(b) Derive the steady state voltage equations for a compensated metadyne generator shown in Fig.1 A 2kW, 200V, 1500rpm, 2-pole fully compensated metadyne generator has the following parameters: Field self inductance and resistance 30Η, 200Ω Armature self inductance and resistance 0.067, 1 Ω - Field armature mutual inductance 1.2H Calculate for steady state operation, the field current and power gain at rated output. 19-axis १६ Fig. 1 Laxis -

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
Chapter6: Power Flows
Section: Chapter Questions
Problem 6.45P
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(b) Derive the steady state voltage equations for a compensated metadyne
generator shown in Fig.1
A 2kW, 200V, 1500rpm, 2-pole fully compensated metadyne generator has the
following parameters:
Field self inductance and resistance
30Η, 200Ω
Armature self inductance and resistance
0.067, 1 Ω
-
Field armature mutual inductance
1.2H
Calculate for steady state operation, the field current and power gain at rated
output.
19-axis
१६
Fig. 1
Laxis
-
Transcribed Image Text:(b) Derive the steady state voltage equations for a compensated metadyne generator shown in Fig.1 A 2kW, 200V, 1500rpm, 2-pole fully compensated metadyne generator has the following parameters: Field self inductance and resistance 30Η, 200Ω Armature self inductance and resistance 0.067, 1 Ω - Field armature mutual inductance 1.2H Calculate for steady state operation, the field current and power gain at rated output. 19-axis १६ Fig. 1 Laxis -
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