullTextUrl":654,"authors":655,"publicationType":85,"publisherRelationship":671,"citationCount":10,"citationInfo":10,"publishDate":10,"publishYear":10,"citationAnalyzeStatus":17,"lastCitationAnalyze":10,"indexDatabases":683,"openAccess":10,"references":10,"isForceReanalyzing":99},"a39f32fc-91b9-4661-a66d-31d5fecbb09c","2023-12-21T03:31:21.345+00:00","2025-02-22T19:46:01.250+00:00",[],"Automatic-generation-control-before-and-after-deregulation",{"abstract":638,"title":641,"keywords":644,"references":647,"doi":649},{"EN":639,"VI":640},"This paper addresses and discusses how AGC is formulated before and after deregulation. AGC is among a set of services called ancillary services defined by the Federal Energy Regulatory Commission (FERC). To allow open transmission access and encourage a competitive wholesale electric power market, deregulation was introduced by FERC in 1995 in its Notice of Proposed Rulemaking (NOPR). Before deregulation ancillary services, including AGC, were provided by a single utility company called a control area that owns both transmission and generation systems. This type of utility is known as a Vertically Integrated Utility (VIU). Since the inception of deregulation the concept of VIU is no longer applicable and the power system structure has changed and allowed specialized companies for generation (GenCos), transmission (TransCos), distribution (DisCos), and Independent Contract Administrators (ICA) to emerge. The paper focuses on the formulation and operation of AGC to accommodate this new environment. It also addresses provision of other ancillary services in the deregulated framework.","Bài báo này đề cập và thảo luận về cách thức mà Kiểm soát Phát điện Tự động (AGC) được hình thành trước và sau khi giải phóng thị trường. AGC là một trong số các dịch vụ được gọi là dịch vụ hỗ trợ, được định nghĩa bởi Ủy ban Điều tiết Năng lượng Liên bang Mỹ (FERC). Để cho phép truy cập truyền tải mở và khuyến khích một thị trường điện lực bán buôn cạnh tranh, việc giải phóng thị trường đã được FERC giới thiệu vào năm 1995 trong Thông báo Đề xuất Quy tắc (NOPR). Trước khi giải phóng, các dịch vụ hỗ trợ, bao gồm cả AGC, được cung cấp bởi một công ty tiện ích duy nhất được gọi là khu vực kiểm soát, công ty này sở hữu cả hệ thống truyền tải và phát điện. Loại hình tiện ích này được biết đến với tên gọi Tiện ích Tích hợp Dọc (VIU). Kể từ khi giải phóng thị trường, khái niệm VIU không còn áp dụng và cấu trúc hệ thống điện lực đã thay đổi, cho phép sự xuất hiện của các công ty chuyên biệt trong lĩnh vực phát điện (GenCos), truyền tải (TransCos), phân phối (DisCos) và Các quản lý hợp đồng độc lập (ICA). Bài báo tập trung vào việc hình thành và vận hành AGC để thích ứng với môi trường mới này. Nó cũng đề cập đến việc cung cấp các dịch vụ hỗ trợ khác trong khuôn khổ đã giải phóng.",{"EN":642,"VI":643},"Automatic generation control before and after deregulation","Kiểm soát phát điện tự động trước và sau khi giải phóng thị trường",{"EN":645,"VI":646},"Automatic generation control,Integrated circuit interconnections,Control systems,Power system reliability,Power systems,Power generation,Councils,North America,Power system control,Power industry","Kiểm soát phát điện tự động, Kết nối mạch tích hợp, Hệ thống điều khiển, Độ tin cậy của hệ thống điện, Các hệ thống điện, Sản xuất điện, Hội đồng, Bắc Mỹ, Kiểm soát hệ thống điện, Ngành công nghiệp điện.",{"VOID":648},"10.1109\u002F59.535590\njaleeli, 1996, Control Performance Standards and Procedures for Interconnected Operation, EPRI Report RP 3555&#x2013;10 Final Report\n10.1109\u002F59.589593\njaleeli, 1989, A comprehensive Shakedown of an Automatic Generation Control Process, IEEE Trans on Power Systems, 4, 771, 10.1109\u002F59.193852\n2000, NERC Operating Manual",{"VOID":650},"10.1109\u002FSSST.2002.1027059","2025-02-02T03:42:14.993+00:00",[50],"https:\u002F\u002Fieeexplore.ieee.org\u002Fabstract\u002Fdocument\u002F1027059\u002F","https:\u002F\u002Fieeexplore.ieee.org\u002Fstamp\u002Fstamp.jsp?tp=&arnumber=1027059",[656],{"id":657,"sortIndex":51,"researcher":10,"roles":658,"affiliations":659,"properties":668,"displayName":670,"givenName":10,"familyName":10},"400d135a-71fe-4317-91ee-0a4daeb395c6",[58],[660],{"id":661,"sortIndex":51,"affiliation":662,"properties":10},"3cf3298e-04c4-4a67-a6f8-09e9b893adfc",{"id":661,"createTime":10,"updateTime":10,"relativeEntities":663,"slug":10,"properties":664,"entityType":10,"verifyStatus":10,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":10,"url":10,"parentIds":667,"statistic":10},[],{"title":665},{"VI":666},"Department of Technology, Jacksonville State University, Jacksonville, AL, USA",[],{"title":669},{"VI":670},"N. Bekhouche",{"url":653,"publisher":672,"properties":680},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":673,"slug":10,"properties":674,"entityType":16,"verifyStatus":17,"verifyTime":10,"verifyNote":10,"languages":10,"translateLanguages":10,"viewCount":18,"subjectFields":677,"manageAffiliations":678,"indexDatabases":679,"url":10,"thumbnailPath":10,"statistic":10,"gsStatistic":10,"type":10,"analyzePriority":10},[],{"issn":675,"title":676},{"VOID":13},{"EN":15},[],[],[],{"pages":681},{"VOID":682},"321-323",[]]