Observerless Scheme for Sensorless Speed Control of PMSM Using Direct Torque Control Method With LP Filter

In this study, direct torque control (DTC) of a permanent magnet synchronous motor is realized with a sensorless speed control technique without using an observer. Space vector pulse width modulation (SVPWM) technique is applied in order to determine the switching sequence of the voltage source in...

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Main Authors: BEKIROGLU, N., OZCIRA, S.
Format: Article
Language:English
Published: Stefan cel Mare University of Suceava 2010-08-01
Series:Advances in Electrical and Computer Engineering
Subjects:
DTC
Online Access:http://dx.doi.org/10.4316/AECE.2010.03013
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spelling doaj-4a3345568bc74172a12994c7e97456ee2020-11-24T23:12:54ZengStefan cel Mare University of SuceavaAdvances in Electrical and Computer Engineering1582-74451844-76002010-08-01103788310.4316/AECE.2010.03013Observerless Scheme for Sensorless Speed Control of PMSM Using Direct Torque Control Method With LP FilterBEKIROGLU, N.OZCIRA, S.In this study, direct torque control (DTC) of a permanent magnet synchronous motor is realized with a sensorless speed control technique without using an observer. Space vector pulse width modulation (SVPWM) technique is applied in order to determine the switching sequence of the voltage source inverter. Torque and flux, the main variables of the DTC, are estimated by using the mathematical model of the motor. Estimated torque and flux values are compared with their references in every control cycle. Then, according to the torque and flux demand, the voltage vector is constituted. In the proposed control scheme, speed is estimated by using flux calculations and a PI controller is used to process the torque and flux errors. Furthermore, a low-pass (LP) filter is implemented within the proposed system for voltage and current harmonics suppression. The results proved that proposed scheme for the DTC provides the speed control under various torque demands without employing a sensor. The proposed system performs very well for a sensorless operation and effectively eliminates the harmonics due to the LP filter. http://dx.doi.org/10.4316/AECE.2010.03013DTCLP filterobserverless and sensorless speed controlPMSMSVPWM
collection DOAJ
language English
format Article
sources DOAJ
author BEKIROGLU, N.
OZCIRA, S.
spellingShingle BEKIROGLU, N.
OZCIRA, S.
Observerless Scheme for Sensorless Speed Control of PMSM Using Direct Torque Control Method With LP Filter
Advances in Electrical and Computer Engineering
DTC
LP filter
observerless and sensorless speed control
PMSM
SVPWM
author_facet BEKIROGLU, N.
OZCIRA, S.
author_sort BEKIROGLU, N.
title Observerless Scheme for Sensorless Speed Control of PMSM Using Direct Torque Control Method With LP Filter
title_short Observerless Scheme for Sensorless Speed Control of PMSM Using Direct Torque Control Method With LP Filter
title_full Observerless Scheme for Sensorless Speed Control of PMSM Using Direct Torque Control Method With LP Filter
title_fullStr Observerless Scheme for Sensorless Speed Control of PMSM Using Direct Torque Control Method With LP Filter
title_full_unstemmed Observerless Scheme for Sensorless Speed Control of PMSM Using Direct Torque Control Method With LP Filter
title_sort observerless scheme for sensorless speed control of pmsm using direct torque control method with lp filter
publisher Stefan cel Mare University of Suceava
series Advances in Electrical and Computer Engineering
issn 1582-7445
1844-7600
publishDate 2010-08-01
description In this study, direct torque control (DTC) of a permanent magnet synchronous motor is realized with a sensorless speed control technique without using an observer. Space vector pulse width modulation (SVPWM) technique is applied in order to determine the switching sequence of the voltage source inverter. Torque and flux, the main variables of the DTC, are estimated by using the mathematical model of the motor. Estimated torque and flux values are compared with their references in every control cycle. Then, according to the torque and flux demand, the voltage vector is constituted. In the proposed control scheme, speed is estimated by using flux calculations and a PI controller is used to process the torque and flux errors. Furthermore, a low-pass (LP) filter is implemented within the proposed system for voltage and current harmonics suppression. The results proved that proposed scheme for the DTC provides the speed control under various torque demands without employing a sensor. The proposed system performs very well for a sensorless operation and effectively eliminates the harmonics due to the LP filter.
topic DTC
LP filter
observerless and sensorless speed control
PMSM
SVPWM
url http://dx.doi.org/10.4316/AECE.2010.03013
work_keys_str_mv AT bekiroglun observerlessschemeforsensorlessspeedcontrolofpmsmusingdirecttorquecontrolmethodwithlpfilter
AT ozciras observerlessschemeforsensorlessspeedcontrolofpmsmusingdirecttorquecontrolmethodwithlpfilter
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