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CHOPPER BASED DC MOTOR SPEED CONTROL

ABSTRACT

Speed control of dc motor is based on adjusting the voltage which gets to the motor. Speed
control has been possible for many decades by using adjustable power resistors and
adjustable transformers. Those methods have been used in sewing shops, drilling machines
and other so many applications. The problem of those speed controlling methods have been
that they are big, expensive, have poor efficiency and they are hard to control from remote
location.

In particular the high peak to peak current gives poor motor efficiency and the consequential
high brush temperature leads to limited motor lifetime. When operating in DC mode,
significant improvements are obtained. The RMS and peak to peak current of the motor are
smaller, reducing Iron losses and brush temperature. Operating in DC mode enables shrinking
of the motor size, and increasing the motor lifetime. Furthermore, magnetic constriction of
motor core and torque ripple decrease; the 100Hz noise is further reduced. In this project we
are going to operate our DC motor.
In this project we can vary the speed of motor by pressing the buttons. That means motor will
rotate with more speed when the firing angle of MOSFET is less and speed will decreases as
the firing angle increases.

BLOCK DIAGRAM
Chopper based dc motor speed control

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Step ppt
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Chopper based dc motor speed control

  • 1. CHOPPER BASED DC MOTOR SPEED CONTROL ABSTRACT Speed control of dc motor is based on adjusting the voltage which gets to the motor. Speed control has been possible for many decades by using adjustable power resistors and adjustable transformers. Those methods have been used in sewing shops, drilling machines and other so many applications. The problem of those speed controlling methods have been that they are big, expensive, have poor efficiency and they are hard to control from remote location. In particular the high peak to peak current gives poor motor efficiency and the consequential high brush temperature leads to limited motor lifetime. When operating in DC mode, significant improvements are obtained. The RMS and peak to peak current of the motor are smaller, reducing Iron losses and brush temperature. Operating in DC mode enables shrinking of the motor size, and increasing the motor lifetime. Furthermore, magnetic constriction of motor core and torque ripple decrease; the 100Hz noise is further reduced. In this project we are going to operate our DC motor. In this project we can vary the speed of motor by pressing the buttons. That means motor will rotate with more speed when the firing angle of MOSFET is less and speed will decreases as the firing angle increases. BLOCK DIAGRAM