A 500-kV 60-Hz three phase transmission line is 463 km long. The series impedance is z =0.06+j0.4 2 per plhase per km and the shunt admittance is y=js 10 Siemens per phase per km. If the T.L. compensated with a series compensation factor of 60%; The compensated value of constant B in 2 is; A 23.93492 j6141012 O R.2525773-j113.17002 O C23.93492+63.05183 O D 25.25773-j114AA3530

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
Chapter2: Fundamentals
Section: Chapter Questions
Problem 2.18P: Let a series RLC network be connected to a source voltage V, drawing a current I. (a) In terms of...
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A 500-kV 60-Hz three phase transmission line is 463 km long. The series impedance is
z=0.06+j0.4 2 per phase per km and the shunt admittance is y=js*106 Siemens per phase
per km. If the T.L. compensated with a series compensation factor of 60%; The compensated
value of constant B in 2 is;
O A 23.93492 j6141012
O B. 25.25773-j113.17002
O C23.93492+j63.05183
O D. 25.25773+j114.43530
Transcribed Image Text:A 500-kV 60-Hz three phase transmission line is 463 km long. The series impedance is z=0.06+j0.4 2 per phase per km and the shunt admittance is y=js*106 Siemens per phase per km. If the T.L. compensated with a series compensation factor of 60%; The compensated value of constant B in 2 is; O A 23.93492 j6141012 O B. 25.25773-j113.17002 O C23.93492+j63.05183 O D. 25.25773+j114.43530
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