COURSE OVERVIEW
EE0571 : Electrical Power Systems Coordination
OVERVIEW
COURSE TITLE | : | EE0571 : Electrical Power Systems Coordination |
COURSE DATE | : | Dec 22 - Dec 26 2024 |
DURATION | : | 5 Days |
INSTRUCTOR | : | - |
VENUE | : | Al Khobar, KSA |
COURSE FEE | : | $ 5500 |
Register For Course Outline |
OTHER SCHEDULED DATES
Date | : | Jul 07 - Jul 11 2024 (5 Days) | Location | : | Doha, Qatar | Classroom Fee (US$) | : | $ 6000 | Course Info |
Date | : | Oct 06 - Oct 10 2024 (5 Days) | Location | : | Doha, Qatar | Classroom Fee (US$) | : | $ 5500 | Course Info |
Course Description
This course is designed to provide participants with a detailed and up-to-date overview of Electrical Power Systems Coordination. It covers the power system components, architecture, and flow of electricity; the principles of power system operation and the concept of coordination in power systems; the protection devices and their roles in power systems; the different types of faults and their impacts on power systems; the system reliability through effective coordination; the principles and applications of overcurrent protection in power systems; and the coordination of protective devices, time-current curves (TCC), short circuit analysis for coordination and relay settings and coordination.
During this interactive course, participants will learn the differential protection in transformers, generators and motors; the role of distance protection in transmission lines and its coordination; the pilot protection schemes, voltage and frequency protection and coordination in distributed generation systems; the types of stability in power systems and the impact of renewable energy sources on coordination; the coordination issues and solutions in smart grid environments; the techniques for achieving protection and coordination over large geographical areas; the coordinating protection in microgrid systems and steps in
planning power system protection and coordination; implementing and updating coordination plans and testing and commissioning protective schemes to ensure proper coordination; and the regulatory framework and standards affecting power system coordination.
link to course overview PDF
During this interactive course, participants will learn the differential protection in transformers, generators and motors; the role of distance protection in transmission lines and its coordination; the pilot protection schemes, voltage and frequency protection and coordination in distributed generation systems; the types of stability in power systems and the impact of renewable energy sources on coordination; the coordination issues and solutions in smart grid environments; the techniques for achieving protection and coordination over large geographical areas; the coordinating protection in microgrid systems and steps in
planning power system protection and coordination; implementing and updating coordination plans and testing and commissioning protective schemes to ensure proper coordination; and the regulatory framework and standards affecting power system coordination.
TRAINING METHODOLOGY
This interactive training course includes the following training methodologies:
LecturesWorkshops & Work Presentations
Case Studies & Practical Exercises
Videos, Software & Simulators
In an unlikely event, the course instructor may modify the above training methodology for technical reasons.
VIRTUAL TRAINING (IF APPLICABLE)
If this course is delivered online as a Virtual Training, the following limitations will be applicable:
Certificates | : | Only soft copy certificates will be issued |
Training Materials | : | Only soft copy materials will be issued |
Training Methodology | : | 80% theory, 20% practical |
Training Program | : | 4 hours per day, from 09:30 to 13:30 |
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