Engage in real-time projects and simulations to apply ETAP knowledge practically with hand-ons training
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✱ Introduction and Core Concepts
Begin with an introduction to power system analysis and the critical role of ETAP in modern electrical engineering. Cover Load Flow Analysis with standards like IEEE 3002-2 and IEEE 399.
✱ Detailed System Modeling
Dive into modeling of buses, grids, transmission lines including equivalents and the Ferranti effect. Explore transformer modeling, including different windings and the impact of transformers on system stability.
✱ Advanced Simulation Techniques
Learn hands-on with simulations covering generator control modes, capability curves, and contingency analysis. Address the modeling of ZIP loads, VFDs, wind turbines, and solar inverters for comprehensive system studies.
✱ Load Flow Analysis
Introduction to Load Flow Analysis: Key Concepts and Application with IEEE 3002-2 and IEEE 399 Standards.
Detailed Modeling and Simulation: Bus, grid, and transmission line modeling, including the Ferranti effect and surge impedance loading.
Practical Applications: Hands-on exercises with ETAP to perform accurate load flow studies and system optimizations.
✱ Short Circuit Analysis
Types of Faults and Analysis Methods: Understanding symmetrical and asymmetrical faults, IEC 60909 standards, and the significance of the X/R ratio.
Advanced Fault Studies: Short circuit current analysis for various faults, impact of transformer winding configurations, and system stability evaluations.
✱ Motor Acceleration Studies
Motor Starting and Control: Various motor starting methods, including star-delta, soft starters, and VFD applications.
Dynamic Motor Starting Study: NEMA design motors, static and dynamic motor starting analysis using ETAP.
✱ Relay Coordination Studies
Protection in Power Systems: Introduction to MCB, MCCB, ACB, and relay settings for LV, MV, and HV systems.
Protection Setting Calculations and Coordination: Detailed setting calculations for release, overcurrent and earth fault relays, including sensitive earth fault protection.
✱ Arc Flash Studies
Arc Flash Risk Assessment and Mitigation: Understanding IEEE 1584-2018 requirements, performing incident energy calculations, and methods to reduce incident energy.
Safety Standards and Compliance: NFPA 70E standards, PPE selection, and arc flash label creation.
✱ Harmonic Analysis
Harmonics and Power Quality Issues: Introduction to THD, TDD, and IEEE 519 voltage and current distortion limits.
Modeling and Mitigation of Harmonic Loads: Impact of capacitive banks, WTG, VFD, and other harmonic sources. Design of passive filters for harmonic control.
✱ Transient Stability Studies
Fundamentals of Transient Stability: Critical clearing time, swing equation, and the significance of inertia in system stability.
Advanced Modeling for Stability Studies: Multi-machine modeling, including AVR and governor settings, grid islanding scenarios, and system response to load variations.
Exceptional training experience! I recently attended a course with Power Projects, and I couldn't be more impressed. The trainers demonstrated deep knowledge, engaging teaching methods, and a genuine commitment to our learning. The power system studies using ETAP course content was well-structured, relevant, and delivered with enthusiasm. I highly recommend Power Projects to anyone seeking quality training – they truly exceed expectations!
Power Projects is recommended to the people who are all passion in studying. All your efforts will be acknowledged and appreciated. Also all the assignments submitted by participants will be reviewed carefully and constructive comments will be given. If you take one course and if you are interested to learn other courses after completing the first course, you will get many offers in other courses too.
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