Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Design and Simulation of a Three-Phase Induction Motor Speed Control System

View through CrossRef
Three-phase Induction motors are increasingly used in a variety of applications such as fans, milling machines, transportation, etc. In applications requiring precise speed control such as robotics, centrifugal pumps, mills and other high-performance applications, it is essential that speed is maintained constant at a desired fixed value.  Many speed control techniques exist in literature but this paper presents the design of a simple PI controller and its use to control the speed of a three-phase induction motor. A controller design that applies the Phase margin (PM) as the stability criterion is employed. The cross-over frequency and phase margin of the open loop gain of motor and controller are specified in order to develop a stable control system. The three-phase induction motor model is presented and modified for the purpose of control. A comparative analysis between the motor performance with and without the PI controller was performed. The unit step response of the speed control loop is characterized by rise time, settling time, steady state error and peak overshoot of 0.0253s, 0.19s, 2.2e-14% and 24.03% respectively. Simulation results show that the speed of the uncontrolled motor changed whereas that of the controlled motor returned quickly to its initial value after the motor is subjected to load disturbances in steady state.Keywords— Controller, Induction motor, Model, Speed control, Steady state.
Title: Design and Simulation of a Three-Phase Induction Motor Speed Control System
Description:
Three-phase Induction motors are increasingly used in a variety of applications such as fans, milling machines, transportation, etc.
In applications requiring precise speed control such as robotics, centrifugal pumps, mills and other high-performance applications, it is essential that speed is maintained constant at a desired fixed value.
  Many speed control techniques exist in literature but this paper presents the design of a simple PI controller and its use to control the speed of a three-phase induction motor.
A controller design that applies the Phase margin (PM) as the stability criterion is employed.
The cross-over frequency and phase margin of the open loop gain of motor and controller are specified in order to develop a stable control system.
The three-phase induction motor model is presented and modified for the purpose of control.
A comparative analysis between the motor performance with and without the PI controller was performed.
The unit step response of the speed control loop is characterized by rise time, settling time, steady state error and peak overshoot of 0.
0253s, 0.
19s, 2.
2e-14% and 24.
03% respectively.
Simulation results show that the speed of the uncontrolled motor changed whereas that of the controlled motor returned quickly to its initial value after the motor is subjected to load disturbances in steady state.
Keywords— Controller, Induction motor, Model, Speed control, Steady state.

Related Results

Sliding Mode Controlled drives for wide speed operation of Threephase Induction Motor
Sliding Mode Controlled drives for wide speed operation of Threephase Induction Motor
Induction motor is widely used due to advantages in terms of performance, size, maintenance and efficiency compared to dc motor. Induction motor is either Scalar Controlled or Vect...
Sistem Kontrol Torsi pada Motor DC
Sistem Kontrol Torsi pada Motor DC
AbstrakPenggunaan motor DC di dunia industri sangat penting. Kecepatan dan torsi motor DC sangat mempengaruhi kualitas dan kuantitas produk yang dihasilkan. Untuk itu, diperlukan s...
Perancangan Penggerak Pada Robot Pemotong Rumput
Perancangan Penggerak Pada Robot Pemotong Rumput
<p><em>The use of robotics to cut grass has been widely used to make it easier and reduce the risk of danger from being hit by cutting blades. Robotic lawn mowers can r...
Comparison of Two DC Motor Speed Observers on Sensorless Speed Control Systems
Comparison of Two DC Motor Speed Observers on Sensorless Speed Control Systems
In a sensorless motor speed control system, the motor speed is not directly measured using a speed sensor, but it is estimated using an observer. The sensorless speed control syste...
Perancangan Sistem Instrumentasi dan Kontrol Berbasis Super PLC F2424 serta Antarmuka Labview
Perancangan Sistem Instrumentasi dan Kontrol Berbasis Super PLC F2424 serta Antarmuka Labview
Abstract – PLC-based control is widely used in modern industry because it is able to work automatically controlling actuators for certain functions such as controlling thread rods ...
Modelització i control d'accionaments elèctrics.
Modelització i control d'accionaments elèctrics.
L'actual situació energètica demanda cada cop més d'aplicacions que redueixin el consum energètic. A nivell d'energia elèctrica, i de la conversió d'aquesta a energia mecànica, els...
Five-Phase Sensorless Induction Motor Drives With Lc Filter For High Power Applications
Five-Phase Sensorless Induction Motor Drives With Lc Filter For High Power Applications
Multi-phase IM drive systems are nowadays seen as a possible alternative to the three-phase drives due to their features that are especially suited for high power applications such...

Back to Top