Speed sensorless direct rotor field-oriented control of single- phase induction motor using extended kalman filter
Nowadays, Field-Oriented Control (FOC) strategies broadly used as a vector based controller for Single-Phase Induction Motors (SPIMs). This paper isfocused on Direct Rotor FOC (DRFOC) of SPIM. In the proposed technique,transformation matrices are applied in order to control the motor byconverting th...
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| வடிவமà¯: | கடà¯à®Ÿà¯à®°à¯ˆ |
| வெளியீடபà¯à®ªà®Ÿà¯à®Ÿà®¤à¯: |
Institute of Advanced Engineering and Science
2014
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| பகà¯à®¤à®¿à®•ளà¯: | |
| நிகழà¯à®¨à®¿à®²à¯ˆ அணà¯à®•லà¯: | http://eprints.utm.my/62638/ http://eprints.utm.my/62638/ |
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| தொகà¯à®ªà¯à®ªà¯: | Nowadays, Field-Oriented Control (FOC) strategies broadly used as a vector based controller for Single-Phase Induction Motors (SPIMs). This paper isfocused on Direct Rotor FOC (DRFOC) of SPIM. In the proposed technique,transformation matrices are applied in order to control the motor byconverting the unbalanced SPIM equations to the balanced equations (in thispaper the SPIM with two different stator windings is considered). Besides this control technique, a method for speed estimation of SPIM based on Extended Kalman Filter (EKF) to achieve the higher performance of SPIM drive system is presented. Simulation results are provided to demonstrate the high performance of the presented techniques. |
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