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LEADER 00000cam  2200529Ii 4500 
001    1085206397 
003    OCoLC 
005    20210521140931.7 
006    m     o  d         
007    cr cn||||||||| 
008    181217t20182019enka    ob    001 0 eng d 
020    9781785615009|q(electronic bk.) 
020    1785615009|q(electronic bk.) 
020    9781523124282|q(electronic bk.) 
020    1523124288|q(electronic bk.) 
020    |z9781785614996 
020    |z1785614991 
035    (OCoLC)1085206397 
040    UAB|beng|erda|epn|cUAB|dOCLCO|dCUS|dOCLCF|dCUV|dCDN|dYDX
       |dUKAHL|dUIU|dOCLCQ|dKNOVL|dN$T|dUKUOP 
049    MAIN 
050  4 TK1001|b.W38 2018eb 
082 04 621.31921 
100 1  Watson, N. R.,|eauthor. 
245 10 Power systems electromagnetic transients simulation /
       |cNeville Watson and Jos Arrillaga. 
250    2nd edition. 
264  1 Stevenage :|bThe Institution of Engineering and Technology,
       |c2018. 
264  4 |cĀ©2019 
300    1 online resource (xxxii, 493 pages) :|billustrations 
       (black and white) 
336    text|btxt|2rdacontent 
337    computer|bc|2rdamedia 
338    online resource|bcr|2rdacarrier 
504    Includes bibliographical references and index. 
505 0  Definitions objectives and background -- Analysis of 
       continuous and discrete systems -- State variable analysis
       -- Numerical integrator substitution -- The root-matching 
       method -- Transmission lines and cables -- Transformers 
       and rotating plant -- Control and protection -- Power 
       electronic systems -- Frequency-dependent network 
       equivalents -- Steady-state assessment -- Mixed time-frame
       simulation -- Transient simulation in real-time -- 
       Applications -- Appendix A : System identification 
       techniques -- Appendix B : Numerical integration -- 
       Appendix C : Test systems data -- Appendix D : Developing 
       difference equations -- Appendix E : MATLABĀ® code 
       examples. 
520    The book studies power systems electromagnetic transients 
       simulation by presenting cohesive technical information to
       help students and professional engineers to understand the
       topic better and minimise the effort normally required to 
       become effective users of the EMT programs. Basic 
       knowledge of power system theory, matrix analysis and 
       numerical techniques is presumed, but many references are 
       given to help the readers to fill the gaps in their 
       understanding of the relevant material. 
588 0  Online resource; title from PDF title page (IET, viewed 
       March 4, 2019). 
650  0 Electric power systems. 
650  0 Transients (Electricity)|xComputer simulation. 
650  7 Electric power systems.|2fast|0(OCoLC)fst00905529 
650  7 Transients (Electricity)|xComputer simulation.|2fast
       |0(OCoLC)fst01154693 
650  7 electromagnetic interference.|2inspect 
650  7 power system simulation.|2inspect 
650  7 power system transients.|2inspect 
700 1  Arrillaga, J.,|eauthor. 
956 40 |uhttp://proxy.opal-libraries.org/login?url=https://
       search.ebscohost.com/login.aspx?direct=true&scope=site&
       db=nlebk&AN=2098798|zView online (all OPAL libraries) 
990    eBooks on EBSCOhost|bEBSCO eBook Subscription Academic 
       Collection - North America|c2021-05-21|yAdded to 
       collection netlibrary.academicna - Removed from collection
       netlibrary.academicna|5OHN 
990    eBooks on EBSCOhost|bEBSCO eBook Subscription Academic 
       Collection - North America|c2020-07-17|yAdded to 
       collection netlibrary.academicna|5OHN 

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