DocumentCode
1426094
Title
Comparison Between Voltage Control Structures of Synchronous Machines
Author
Mota, D.S. ; Goldemberg, C.
Author_Institution
Voith Hydro A/S, Trondheim, Norway
Volume
8
Issue
6
fYear
2010
Firstpage
631
Lastpage
636
Abstract
This paper compares the behaviour of two different control structures of automatic voltage regulators of synchronous machines equipped with static excitation systems. These systems have a fully controlled thyristor bridge that supplies DC current to the rotor winding. The rectifier bridge is fed by the stator terminals through a step-down transformer. The first control structure, named “Direct Control”, has a single proportional-integral (PI) regulator that compares stator voltage setpoint with measured voltage and acts directly on the thyristor bridge´s firing angle. This control structure is usually employed in commercial excitation systems for hydrogenerators. The second structure, named “Cascade Control”, was inspired on control loops of commercial DC motor drives. Such drives employ two PIs in a cascade arrangement, the external PI deals with the motor speed while the internal one regulates the armature current. In the adaptation proposed, the external PI compares setpoint with the actual stator voltage and produces the setpoint to the internal PI-loop which controls the field current.
Keywords
PI control; cascade control; rectifiers; synchronous machines; thyristors; voltage control; voltage regulators; DC motor drives; automatic voltage regulators; cascade control; direct control; hydrogenerators; proportional integral regulator; rectifier bridge; rotor winding; static excitation systems; step down transformer; synchronous machines; thyristor bridge; voltage control structures; Bridge circuits; Computational modeling; Integrated circuit modeling; Stator windings; Voltage control; Voltage measurement; AC generator excitation; Voltage control; synchronous generators;
fLanguage
English
Journal_Title
Latin America Transactions, IEEE (Revista IEEE America Latina)
Publisher
ieee
ISSN
1548-0992
Type
jour
DOI
10.1109/TLA.2010.5688088
Filename
5688088
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