or the following SLD, take SB = 100 MVA and VB = 250 kV at the load bus to he impedance diagram. (Neglect the magnetizing current and line capacitors). 90 MVA 90 MVA 20 kV 1 210 kV 2 18 kV X = 9% pu (G1 T2 X = 6% pu G2) 120 2 TL 80 MVA 80 MVA (20:210) kV X = 16% pu (210:20) kV X = 20% pu 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
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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Ql'or the tg
For the following SLD, take Sp = 100 MVA and VB = 250 kV at the load bus to draw
the impedance diagram. (Neglect the magnetizing current and line capacitors).
%3D
90 MVA
90 MVA
210 kV
18 kV
X= 6% pu
G)
20 kV
1
T1
X = 9% pu
T2
120 2
TL
80 MVA
(20:210) kV
X = 16% pu
80 MVA
(210:20) kV
X = 20% pu
%3D
Load
(48+j64) MVA
210 kV
Transcribed Image Text:Ql'or the tg For the following SLD, take Sp = 100 MVA and VB = 250 kV at the load bus to draw the impedance diagram. (Neglect the magnetizing current and line capacitors). %3D 90 MVA 90 MVA 210 kV 18 kV X= 6% pu G) 20 kV 1 T1 X = 9% pu T2 120 2 TL 80 MVA (20:210) kV X = 16% pu 80 MVA (210:20) kV X = 20% pu %3D Load (48+j64) MVA 210 kV
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