A 50 Hz synchronous generator having inertia constant H = 9.94 MJ/MVA and a transient reactance of 0.3 p.u. is connected to an infinite bus through a purely reactive circuit as shown in the figure. Reactances are marked on the diagram on a common system base. The generator is delivering real power of 0.6 p.u., 0.8 pf lagging to the infinite bus at a voltage of V= 1p.u. Obtain generated voltage and power angle equation. X=0.3 V= 1.0 X-02 X=0.3 X=0.3

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
Chapter7: Symmetrical Faults
Section: Chapter Questions
Problem 7.3MCQ: The amplitude of the sinusoidal symmetrical ac component of the three-phase short-circuit current of...
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A 50 Hz synchronous generator having inertia constant H = 9.94 MJ/MVA and a transient
reactance of 0.3 p.u. is connected to an infinite bus through a purely reactive circuit as shown in
the figure. Reactances are marked on the diagram on a common system base. The generator is
delivering real power of 0.6 p.u., 0.8 pf lagging to the infinite bus at a voltage of V= 1p.u.
Obtain generated voltage and power angle equation.
X=0.3
V= 1.0
X-02
X=0.3
X=0.3
Transcribed Image Text:A 50 Hz synchronous generator having inertia constant H = 9.94 MJ/MVA and a transient reactance of 0.3 p.u. is connected to an infinite bus through a purely reactive circuit as shown in the figure. Reactances are marked on the diagram on a common system base. The generator is delivering real power of 0.6 p.u., 0.8 pf lagging to the infinite bus at a voltage of V= 1p.u. Obtain generated voltage and power angle equation. X=0.3 V= 1.0 X-02 X=0.3 X=0.3
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