ii. Symmetrical Components, explain this theory. Solve the Ip: and lo symmetrical components of the following unbalanced 3 phase system. 11-200 20° /A 12-100 Z-90° 13-50 245° The following equations may help: IP-(11+al2+ a²13)) Equation In₁=(11 + a²12+ a13)) Equation 10=(11+12+13)) Equation /A /A

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
Chapter5: Transmission Lines: Steady-state Operation
Section: Chapter Questions
Problem 5.25MCQ
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ii.
Symmetrical Components, explain this theory.
Solve the Ip1 and lo symmetrical components of the following unbalanced 3
phase system.
11-200 20°
12-100 Z-90°
/A
10=(11+12+13)) Equation
/A
13-50 245 °
The following equations may help:
Ip₁=(11+a/2+ a²13)) Equation
In₁ = (11 + a²12 + a13)) Equation
/A
Transcribed Image Text:ii. Symmetrical Components, explain this theory. Solve the Ip1 and lo symmetrical components of the following unbalanced 3 phase system. 11-200 20° 12-100 Z-90° /A 10=(11+12+13)) Equation /A 13-50 245 ° The following equations may help: Ip₁=(11+a/2+ a²13)) Equation In₁ = (11 + a²12 + a13)) Equation /A
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