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DTSTART;VALUE=DATE:20230220
DTEND;VALUE=DATE:20230221
DTSTAMP:20260816T184613
CREATED:20230220T170000Z
LAST-MODIFIED:20260722T141335Z
UID:14407-1676851200-1676937599@emtp.dev.agencearobas.ca
SUMMARY:Simulation of power systems with IBR and insulation coordination studies - Australia
DESCRIPTION:Simulation of Large Power Systems with IBR & Insulation Coordination Studies using EMTP\nCourse Outline\nThe course starts at 9:30 a.m. and ends at 4:30 p.m. There is a lunch break of 1 hour at 12:00.  \nLunch is included in the price.  \nThe course is presented using exercises at each step. The students must build cases and study simulation results. The course emphasizes learning through exercises performed by participants.  \nThe participants must provide their own computers and will receive a free 30-day licence of EMTP® with all options and toolboxes. \nProgram\nDay 1\, Monday\, February 20th\n1. Introduction to the program and welcoming remarks \n2. The range of power system problems \n3. Theoretical background on power system transients \n4. Theoretical analysis methods \n5. Introduction to EMTP® \n6. EMTP®numerical methods \n\n Load-flow\n Steady-state\nTime-domain\nFrequency scan\n\n7. EMTP® devices\, signals\, power and control pins \n8. How to create and maintain subcircuits \n9. EMTP® basic models \n10. Visualization of scopes with MPLOT and ScopeView \n11. RLC circuit examples\, Capacitor bank switching example \nDay 2\, Tuesday\, February 21st\n1. Nonlinear devices: modeling in steady-state and time-domain\, accurate iterative solver \n2. Ferroresonance cases \n3. Simulation of control systems\, the library of control devices \n4. Switching devices \n5. Simulating power electronics circuits in EMTP® \n6. Measuring and interfacing devices \n7. User-defined modeling options \n8. Transmission line and cable models \n\nTheory and available models: constant parameter\, wideband\, pi-section\nApplication examples\n\n9. Synchronous and asynchronous machines with controls \n10. Exciters and governors with automatic initialization from load-flow solution \n11. Setup and simulation of a complete 230 kV system\, exercises \n12. Setup and simulation of a complete 500 kV system\, exercises \n13. Interconnecting the 230 kV and 500 kV systems\, exercises \n14. Fast simulation of very large grids in EMTP® \nDay 3\, Wednesday\, February 22nd\n1. Introduction to insulation coordination studies \n\nOrigins and types of overvoltages\nInsulation coordination standards\nDesign approach\n\n2. Slow front overvoltages \n\nTheory\nModeling and simulation\nInterpretation of results\n\n3. Switching analysis cases \n\nLine re-energization\nControlled circuit breaker\n\n4. Transient recovery voltages \n\nDefinitions\, modeling\nStudies with EMTP® RV breaker\n\n5. Current chopping \n\nCurrent chopping of small inductive current\nTransformer de-energization\n\nDay 4\, Thursday\, February 23th\n1. Fast-front overvoltages\, lightning \n\nDefinitions\, standards\nModeling and simulation\nExercises with lightning cases\n\n2. Modeling and simulation of inverter-based resources in EMTP® \n\nEMTP®  Toolbox Renewables\nAvailable options and models\nProtection systems\nFast initialization\nThe WECC models for wind and photovoltaic parks\nTemporary overvoltages (TOVs) during single-phase-to-ground faults\nHarmonic analysis\nTransient immunity assessment\n\nDay 5\, Friday\, February 24th\n1. Modeling and simulation of inverter-based resources in EMTP® \n\nGrid forming inverter model\nIBR model verifications for interconnection applications\nSub-synchronous control interaction (SSCI) analysis tool\nImpact of IBRs on protection systems\n\n2. Integration of renewables energies in large grids\, exercises \n\nSystem study with 10 wind parks\nIntegration of wind parks int0 230 kV and 500 kV systems\nSuperfast simulations with EMTP®  on​ multicore computers\n\n3. Advanced topics \n\nScripting\nDLL\nCIGRE DLL​​​​​​\n\nInstructors\nJean Mahseredjian\, PH.D.\, IEEE Fellow\nCEO PGSTech | Professor Polytechnique Montreal \nJean Mahseredjian is the creator and lead developer of EMTP. Jean Mahseredjian brings with him more than 30 years of research and development experience on power system transients. \nHenry Gras\, M.A.Sc.\nDirector of Operations PGSTech \nHenry Gras is in charge of EMTP developments\, consulting services and sales. He obtained his bachelor’s degree from Ecole Centrale de Lyon in 2011 and his master’s degree in electrical engineering from Polytechnique Montreal in 2013. Aside from analyzing and simulating transients in power systems\, he is well versed in renewable energies\, microgrids\, control\, insulation coordination and protection. \n************** \nhttps://www.emtp.com/events/trainings
URL:https://emtp.dev.agencearobas.ca/event/simulation-of-power-systems-with-ibr-and-insulation-coordination-studies-australia-3/
CATEGORIES:Training
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