2018
DOI: 10.20944/preprints201802.0058.v1
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Direct Flux Control for Stand-Alone Operation Brushless Doubly Fed Induction Generator Using Resonant-Based Sliding-Mode Control Approach

Abstract: Abstract:In this paper, a novel voltage control strategy of stand-alone operation brushless doubly 9 fed induction generator for variable speed constant frequency wind energy conversion systems 10 was presented and discussed particularly. Based on the model of the generator power system, the 11 proposed direct flux control strategy employs a nonlinear reduced-order generalized integrator 12 based resonant sliding-mode control scheme to directly calculate and regulated the output value of 13 converter which con… Show more

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Cited by 1 publication
(1 citation statement)
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“…The testing of modelling of the system on Matlab suggested that the control technique was effective. Ji et al [6] put forward a voltage control strategy for stand-alone operation brushless double-fed induction generators in variable speed constant frequency wind power system. The proposed direct flux control strategy employs a nonlinear reduced-order generalized integratorbased resonant sliding-mode control approach to directly calculate and regulate the output value of converter which the control winding stator requires so as to eliminate its instantaneous errors, without involving any synchronous rotating coordinate transformations.…”
Section: Introductionmentioning
confidence: 99%
“…The testing of modelling of the system on Matlab suggested that the control technique was effective. Ji et al [6] put forward a voltage control strategy for stand-alone operation brushless double-fed induction generators in variable speed constant frequency wind power system. The proposed direct flux control strategy employs a nonlinear reduced-order generalized integratorbased resonant sliding-mode control approach to directly calculate and regulate the output value of converter which the control winding stator requires so as to eliminate its instantaneous errors, without involving any synchronous rotating coordinate transformations.…”
Section: Introductionmentioning
confidence: 99%