Field oriented control of induction motor drives needs the detection of rotor flux which is usually detected by means of an observer. Rotor time constant variation due to rotor heating de-tunes the observer and, hence, the field oriented control. In the paper an adaptive observer is synthesised, which allows online rotor time constant tuning. The identification of the rotor time constant is performed by a model reference approach. The synthesis of the adaptive observer is conducted using Lyapunov stability theory applied to the drive-observer system. The simulation results evidence the good performance of the proposed observer and, hence, of the overall controlled drive. In particular, the interactive effects between the observer and the parameter identifier gains is evidenced
An adaptive rotor flux observer for rotor time constant tuning in induction motor drives / Damiano, A.; Gatto, G.; Marongiu, I.; Attaianese, C.; Perfetto, Aldo. - STAMPA. - (1998), pp. 103-108. (Intervento presentato al convegno 5th International Workshop on Advanced Motion Control, 1998. AMC '98 tenutosi a Coimbra nel 29 Jun-1 Jul 1998).
An adaptive rotor flux observer for rotor time constant tuning in induction motor drives
PERFETTO, ALDO
1998
Abstract
Field oriented control of induction motor drives needs the detection of rotor flux which is usually detected by means of an observer. Rotor time constant variation due to rotor heating de-tunes the observer and, hence, the field oriented control. In the paper an adaptive observer is synthesised, which allows online rotor time constant tuning. The identification of the rotor time constant is performed by a model reference approach. The synthesis of the adaptive observer is conducted using Lyapunov stability theory applied to the drive-observer system. The simulation results evidence the good performance of the proposed observer and, hence, of the overall controlled drive. In particular, the interactive effects between the observer and the parameter identifier gains is evidencedI documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.