Please use this identifier to cite or link to this item:
https://repository.sustech.edu/handle/123456789/16641
Title: | Speed Sensorless Vector Control of Induction Motors Using Rotor Flux based Model Reference Adaptive System |
Authors: | Ahmed , Aamir Hashim Obeid |
Keywords: | Induction Motor, Vector Control, Sensorless, Speed Estimation, Model Reference Adaptive System, Rotor Flux based Model Reference Adaptive System. |
Issue Date: | 2016 |
Publisher: | Sudan University of Science and Technology |
Citation: | Ahmed , Aamir Hashim Obeid . Speed Sensorless Vector Control of Induction Motors Using Rotor Flux based Model Reference Adaptive System \ Aamir Hashim Obeid Ahmed .- Journal of Engineering and Computer Sciences (ECS) .- vol 17 , no1.- 2016.- article |
Abstract: | Vector Control (VC) schemes are increasingly used in Induction Motor (IM) drive systems to obtain high performance. However, in order to implement the vector control technique, the induction motor speed information is required. Different speed sensors are used to detect the speed. But in most applications, speed sensors have several problems. These problems are eliminated by speed estimation by using different speed estimation algorithms. Out of which, Model Reference Adaptive System (MRAS) techniques are one of the popular methods to estimate the rotor speed due to its good performance and simplicity. In this paper, the induction motor with Rotor Flux based Model Reference Adaptive System (RF-MRAS) rotor speed estimator is designed and validated through MATLAB/SIMULINK software package. The results of simulations show that the performance of the speed estimation is very good under different operation conditions. |
Description: | article |
URI: | http://repository.sustech.edu/handle/123456789/16641 |
ISSN: | ISSN 1605-427X |
Appears in Collections: | Volume 17 No. 1 |
Files in This Item:
File | Size | Format | |
---|---|---|---|
Speed Sensorless Vector ... .pdf | 278.33 kB | Adobe PDF | View/Open |
Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.