I. A 200-km, 230-kV, 60-Hz, three-phase line has a series impedance z = 0.08 + j0.48 2/km and a shunt admittance y = j3.33 x 10-6 S/km. At full load, the line delivers 250 MW at 0.99 p.f. lagging and at 220 kV. Using the nominal 7 circuit, calculate: (a) the ABCD parameters, (b) the sending-end voltage and current, and (c) the percent voltage regulation.

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
Chapter4: Transmission Line Parameters
Section: Chapter Questions
Problem 4.10MCQ: Transmission line conductance is usually neglected in power system studies. True False
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I. A 200-km, 230-kV, 60-Hz, three-phase line has a series impedance z = 0.08 +
j0.48 2/km and a shunt admittance y = j3.33 x 10-6 S/km. At full load, the line delivers
250 MW at 0.99 p.f. lagging and at 220 kV. Using the nominal π circuit, calculate: (a) the
ABCD parameters, (b) the sending-end voltage and current, and (c) the percent voltage
regulation.
Transcribed Image Text:I. A 200-km, 230-kV, 60-Hz, three-phase line has a series impedance z = 0.08 + j0.48 2/km and a shunt admittance y = j3.33 x 10-6 S/km. At full load, the line delivers 250 MW at 0.99 p.f. lagging and at 220 kV. Using the nominal π circuit, calculate: (a) the ABCD parameters, (b) the sending-end voltage and current, and (c) the percent voltage regulation.
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