Draw the per-unit reactance diagram of the system shown in Figure Q1. Assumed base values are 100 MVA and 100 kV at the transmission line. G150 MVA, 12.2 kV, 20 MVA, 13.8 kV, G2 T₁ T₂ x2 = 0.10 pu 80 MVA, 12.2/132 kV, XT1 = 0.10 pu 40 MVA, 13.8/132 kV, xr2 = 0.10 pu Load 50 MVA, 0.80 pf lagging operating at 124 kV. T₁ 1 (4 + j16) Ω Xg1 = 0.10 pu xg1 G₂₁ (2+j8) 2 Ω 3 (2+j8) 2 Ω Load 2 (G₂)
Draw the per-unit reactance diagram of the system shown in Figure Q1. Assumed base values are 100 MVA and 100 kV at the transmission line. G150 MVA, 12.2 kV, 20 MVA, 13.8 kV, G2 T₁ T₂ x2 = 0.10 pu 80 MVA, 12.2/132 kV, XT1 = 0.10 pu 40 MVA, 13.8/132 kV, xr2 = 0.10 pu Load 50 MVA, 0.80 pf lagging operating at 124 kV. T₁ 1 (4 + j16) Ω Xg1 = 0.10 pu xg1 G₂₁ (2+j8) 2 Ω 3 (2+j8) 2 Ω Load 2 (G₂)
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 2.7MCQ
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The subject EE463
Power Systems analysis
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