In the 2-Bus power system network shown in Fig. 3, the line impedance in Ohms is z= 0.02 + j0.45 The loads are shown on the figure: (i) Find the Y-BUS matrix. (ii) Write the equations to solve for the voltages. (iii) Using Gauss iteration starting with V₂0)=1/0, compute the Voltage on bus 2. Do only 1 iteration. KAKO ₂π Fig.3 (2) 52(0.3+0.5)

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
Chapter12: Power System Controls
Section: Chapter Questions
Problem 12.18P
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1
In the 2-Bus power system network shown in Fig. 3, the line impedance in Ohms is
z= 0.02 + j0.45 The loads are shown on the figure:
(i) Find the Y-BUS matrix.
KAKO
$5,
(ii) Write the equations to solve for the voltages.
5₂(0.3+0.5)
(iii) Using Gauss iteration starting with V₂0)=1/0, compute the Voltage on bus 2. Do only 1 iteration.
π
Fig.3
2
Transcribed Image Text:1 In the 2-Bus power system network shown in Fig. 3, the line impedance in Ohms is z= 0.02 + j0.45 The loads are shown on the figure: (i) Find the Y-BUS matrix. KAKO $5, (ii) Write the equations to solve for the voltages. 5₂(0.3+0.5) (iii) Using Gauss iteration starting with V₂0)=1/0, compute the Voltage on bus 2. Do only 1 iteration. π Fig.3 2
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