d) An 11kV/41 V, 3-phase transformer supplies a 20hp, 415V 3-phase motor with rated voltage and current via supply lines each with impedance 0.4 + j1.10. The efficiency and power factor for the motor are 90% and 0.8 lagging respectively. Using a single-line diagram for the system, calculate the per-unit value of impedance for the line and the per-unit value of motor and transformer secondary voltage.

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter3: Power Transformers
Section: Chapter Questions
Problem 3.46P: The motors M1andM2 of Problem 3.45 have inputs of 120 and 60 MW, respectively, at 13.2 kV, and both...
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d) An 11kV/41 V, 3-phase transformer supplies a 20hp, 415V 3-phase motor with rated voltage
and current via supply lines each with impedance 0.4 + j1.10. The efficiency and power factor
for the motor are 90% and 0.8 lagging respectively. Using a single-line diagram for the system,
calculate the per-unit value of impedance for the line and the per-unit value of motor and
transformer secondary voltage.
Transcribed Image Text:d) An 11kV/41 V, 3-phase transformer supplies a 20hp, 415V 3-phase motor with rated voltage and current via supply lines each with impedance 0.4 + j1.10. The efficiency and power factor for the motor are 90% and 0.8 lagging respectively. Using a single-line diagram for the system, calculate the per-unit value of impedance for the line and the per-unit value of motor and transformer secondary voltage.
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