Sanita C S and Kuncheria J T, Rajagiri School of Engineering and Technology, Kochi, Kerala, India.
International Journal of Advanced Computing and Communication Systems
ISSN (Online) : 2347 - 9299
ISSN (Print) : 2347 - 9280
Received On :
Revised On :
Accepted On :
Published On :
Volume 02, Issue 02
Page No : 016-020
Brushless DC (BLDC) motor drives are becoming Due to increase in cost of the sensor and less reliability, the sensorless operation of brushless DC motor has attracted more popular in industrial, traction applications. This makes the control of BLDC motor in all the four quadrants very vital- The motor is operated in four steady state operating modes of torque-speed plane. To control a BLDC machine it is generally required to measure the speed and position of rotor by using the sensor because the inverter phases, acting at any time, must be commutated depending on the rotor position. The position sensors make the motor system more complicated and mechanically unreliable. In Back EMF Observer based Sensorless Four Quadrant Operation of Three Phase BLDC Motor a Back EMF observer is employed to estimate the speed by using measurements of the stator line voltage and line current. Most existing sensorless methods of the BLDC motor have low performance at transients or low speed range and occasionally require an additional circuit. To overcome this problem, the estimation of a back-EMF is carried out by to improve the performance of the system. Sensorless control method can remove problem on manufacture that is happened in circuit to detect rotor position and speed. Moreover the production of inexpensive motor controller may be possible because the additional circuit such as encoder is not necessity. Simulation of the proposed model was done using MATLAB/ SIMULINK.
BLDC motor, Four quadrant operation, regeneration, Sensorless, back emf observer, fuzzy estimator.
Sanita C S and Kuncheria J T, “Back EMF Observer Based Sensorless Four Quadrant Operation of Brushless DC Motor,” International Journal of Advanced Computing and Communication Systems, pp. 016-020, July, 2015.
© 2015 Sanita C S and Kuncheria J T. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
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