In the power system network shown in Figurebelowbus 1 is a slack bus with V = 1.020° per unit and bus 2 is a load bus with S2 = 300 MW + 80 Mvar. The line impedance on a base of 100 MVA is Z = 0.01 + j0.02 per unit. (a) Using Gauss-Seidel method, determine V2. Use an initial estimate of V = 1.0+ j0.0 and perform two iterations. i.e.Deternine (a)V,' and (b)Vz? %3D %3D %3D Z12 0.01+ j0.0 2 %3D 2 S2 300 MW +j80 Mvar

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Power system
In the power system network shown in Figurebelowbus 1 is a slack bus with
V = 1.040° per unit and bus 2 is a load bus with S2
Mvar. The line impedance on a base of 100 MVA is Z = 0.01 + j0.02 per
unit.
300 MW + 80
(a) Using Gauss-Seidel method, determine V2. Use an initial estimate of
1.0+ j0.0 and perform two iterations. i.e.Deternine(a)V2' and (b)Vz?
Z12 0.01+ j0.0 2
S2 300 MW +j80 Mvar
(a) 0.945 - j 0.025 (b) 0.994- j0.0571
(a) 0.965 - j 0.0255 (b) 0.914 - j0.0529
(a) 0.954 - j 0.052 (b) 0.949 - j0.0517
(a) 0.914 - j 0.0152 (b) 0.949 - j0.0517
A Moving to another question will save this response.
Transcribed Image Text:In the power system network shown in Figurebelowbus 1 is a slack bus with V = 1.040° per unit and bus 2 is a load bus with S2 Mvar. The line impedance on a base of 100 MVA is Z = 0.01 + j0.02 per unit. 300 MW + 80 (a) Using Gauss-Seidel method, determine V2. Use an initial estimate of 1.0+ j0.0 and perform two iterations. i.e.Deternine(a)V2' and (b)Vz? Z12 0.01+ j0.0 2 S2 300 MW +j80 Mvar (a) 0.945 - j 0.025 (b) 0.994- j0.0571 (a) 0.965 - j 0.0255 (b) 0.914 - j0.0529 (a) 0.954 - j 0.052 (b) 0.949 - j0.0517 (a) 0.914 - j 0.0152 (b) 0.949 - j0.0517 A Moving to another question will save this response.
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