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IECON Proceedings (Industrial Electronics Conference)(3)
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12th IEEE International Conference on Communication Systems 2010, ICCS 2010(1)
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scopus(14)
Analysis and experimental validation of the output voltage and input current performances in three phase PWM boost rectifiers under unbalanced and distorted supply voltage conditions
Conference ObjectAbstract: This paper analyzes the dc output voltage and line side currents of the three phase PWM boost rectifPalabras claves:Autores:Sanjib Kumar Panda, Wu X.H., Xu J.X.Fuentes:scopusAnalysis of the instantaneous power flow for three-phase PWM boost rectifier under unbalanced supply voltage conditions
ArticleAbstract: This paper proposes the analysis of the instantaneous power flow of three-phase pulse-width modulatiPalabras claves:Instantaneous power flow, Three-phase pulse-width modulation (PWM) boost rectifierAutores:Sanjib Kumar Panda, Wu X.H., Xu J.X.Fuentes:scopusDevelopment of a new mathematical model of three phase PWM boost rectifier under unbalanced supply voltage operating conditions
Conference ObjectAbstract: This paper proposes a new mathematical model of the three-phase PWM boost rectifier in the positivePalabras claves:Autores:Sanjib Kumar Panda, Wu X.H., Xu J.X.Fuentes:scopusDC link voltage and supply-side current harmonics minimization of three phase PWM boost rectifiers using frequency domain based repetitive current controllers
ArticleAbstract: This paper presents a digital plug-in frequency domain based repetitive control scheme for minimizinPalabras claves:AC-DC power conversion, Pulsewidth modulated power converters, rectifiers, Repetitive controlAutores:Sanjib Kumar Panda, Wu X.H., Xu J.X.Fuentes:scopusDesign of a plug-in frequency domain based repetitive current controller for three phase PWM boost recti er under distorted and unbalanced supply voltages
Conference ObjectAbstract: This paper presents a dual frame control scheme with a digital plug-in frequency domain based repetiPalabras claves:Frequency domain based repetitive controller, modelling, Nonlinear system control, power convertersAutores:Sanjib Kumar Panda, Wu X.H., Xu J.X.Fuentes:scopusDesign of a plug-in repetitive control scheme for eliminating supply-side current harmonics of three-phase pwm boost rectifiers under generalized supply voltage conditions
ArticleAbstract: This paper presents a digital repetitive control (RC) scheme to minimize the even-order harmonics atPalabras claves:AC-DC power conversion, pulsewidth-modulated (PWM) power converters, rectifiers, repetitive control (RC)Autores:Sanjib Kumar Panda, Wu X.H., Xu J.X.Fuentes:scopusFrequency domain based repetitive control of three phase boost PWM rectifier under distorted supply
Conference ObjectAbstract: This paper presents a digital plug-in frequency domain based repetitive control scheme for minimizinPalabras claves:Control system design, Modeling, operation and control of power systemsAutores:Sanjib Kumar Panda, Wu X.H., Xu J.X.Fuentes:scopusEffect of pulse-width modulation schemes on the performance of three-phase voltage source converter
Conference ObjectAbstract: This paper investigates the direct effect of different pulse-width modulation schemes on the performPalabras claves:Autores:Sanjib Kumar Panda, Wu X.H., Xu J.X.Fuentes:scopusDual frame cascaded controller design for three phase PWM boost rectifier under generalized supply voltage conditions using singular perturbation method
Conference ObjectAbstract: This paper proposes the design of a dual frame cascaded PI controller for the three phase PWM boostPalabras claves:modelling, Nonlinear system control, power converters, Singular perturbation methodAutores:Sanjib Kumar Panda, Wu X.H., Xu J.X., Yurkevich Valery D.Fuentes:scopusDual frame control scheme with a plug-in frequency domain based repetitive controller for three phase PWM boost rectifier under distorted and unbalanced supply voltages
Conference ObjectAbstract: This paper presents a dual frame control scheme with a digital plug-in frequency domain based repetiPalabras claves:Autores:Sanjib Kumar Panda, Wu X.H., Xu J.X.Fuentes:scopus