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DTSTART;VALUE=DATE:20200914
DTEND;VALUE=DATE:20200915
DTSTAMP:20260820T161326
CREATED:20200914T160000Z
LAST-MODIFIED:20251127T212739Z
UID:14405-1600041600-1600127999@emtp.dev.agencearobas.ca
SUMMARY:Simulation and Analysis of Large-Scale Power Systems with Renewables
DESCRIPTION:Simulation and Analysis of Large-Scale Power Systems with Renewables \nCourse Overview\nLearn on power system transients and to predict the outcome of transient events on power systems. Learn about EMTP and its unique capabilities for simulating complex power systems from load-flow to time-domain in the same simulation environment. \nThe attendees must bring their own laptop computers on which we will install the EMTP software for the duration of the course. The attendees will also receive a free 30-day limited access to the EMTP software. Prior experience with EMTP is not required. The attendees will master EMTP usage at the end of the course. The course will move from basic level concepts to advanced simulation methods and models. The topics include traditional power systems and power systems with renewable energy systems. Large-scale power system analysis methods in a unified environment are emphasized. \nWho should attend?\nThe course will benefit to engineering personnel familiar with power systems and who need to get more in-depth knowledge on the simulation and analysis of power systems. The course will also benefit to researchers\, professors and engineers with more advanced knowledge on power system transients. \nCourse fee\nFee covers morning and afternoon breaks\, scheduled lunches and course materials. Registered University Students and Professors may receive a discount of 30%. The full amount should be paid before attending the course.\nCancellation Policy:\nIf you cannot attend\, please notify us no later than three weeks before the course begins\, and we will refund your fee. Cancellations received after this date and no-shows will not be refunded. You may enroll a substitute at any time before the course starts. If the course is cancelled by us\, you will be notified at least two weeks before the course and fully refunded for the Course Fee.\nStaying at location: Hotel suggestions will be provided to you on enrollment. Each participant must cover his/her travel and staying costs. \nCourse schedule\nThe duration is 5 days.\nThe course starts at 8:30 and ends at 16:30. Registration is on Monday at 8:00. \n  \nComputer and temporary EMTP license\nTemporary EMTP licenses will be provided to the audience. The participants must bring their own computers. \n\nProgram\nDay 1:  \n\nIntroduction to the program\n\nWelcoming remarks\nThe range of problems and frequencies: lightning\, switching and temporary overvoltages; electromechanical transients\n\n\nTheoretical backgrounds on Power Systems and Transients\n\nTheoretical analysis methods\nWhat you can expect to learn\n\n\nEMTP Numerical methods for the simulation of transients\n\nLoad-flow\, Steady-state\, Automatic initialization\nFrequency scan\nTime-domain\n\n\nIntroduction to EMTP using examples (exercises conducted by participants)\n\nOverview: devices\, pins and signals\, subnetworks\, libraries\nPower and Control devices\nDevice attributes\nBasic scripting techniques\nMPLOT and ScopeView\n\n\nBasic models: switches\, RLC branches\, ideal sources\nCapacitor bank switching example (exercises conducted by participants)\nFerroresonance\nMultiphase power-flow (exercises conducted by participants)\n\nMethodology and setup options\nInitialization IEEE-34 bus distribution test case study\nTechniques for studying large distribution grids\n\n\n\n  \nDay 2: \n\nSimulation of control systems\n\nBlock diagrams\, initialization\nMeasuring and interfacing devices\nUser-defined modeling\n\n\nSwitching device models\n\nSimulation of power electronics devices\nPower converters and switching devices\n\n\nTransmission/Distribution line and cable models\n\nTheory and available models\nPI-section\, Constant Parameter model\, Frequency dependent models\nCorona model\nApplication examples: various switching phenomena (exercises conducted by participants)\n\n\nSynchronous and asynchronous machine models and related controls\n\nCase setup\, controls and automatic initialization\nExciters and Governors with automatic initialization from load-flow solution\nStartup from 0 Hz option\n\n\nStudying complete systems with high-level modules and efficiency (exercises conducted by participants)\n\nEasy transition from load-flow to steady-state to time-domain\nSwitching transients\nTemporary overvoltages\nTRV study tool\n\n\n\nDay 3:\n\nAnalysis of a 500 kV and 230 kV grids (long exercises conducted by participants)\n\nComplete system setup\nLoad-flow solution\, automatic initialization\nElectromechanical and electromagnetic studies\n\n\nSimulation of large grids with conventional generation\n\nT0-grid case\nFast computation\n\n\nUsage of frequency dependent network equivalents\nProtection systems\n\nLibrary of protection devices\nIntegration of line protection relays into 500 kV system\nOvercurrent protection\nDistance protection\nPower swing\n\n\n\nDay 4:\n\nWind park models\n\nDetailed and average value versions\nControl and Protection systems\nInitialization\nValidation\n\n\nPhotovoltaic (PV) models\n\nDetailed and average value versions\nControl and Protection systems\nInitialization\n\n\nIntegration of renewables in large scale grids\n\nPV and Wind park integration\nSubsynchronous control interaction studies in realistic systems using impedance scanning techniques\n\n\nAdvanced topics\n\nFault location in complex networks based on Electromagnetic Time Reversal\nVarious demonstrations\nUser-defined modeling methods\nAdvanced programming with EMTP using scripts and various other methods\nDLL based models\n\n\n\nDay 5: Real-time simulations (Optional and included in the course fee)\n\n Introduction to OPAL-RT real-time solutions\n\nIntroduction to HYPERSIM and OPAL-RT real-time suits\nCompatibility between EMTP and HYPERSIM\nAdvantages of real-time simulation\n\n\nSimulating distributed energy resources (DER) models in real-time simulation\n\nModeling photovoltaics (PVs)\, battery energy storage systems (BESS) and wind turbines (WTs)\nDesign of power electronics models with FPGA-based Power Electronics (eHS)\n\n\nCyber Physical Simulation (CPS) to ensure security of electric power grids\n\nChallenges of cyber security testing in Industrial Control Systems (ICS) for power grids\nDemonstration of a simulated cyber attack\n\n\nHardware-in-the-Loop (HIL) testing for power system protection\n\nIEC 61850: Standard for communications in substations\nProtection relay testing\n\n\n\nContact for training information\nFrédérique PEYRET | Marketing Manager\, EMTP Alliance \nEmail: marketing@emtp-software.com \nJean MAHSEREDJIAN\, Ph.D\, IEEE Fellow | Lead developer of EMTP \nEmail: jean@emtp.com \nGeneral conditions\nParticipants will have to pay 100% in advance before the course. \nAdvance payment is required by credit card or by Bank wire Transfer. \nIn case you cannot attend the training after having registered\, please contact us as soon as possible at marketing@emtp-software.com \nUnder no circumstances the participants may request reimbursement of accommodation and travel expenditures.\nWe recommend you to make your travel arrangements once the training is confirmed. \n************** \nhttps://www.emtp.com/events/trainings
URL:https://emtp.dev.agencearobas.ca/event/simulation-and-analysis-of-large-scale-power-systems-with-renewables/
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