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Microprocessor-based control of an SVC for optimal load compensation

An open-loop control strategy for optimal compensation of arbitrary loads by means of thyristor-controlled reactors (TCRs) is presented. Real-time implementation of this technique on a microprocessor-based working prototype is described. Simulation and experimental results show that, using the propo...

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Main Authors: Exposito, A.G., Vasquez, F.G., Mitchell, C.I., Garcia, T.G., Madronal, F.d.P.
Format: Conference Proceeding
Language:English
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creator Exposito, A.G.
Vasquez, F.G.
Mitchell, C.I.
Garcia, T.G.
Madronal, F.d.P.
description An open-loop control strategy for optimal compensation of arbitrary loads by means of thyristor-controlled reactors (TCRs) is presented. Real-time implementation of this technique on a microprocessor-based working prototype is described. Simulation and experimental results show that, using the proposed scheme, abrupt load changes are always compensated within the next cycle.< >
doi_str_mv 10.1109/TDC.1991.169619
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identifier ISBN: 0780302192
ispartof Proceedings of the 1991 IEEE Power Engineering Society Transmission and Distribution Conference, 1991, p.965-971
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source IEEE Electronic Library (IEL) Conference Proceedings
subjects Capacitors
Control systems
Current measurement
Inductors
Load management
Open loop systems
Optimal control
Reactive power
Static VAr compensators
Voltage control
title Microprocessor-based control of an SVC for optimal load compensation
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