ManuScript Details
Paper Id:
|
IJCIRAS1847
|
Title:
|
HYBRID FUZZY CONTROL DESIGN FOR DC MOTOR
|
Published in: |
International Journal Of Creative and Innovative Research In All Studies |
Publisher: |
IJCIRAS |
ISSN: |
2581-5334 |
Volume / Issue: |
Volume 4 Issue 5 |
Pages: |
5
|
Published On: |
10/18/2021 1:44:37 AM (MM/dd/yyyy) |
PDF Url: |
http://www.ijciras.com/PublishedPaper/IJCIRAS1847.pdf |
Main Author Details
Name:
|
Tran Thi Hai Yen |
Institute: |
Faculty of Electrical Engineering, Thai Nguyen University of Technology, Vietnam |
Co - Author Details
Author Name |
Author Institute |
Abstract
Research Area:
|
Electrical and Electronics Engineering |
KeyWord: |
DC motors, Fuzzy controller, Fuzzy-PID |
Abstract: |
The controlling speed for DC motors, especially in industry, is always associated with the production technology process, and it dramatically determines the quality of the products. Depending on the nature and requirements of the process, it requires appropriate control methods. To make full use of the advantages of each type of fuzzy controller and classical controller, people often use systems that combine two types of traditional and fuzzy controllers to create a controller that is the new fuzzy controller. In this paper, we present the hybrid fuzzy PID controller for controlling the speed of DC motors. |
Citations
Copy and paste a formatted citation or use one of the links to import into a bibliography manager and reference.
IEEE
|
Tran Thi Hai Yen, "HYBRID FUZZY CONTROL DESIGN FOR DC MOTOR", International Journal Of Creative and Innovative Research In All Studies,
vol. 4, no. 5, pp. 5-9, 2021.
|
MLA
|
Tran Thi Hai Yen "HYBRID FUZZY CONTROL DESIGN FOR DC MOTOR." International Journal Of Creative and Innovative Research In All Studies,
vol 4, no. 5, 2021, pp. 5-9.
|
APA
|
Tran Thi Hai Yen (2021). HYBRID FUZZY CONTROL DESIGN FOR DC MOTOR. International Journal Of Creative and Innovative Research In All Studies,
4(5), 5-9.
|
HYBRID FUZZY CONTROL DESIGN FOR DC MOTOR
Number Of Downloads - 4
Last downloaded on 08/03/2022