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COLLEGE OF SCIENCE
AND TECHNOLOGY
1. The one line diagram of a three phase power system is shown in Fig1. Select
Fig1. One line diagram of power system
15/03/2024 Prepared by MUSABYIMANA JOSEE 1
Power_System_Analysis_Hadi_Saadat_Soluti_Chapter3
COLLEGE OF SCIENCE
AND TECHNOLOGY
15/03/2024 Prepared by MUSABYIMANA JOSEE 2
COLLEGE OF SCIENCE
AND TECHNOLOGY
15/03/2024 Prepared by MUSABYIMANA JOSEE 3
COLLEGE OF SCIENCE
AND TECHNOLOGY
15/03/2024 Prepared by MUSABYIMANA JOSEE 4
COLLEGE OF SCIENCE
AND TECHNOLOGY
15/03/2024 Prepared by MUSABYIMANA JOSEE 5
COLLEGE OF SCIENCE
AND TECHNOLOGY
15/03/2024 Prepared by MUSABYIMANA JOSEE 6
COLLEGE OF SCIENCE
AND TECHNOLOGY
15/03/2024 Prepared by MUSABYIMANA JOSEE 7
COLLEGE OF SCIENCE
AND TECHNOLOGY
2. Draw an impedance diagram for the electric power system shown in
Fig.2 showing all impedances in per unit on a 100-MVA base. Choose
20 kV as the voltage base for generator. The three-phase power and
line-line ratings are given below.
15/03/2024 Prepared by MUSABYIMANA JOSEE 8
COLLEGE OF SCIENCE
AND TECHNOLOGY
The generator and
transformer reactances in
per unit on a 100 MVA base
are:
15/03/2024 Prepared by MUSABYIMANA JOSEE 9
COLLEGE OF SCIENCE
AND TECHNOLOGY
The per unit equivalent circuit
is shown in figure below
15/03/2024 Prepared by MUSABYIMANA JOSEE 10
COLLEGE OF SCIENCE
AND TECHNOLOGY
The one-line diagram of a power system is shown in Fig.3 .The three-phase
power and line-line ratings are given below
15/03/2024 Prepared by MUSABYIMANA JOSEE 11
COLLEGE OF SCIENCE
AND TECHNOLOGY
Power_System_Analysis_Hadi_Saadat_Soluti _page 47_exercises 14
15/03/2024
Prepared by MUSABYIMANA JOSEE
12
3

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ENE3263_Transmission and Distribution of Energy class exercise1.pptx

  • 1. COLLEGE OF SCIENCE AND TECHNOLOGY 1. The one line diagram of a three phase power system is shown in Fig1. Select Fig1. One line diagram of power system 15/03/2024 Prepared by MUSABYIMANA JOSEE 1 Power_System_Analysis_Hadi_Saadat_Soluti_Chapter3
  • 2. COLLEGE OF SCIENCE AND TECHNOLOGY 15/03/2024 Prepared by MUSABYIMANA JOSEE 2
  • 3. COLLEGE OF SCIENCE AND TECHNOLOGY 15/03/2024 Prepared by MUSABYIMANA JOSEE 3
  • 4. COLLEGE OF SCIENCE AND TECHNOLOGY 15/03/2024 Prepared by MUSABYIMANA JOSEE 4
  • 5. COLLEGE OF SCIENCE AND TECHNOLOGY 15/03/2024 Prepared by MUSABYIMANA JOSEE 5
  • 6. COLLEGE OF SCIENCE AND TECHNOLOGY 15/03/2024 Prepared by MUSABYIMANA JOSEE 6
  • 7. COLLEGE OF SCIENCE AND TECHNOLOGY 15/03/2024 Prepared by MUSABYIMANA JOSEE 7
  • 8. COLLEGE OF SCIENCE AND TECHNOLOGY 2. Draw an impedance diagram for the electric power system shown in Fig.2 showing all impedances in per unit on a 100-MVA base. Choose 20 kV as the voltage base for generator. The three-phase power and line-line ratings are given below. 15/03/2024 Prepared by MUSABYIMANA JOSEE 8
  • 9. COLLEGE OF SCIENCE AND TECHNOLOGY The generator and transformer reactances in per unit on a 100 MVA base are: 15/03/2024 Prepared by MUSABYIMANA JOSEE 9
  • 10. COLLEGE OF SCIENCE AND TECHNOLOGY The per unit equivalent circuit is shown in figure below 15/03/2024 Prepared by MUSABYIMANA JOSEE 10
  • 11. COLLEGE OF SCIENCE AND TECHNOLOGY The one-line diagram of a power system is shown in Fig.3 .The three-phase power and line-line ratings are given below 15/03/2024 Prepared by MUSABYIMANA JOSEE 11
  • 12. COLLEGE OF SCIENCE AND TECHNOLOGY Power_System_Analysis_Hadi_Saadat_Soluti _page 47_exercises 14 15/03/2024 Prepared by MUSABYIMANA JOSEE 12 3