5. The bus admittance matrix of a three-bus power system is given by -2 -5 -4 per unit 7 Yus = j|-2 -5 -4 9 with V = 1.020° per unit; V2 = 1.0 per unit; P2 = 60 MW; P3 = -80 MW; Q3 = -60 MVAR (lagging) as a part of the power-flow solution of the system, find V2 and V3 within a tolerance of 0.01 per unit, by using Gauss-Seidel iteration method. Start with 82 = 0, V3 = 1.0 per unit, and 83= 0.

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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5. The bus admittance matrix of a three-bus power system is given by
-2 -5
-4 per unit
7
Ypus = j|-2
-5 -4
9
with V, = 1.00° per unit; V2 = 1.0 per unit; P2 = 60 MW; P3 = -80 MW; Q3 = -60 MVAR (lagging) as a
part of the power-flow solution of the system, find V2 and V3 within a tolerance of 0.01 per unit, by
using Gauss-Seidel iteration method. Start with 82 = 0, V3 = 1.0 per unit, and 83= 0.
Transcribed Image Text:5. The bus admittance matrix of a three-bus power system is given by -2 -5 -4 per unit 7 Ypus = j|-2 -5 -4 9 with V, = 1.00° per unit; V2 = 1.0 per unit; P2 = 60 MW; P3 = -80 MW; Q3 = -60 MVAR (lagging) as a part of the power-flow solution of the system, find V2 and V3 within a tolerance of 0.01 per unit, by using Gauss-Seidel iteration method. Start with 82 = 0, V3 = 1.0 per unit, and 83= 0.
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