Q4) A 3-phase, 50 Hz, 100 km long overhead transmission line has the following line constants: Resistance per phase per km = 0.153 2 Inductance per phase per km 1.21 mH Capacitance per phase per km 0.00958 uF %3D The line supplies a load of 20 MW at 0.9 power factor lagging at a line voltage of 132 kV. Calculate: 1- Sending end voltage and current. 2- The voltage regulation of line. 3- Efficiency of transmission.

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
Chapter5: Transmission Lines: Steady-state Operation
Section: Chapter Questions
Problem 5.25P
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Q4) A 3-phase, 50 Hz, 100 km long overhead transmission line has the
following line constants:
Resistance per phase per km = 0.153 2
Inductance per phase per km = 1.21 mH
Capacitance per phase per km 0.00958 µF
The line supplies a load of 20 MW at 0.9 power factor lagging at a line
voltage of 132 kV. Calculate:
1- Sending end voltage and current.
2- The voltage regulation of line.
3- Efficiency of transmission.
Transcribed Image Text:Q4) A 3-phase, 50 Hz, 100 km long overhead transmission line has the following line constants: Resistance per phase per km = 0.153 2 Inductance per phase per km = 1.21 mH Capacitance per phase per km 0.00958 µF The line supplies a load of 20 MW at 0.9 power factor lagging at a line voltage of 132 kV. Calculate: 1- Sending end voltage and current. 2- The voltage regulation of line. 3- Efficiency of transmission.
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