TY - JOUR
T1 - Modeling and Control Strategy for a Single-phase PWM Rectifier using a Single-phase Instantaneous Active/Reactive Power Theory
AU - Saito, Makoto
AU - Matsui, Nobuyuki
PY - 2003/12/1
Y1 - 2003/12/1
N2 - This paper deals with a fast dc voltage control strategy for a single-phase PWM rectifier. The PWM rectifier must control the active and reactive powers for regulating the dc voltage. Then, in this paper, a single-phase instantaneous active / reactive power theory (the ps-qs theory) is applied to a control strategy of a single-phase PWM rectifier. In addition, the stability of a single-phase PWM rectifier is analyzed, and a novel circuit topology and control strategy using a dc active filter is proposed. Some significant characteristics on our proposal are verified by using a 100V/1.8kVA experimental system.
AB - This paper deals with a fast dc voltage control strategy for a single-phase PWM rectifier. The PWM rectifier must control the active and reactive powers for regulating the dc voltage. Then, in this paper, a single-phase instantaneous active / reactive power theory (the ps-qs theory) is applied to a control strategy of a single-phase PWM rectifier. In addition, the stability of a single-phase PWM rectifier is analyzed, and a novel circuit topology and control strategy using a dc active filter is proposed. Some significant characteristics on our proposal are verified by using a 100V/1.8kVA experimental system.
KW - Single-phase instantaneous active/reactive power
KW - Single-phase PWM rectifier
KW - The ps-qs theory
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M3 - Conference article
AN - SCOPUS:1542330108
SN - 0275-0473
SP - 573
EP - 578
JO - INTELEC, International Telecommunications Energy Conference (Proceedings)
JF - INTELEC, International Telecommunications Energy Conference (Proceedings)
T2 - The 25th International Telecommunications Energy Conference
Y2 - 19 October 2003 through 23 October 2003
ER -