Q4. A 60-Hz, 100-km, three-phase overhead transmission line, constructed of ACSR con- ductors, has a series impedance of (0.1826 +j0.784) 2/km per phase and a shunt ca- pacitive reactance-to-neutral of 185.5 x 103/-90° 2-km per phase. Using the nomi- nal circuit for a medium-length transmission line, (a) determine the total series impedance and shunt admittance of the line. (b) Compute the voltage, the current, and the real and reactive power at the sending end if the load at the receiving end draws 200 MVA at unity power factor and at a line-to-line voltage of 230 kV. (c) Find the percent voltage regulation of the line.

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 4.13P: A single-phase overhead transmission line consists of two solid aluminum conductors having a radius...
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Q4.
A 60-Hz, 100-km, three-phase overhead transmission line, constructed of ACSR con-
ductors, has a series impedance of (0.1826+j0.784) 22/km per phase and a shunt ca-
pacitive reactance-to-neutral of 185.5 × 10³/-90° 2-km per phase. Using the nomi-
nal circuit for a medium-length transmission line, (a) determine the total series
impedance and shunt admittance of the line. (b) Compute the voltage, the current,
and the real and reactive power at the sending end if the load at the receiving end
draws 200 MVA at unity power factor and at a line-to-line voltage of 230 kV. (c) Find
the percent voltage regulation of the line.
Transcribed Image Text:Q4. A 60-Hz, 100-km, three-phase overhead transmission line, constructed of ACSR con- ductors, has a series impedance of (0.1826+j0.784) 22/km per phase and a shunt ca- pacitive reactance-to-neutral of 185.5 × 10³/-90° 2-km per phase. Using the nomi- nal circuit for a medium-length transmission line, (a) determine the total series impedance and shunt admittance of the line. (b) Compute the voltage, the current, and the real and reactive power at the sending end if the load at the receiving end draws 200 MVA at unity power factor and at a line-to-line voltage of 230 kV. (c) Find the percent voltage regulation of the line.
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