TY - GEN
T1 - Frequency-domain transformation approaches to develop the d-q synchronous-frame models of three-phase symmetrical networks and applications in modeling of PWM power converters
AU - Wang, Xiaoyu
AU - Liu, Jinjun
AU - Meng, Yuji
AU - Hu, Jinku
AU - Yuan, Chng
PY - 2007
Y1 - 2007
N2 - Although state-space averaging small-signal modeling techniques are successfully established in DC-DC converters and three-phase sinusoidal PWM converters, these approaches are limited only to low-order systems, and the modeling process is very complex. This paper proposes two equivalent approaches in frequency domain to develop the d-q synchronous-frame models from stationary-frame models for arbitrary three-phase symmetrical circuits. The first modeling approach is illustrated with frequency transformation, by which the target synchronous-frame models could be easily obtained by frequency transformation of the prototype stationary-frame models. The second modeling approach is based on the reactive elements substitutions. These two approaches can be proven to be equivalent, and the first approach is suitable for input-output models, while the second approach is preferable for state-space models. As illustrative examples, these approaches are applied to develop the synchronous-frame models of large three-phase systems with PWM converters. They are proven valid with the comparison with current published models.
AB - Although state-space averaging small-signal modeling techniques are successfully established in DC-DC converters and three-phase sinusoidal PWM converters, these approaches are limited only to low-order systems, and the modeling process is very complex. This paper proposes two equivalent approaches in frequency domain to develop the d-q synchronous-frame models from stationary-frame models for arbitrary three-phase symmetrical circuits. The first modeling approach is illustrated with frequency transformation, by which the target synchronous-frame models could be easily obtained by frequency transformation of the prototype stationary-frame models. The second modeling approach is based on the reactive elements substitutions. These two approaches can be proven to be equivalent, and the first approach is suitable for input-output models, while the second approach is preferable for state-space models. As illustrative examples, these approaches are applied to develop the synchronous-frame models of large three-phase systems with PWM converters. They are proven valid with the comparison with current published models.
UR - https://www.scopus.com/pages/publications/58149104420
U2 - 10.1109/ICPE.2007.4692506
DO - 10.1109/ICPE.2007.4692506
M3 - 会议稿件
AN - SCOPUS:58149104420
SN - 9781424418725
T3 - 7th Internatonal Conference on Power Electronics, ICPE'07
SP - 851
EP - 856
BT - 7th Internatonal Conference on Power Electronics, ICPE'07
PB - IEEE Computer Society
T2 - 7th Internatonal Conference on Power Electronics, ICPE'07
Y2 - 22 October 2007 through 26 October 2007
ER -