Title :
Compensation method of AC-to-DC converter characteristics under unbalanced three-phase AC side voltage
Author :
Okui, Yoshiaki ; Mouri, Masayuki ; Mizuno, Takayuki ; Yamada, Hajime
Author_Institution :
Sanyo Denki Co. Ltd., Ueda, Japan
Abstract :
The assumption of characteristics analysis of a three-phase AC-to-DC converter is based on a balanced three-phase AC side voltage. When the AC side voltage is unbalanced, the characteristics of the AC-to-DC converter become worse (the AC side currents are distorted and the DC side voltage includes low-order frequency components). Accordingly, a compensation method of the AC-to-DC converter characteristics under unbalanced three-phase AC side voltage, is proposed by authors. The compensation method by feed-forward control is investigated by using a new topology AC-to-DC converter in this paper. In both simulated results and experimental results in a laboratory prototype system having the output power of 10 kW, it is clear that the proposed compensation method maintains the AC-to-DC converter characteristics whereas the three-phase AC side voltage is unbalanced. However, when a value of an unbalanced rate, k´, of each effective value to a three-phase average value is lower than a value of modulation factor of a basic sinusoidal reference signal, both the AC side current distortion and the DC side voltage ripple increase due to over-modulation
Keywords :
AC-DC power convertors; compensation; electric current control; feedforward; harmonic distortion; modulation; power factor; power system harmonics; voltage control; 10 kW; AC side current distortion; AC side currents distortion; AC-to-DC converter characteristics; DC side voltage; DC side voltage ripple; balanced three-phase AC side voltage; compensation method; feed-forward control; harmonic component; low-order frequency components; modulation factor; over-modulation; sinusoidal reference signal; unbalanced three-phase AC side voltage; Analog-digital conversion; Choppers; Circuit topology; Frequency conversion; Power generation; Power semiconductor switches; Pulse width modulation; Reactive power; Virtual prototyping; Voltage control;
Conference_Titel :
Power Conversion Conference - Nagaoka 1997., Proceedings of the
Conference_Location :
Nagaoka
Print_ISBN :
0-7803-3823-5
DOI :
10.1109/PCCON.1997.645661