ask4. For the T equivalent circuit shown in the figure, form an impedance matrix Z. (Refer to the definition of the voltage equation as follows.) い Voltage equations Z₂ U₁ = 11. kun 2=0 U₁ = 12/2, kun 7₁ = 0 U-21/1, kun 12=0 U-kun ₁ = 0 Ζι= ΙΩ Z₂ = 2i 2 Z3=-30i 2

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
Chapter6: Power Flows
Section: Chapter Questions
Problem 6.61P
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Task4. For the T equivalent circuit shown in the figure, form an impedance matrix Z. (Refer to the definition of
the voltage equation as follows.)
Zz
Voltage equations
=h+mh
U₁ = 11. kun 1=0
U₁ = 12/2. kun 1₁ = 0
U2-21/1, kun /2=0
U-kun =0
Ζι=ΙΩ
Z2=2i2
Z3=-30i 2
U₂
Transcribed Image Text:Task4. For the T equivalent circuit shown in the figure, form an impedance matrix Z. (Refer to the definition of the voltage equation as follows.) Zz Voltage equations =h+mh U₁ = 11. kun 1=0 U₁ = 12/2. kun 1₁ = 0 U2-21/1, kun /2=0 U-kun =0 Ζι=ΙΩ Z2=2i2 Z3=-30i 2 U₂
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