Power System Analysis II

Power System Analysis II(Power System) Bachelor of Engineering(BE) videos According to syllabus of Institute of Engineering(IoE), Tribhuvan University (TU)

Intermediate 0 (0 Review ) 9 Students enrolled
Last updated Mon, 01-Aug-2022 Nepali
What will I learn?
  • "After Completion of this Course, Students will get complete knowledge of Power System Analysis II, based on syllabus of IoE and will be able to secure good score in IoE exam."

Curriculum for this course
32 Lessons 12h 0m
Chapter 1. Interconnected Power System
10 Lessons 2h 52m
  • 1. Inter Connected Power System 12 Minutes Free
  • 2. Active Power and Frequency Balance 11 Minutes Free
  • 3. Reactive Power and Voltage Balance 7 Minutes Free
  • 4. Calculation of Bus Admittance Matrix 30 Minutes Free
  • 5. Important Properties of Bus Admittance Matrix 12 Minutes Free
  • 6. Numerical 1 [Bus Admittance Matrix] 20 Minutes
  • 7. Numerical 2 [Bus Admittance Matrix] 13 Minutes
  • 8. Numerical 3 [Bus Admittance Matrix] 18 Minutes
  • 9. Numerical 4 [Bus Admittance Matrix] 27 Minutes
  • 10. Numerical 5 [Bus Admittance Matrix] 17 Minutes
  • 1. Power Flow Equation 15 Minutes
  • 2. Review of Gauss Seidel Method 9 Minutes
  • 3. Gauss Seidel Method of Load Flow Solution 14 Minutes
  • 4. Numerical 1 [Gauss Seidel Method] 20 Minutes
  • 5. Numerical 2 [Gauss Seidel Method] 28 Minutes
  • 6. Numerical 3 [Gauss Seidel Method] 11 Minutes
  • 7. Numerical 4 [Gauss Seidel Method] 22 Minutes
  • 8. Numerical 5 [Gauss Seidel Method] 38 Minutes
  • 9. Numerical 6 [Gauss Seidel Method] 24 Minutes
  • 10. Numerical 7 [Gauss Seidel Method] 27 Minutes
  • 11. Numerical 8 [Gauss Seidel Method] 44 Minutes
  • 12. Newton Raphson Method 20 Minutes
  • 13. Load Flow Analysis using Newton Raphson Method 34 Minutes
  • 14. Algorithm for Load Flow Analysis using NR Method 11 Minutes
  • 15. Numerical 9 [Newton Raphson Method] 44 Minutes
  • 16. Numerical 10 [Newton Raphson Method] 46 Minutes
  • 17. Numerical 11 [Newton Raphson Method] 54 Minutes
  • 18. Decoupled Load Flow Method 12 Minutes
  • 19. Fast Decoupled Load Flow Method 33 Minutes
  • 20. Numerical 12 [FDLF] 1 Hours
  • 21. Comparison between various Load Flow Analysis 6 Minutes
  • 22. Voltage Control and VAR Compensation 18 Minutes
  • Requirements
    • "Students are required to have knowledge of basic knowledge of Power System Analysis, based on syllabus of IoE "

    The videos herein are strictly based on syllabus of Institute of Engineering Tribhuvan University, Nepal promoting "e-Learning in Nepal" and are made with intention to provide guidance to the "Bachelor in Engineering(BE) appearing students", for securing good results. The course tries to cover all the lessons of Power System Analysis II with the solution of most frequently asked questions in final exam of BE with fundamental theories and numerical solutions. We strongly believe that, viewers will be benefited from these videos and the thirst of curiosity of viewers will be quenched! Feedbacks and suggestion to improve are always welcome and highly appreciated!

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