Q3. A three-phase, 50 Hz, completely transposed 345 kV, 200 km line has two conductors per bundle and the following line constants: z=0.032+j0.35 Q/km and y=j4.2×10-6 S/km. Full load at receiving end of the line is 700 MW at 0.9 power factor lagging and at 95% of rated voltage. Assuming a medium length transmission line, determine the following: (а) АВCD parameters (b) Sending end voltage Vs, current Is and real Power Ps. (c) Percent voltage regulation (d) Transmission line efficiency at full load.

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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Q3. A three-phase, 50 Hz, completely transposed 345 kV, 200 km line has two conductors per bundle
and the following line constants: z=0.032+j0.35 Q/km and y=j4.2×10-6 S/km. Full load at receiving
end of the line is 700 MW at 0.9 power factor lagging and at 95% of rated voltage. Assuming a
medium length transmission line, determine the following:
(a) ABCD parameters
(b) Sending end voltage Vs, current Is and real Power Ps.
(c) Percent voltage regulation
(d) Transmission line efficiency at full load.
Transcribed Image Text:Q3. A three-phase, 50 Hz, completely transposed 345 kV, 200 km line has two conductors per bundle and the following line constants: z=0.032+j0.35 Q/km and y=j4.2×10-6 S/km. Full load at receiving end of the line is 700 MW at 0.9 power factor lagging and at 95% of rated voltage. Assuming a medium length transmission line, determine the following: (a) ABCD parameters (b) Sending end voltage Vs, current Is and real Power Ps. (c) Percent voltage regulation (d) Transmission line efficiency at full load.
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