This paper deals with sensorless vector-controlled induction motor drives that are fed by a frequency converter equipped with a diode front-end rectifier. A small DC-link capacitance is used, which makes it possible to replace the electrolytic capacitors with film capacitors. The natural frequency of the DC link is chosen considerably higher than six times the mains frequency but lower than the switching frequency. A recently proposed sensorless controller can be exploited; only minor modifications for small capacitances are needed. Simulation and experimental results of a 2.2-kW drive equipped with a capacitance of only 24 µF demonstrate operation in a wide speed range.Peer reviewe
It is indicated that, by changing the electronic switching mode of the rotor current of an induction...
It is indicated that, by changing the electronic switching mode of the rotor current of an induction...
It is indicated that, by changing the electronic switching mode of the rotor current of an induction...
This paper deals with sensorless vector-controlled induction motor drives that are fed by a frequenc...
This paper deals with sensorless vector-controlled induction motor drives that are fed by a frequenc...
This paper deals with sensorless vector control of PWM-inverter-fed induction motor drives equipped ...
This paper deals with sensorless vector control of PWM-inverter-fed induction motor drives equipped ...
The paper deals with control of induction motor drives equipped with a diode rectifier and a small D...
The paper deals with control of induction motor drives equipped with a diode rectifier and a small D...
This venture enhances the unwavering quality and power thickness of three stage variable speed drive...
This paper discusses the impact of small dc capacitance in a motor drive using a floating capacitor ...
Includes bibliographical references.Includes illustrations.Last page labeled 63.Statement of the Pro...
This material is presented to ensure timely dissemination of scholarly and technical work. Copyright...
This article reviews the present state and trends in the development of key parts of controlled indu...
It is indicated that, by changing the electronic switching mode of the rotor current of an induction...
It is indicated that, by changing the electronic switching mode of the rotor current of an induction...
It is indicated that, by changing the electronic switching mode of the rotor current of an induction...
It is indicated that, by changing the electronic switching mode of the rotor current of an induction...
This paper deals with sensorless vector-controlled induction motor drives that are fed by a frequenc...
This paper deals with sensorless vector-controlled induction motor drives that are fed by a frequenc...
This paper deals with sensorless vector control of PWM-inverter-fed induction motor drives equipped ...
This paper deals with sensorless vector control of PWM-inverter-fed induction motor drives equipped ...
The paper deals with control of induction motor drives equipped with a diode rectifier and a small D...
The paper deals with control of induction motor drives equipped with a diode rectifier and a small D...
This venture enhances the unwavering quality and power thickness of three stage variable speed drive...
This paper discusses the impact of small dc capacitance in a motor drive using a floating capacitor ...
Includes bibliographical references.Includes illustrations.Last page labeled 63.Statement of the Pro...
This material is presented to ensure timely dissemination of scholarly and technical work. Copyright...
This article reviews the present state and trends in the development of key parts of controlled indu...
It is indicated that, by changing the electronic switching mode of the rotor current of an induction...
It is indicated that, by changing the electronic switching mode of the rotor current of an induction...
It is indicated that, by changing the electronic switching mode of the rotor current of an induction...
It is indicated that, by changing the electronic switching mode of the rotor current of an induction...