The circuit below shows a simple representation of one phase of a a short line in a power systen with a sending end voltage Vs and receiving end voltage VR- Is O IR VR Z=R+jx Vs If the impedance is dominated by the reactance so that the resistance can be neglected, calculate the real power flow per phase from the sending to the receiving end for the following parameters: Vs = 34.6 kV rms; V₁ = 33.0 kV rms; X =j3.00; load angle = 4⁰ Give you answer in MW with one decimal point but do not include units in your answer

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 5.7P
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The circuit below shows a simple representation of one phase of a a short line in a power systen with a sending end voltage Vs and receiving end voltage VR-
Is
IA
VR
Z=R+jx
Vs
If the impedance is dominated by the reactance so that the resistance can be neglected, calculate the real power flow per phase from the sending to the receiving end for the following parameters:
Vs = 34.6 kV rms; V₁ = 33.0 kV rms; X = 13.00; load angle = 4⁰
Give you answer in MW with one decimal point but do not include units in your answer
Transcribed Image Text:The circuit below shows a simple representation of one phase of a a short line in a power systen with a sending end voltage Vs and receiving end voltage VR- Is IA VR Z=R+jx Vs If the impedance is dominated by the reactance so that the resistance can be neglected, calculate the real power flow per phase from the sending to the receiving end for the following parameters: Vs = 34.6 kV rms; V₁ = 33.0 kV rms; X = 13.00; load angle = 4⁰ Give you answer in MW with one decimal point but do not include units in your answer
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