Fr. 59.90

Indirect vector control of induction motor with hybrid controllers

English · Paperback / Softback

Shipping usually within 2 to 3 weeks (title will be printed to order)

Description

Read more

In this book implementation of unified intelligent controller methods for voltage controlled PWM driven three phase Induction Motor drive system has been developed and analyzed in detail. The classical approach of manipulating speed controllers for vector control of an induction motor creates many problems like instability, rise time and settling time during load disturbances. In this paper fuzzy plus PI and self tuning of PI plus fuzzy hybrid controllers are used. To decrease rise time and settling time these controllers are designed in Matlab/Simulink and used for a 5 HP, 3 Phase cage type Induction motor. Hybrid controllers perform well and gives better response when compared with classical controller. The simulation was carried out with the help of SIMULINK & MATLAB and the results were found to be in accordance with theory.

About the author










O Dr. P. Dinakara Prasad Reddy recebeu os seus diplomas de B.Tech, M.Tech e PhD em EEE da JNTUH, SVU e JNTUK, Índia. Os seus interesses de investigação são técnicas de computação suave, algoritmos inspirados na natureza, Micro redes, Smart Grids, veículos eléctricos, dispositivos de armazenamento de energia, FACTOS, expedição de carga económica e fontes de energia renováveis.

Product details

Authors P. Dinakara Prasad Reddy, J N Chandra Sekhar, Ch Devi sree
Publisher Scholar's Press
 
Languages English
Product format Paperback / Softback
Released 01.01.2021
 
EAN 9786138955139
ISBN 9786138955139
No. of pages 68
Subject Natural sciences, medicine, IT, technology > Technology > Heat, energy and power station engineering

Customer reviews

No reviews have been written for this item yet. Write the first review and be helpful to other users when they decide on a purchase.

Write a review

Thumbs up or thumbs down? Write your own review.

For messages to CeDe.ch please use the contact form.

The input fields marked * are obligatory

By submitting this form you agree to our data privacy statement.