Retraction

Application of hybrid recurrent Laguerre-orthogonal-polynomial NN control in V-belt continuously variable transmission system using modified particle swarm optimization

Paper Information

Record ID:
37974
Author(s):
Publication Date:
September 12, 2015
Retraction Date:
January 16, 2021 (4.8 years years ago)
Subject:
Broad Categories:
Engineering
Article Type:
Publisher:
Springer
Open Access:
Yes
PubMed ID:
Not indexed in PubMed
Retraction PubMed ID:
Not indexed in PubMed

Retraction Details

Retraction Reason:

Duplication of/in Article

Nature of Retraction:

Retraction

Retraction Notice:
10.1007/s12206-020-1243-8

Citations (8)

8
Total Citations
3
Post-Retraction
(37.5%)
4
Pre-Retraction
0
Same Day
Post-Retraction Citation Analysis
1 Within 30 days
2 Within 1 year
0 After 2+ years
702 Days since retraction (latest)
Heavy Metals Removal Using Carbon Based Nanocomposites
Unknown Authors
Unknown Journal
Published: Unknown
Design Optimization Methods for Electrical Machines: A Review
Mohd Fairoz Omar, Erwan Sulaıman, Irfan Ali Soomro et al. (5 authors)
Journal of Electrical Engineering and Technology
Published: Dec 2022
9 citations
702 days after retraction
Electromagnetic torque control for synchronous reluctance motor servo-drive system applied in continuously variable transmission system
Chih‐Hong Lin, Kuo‐Tsai Chang
International Journal of Applied Electromagnetics and Mechanics
Published: Oct 2019
1 citation
473 days before retraction
Novel mingled reformed recurrent hermite polynomial neural network control system applied in continuously variable transmission system
Jung-Chu Ting, Der-Fa Chen
Journal of Mechanical Science and Technology
Published: Sep 2018
6 citations
868 days before retraction
Multiobjective Optimization Design for a Six-Phase Copper Rotor Induction Motor Mounted With a Scroll Compressor
Chih‐Hong Lin, Chang-Chou Hwang
IEEE Transactions on Magnetics
Published: Jan 2016
37 citations
1829 days before retraction
Quick Stats
Total Citations: 14
Years Since Retraction: 4.8 years
Open Access: Yes
Last Checked: Jul 24, 2025