Variable steering ratio design and handling stability research for steer-by-wire forklift
For the TFC35 steer-by-wire forklift, a linear 3-degree-of-freedom forklift model is given, which provides a verification model for variable steering ratio design. The concept of ideal steering ratio is expounded. The variable steering ratio algorithm based on constant yaw rate gain and the variable...
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Series: | Advances in Mechanical Engineering |
Online Access: | https://doi.org/10.1177/1687814018822898 |
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doaj-6885a17c7e6e4b3ab357b34468519c662020-11-25T03:51:58ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402019-03-011110.1177/1687814018822898Variable steering ratio design and handling stability research for steer-by-wire forkliftJunjie Huang0Benxian Xiao1Institute of Industry & Equipment Technology, Hefei University of Technology, Hefei, P.R. ChinaInstitute of Industry & Equipment Technology, Hefei University of Technology, Hefei, P.R. ChinaFor the TFC35 steer-by-wire forklift, a linear 3-degree-of-freedom forklift model is given, which provides a verification model for variable steering ratio design. The concept of ideal steering ratio is expounded. The variable steering ratio algorithm based on constant yaw rate gain and the variable steering ratio algorithm based on constant lateral acceleration gain are studied. A variable steering ratio algorithm based on two kinds of gain combination is proposed. The advantages and disadvantages of the above three static variable steering ratio algorithms based on constant gain are simulated and analyzed. Aiming at complex working conditions, a dynamic variable steering ratio control scheme based on fuzzy neural network is proposed. The definition, implementation steps, and adjustment algorithms of each layer of fuzzy neural network are given. The final experiment results show that the dynamic variable steering ratio method based on fuzzy neural network is more resistant to the disturbance of its own parameters and can be used in complex dynamic conditions, which helps to improve the handling stability of the forklift.https://doi.org/10.1177/1687814018822898 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Junjie Huang Benxian Xiao |
spellingShingle |
Junjie Huang Benxian Xiao Variable steering ratio design and handling stability research for steer-by-wire forklift Advances in Mechanical Engineering |
author_facet |
Junjie Huang Benxian Xiao |
author_sort |
Junjie Huang |
title |
Variable steering ratio design and handling stability research for steer-by-wire forklift |
title_short |
Variable steering ratio design and handling stability research for steer-by-wire forklift |
title_full |
Variable steering ratio design and handling stability research for steer-by-wire forklift |
title_fullStr |
Variable steering ratio design and handling stability research for steer-by-wire forklift |
title_full_unstemmed |
Variable steering ratio design and handling stability research for steer-by-wire forklift |
title_sort |
variable steering ratio design and handling stability research for steer-by-wire forklift |
publisher |
SAGE Publishing |
series |
Advances in Mechanical Engineering |
issn |
1687-8140 |
publishDate |
2019-03-01 |
description |
For the TFC35 steer-by-wire forklift, a linear 3-degree-of-freedom forklift model is given, which provides a verification model for variable steering ratio design. The concept of ideal steering ratio is expounded. The variable steering ratio algorithm based on constant yaw rate gain and the variable steering ratio algorithm based on constant lateral acceleration gain are studied. A variable steering ratio algorithm based on two kinds of gain combination is proposed. The advantages and disadvantages of the above three static variable steering ratio algorithms based on constant gain are simulated and analyzed. Aiming at complex working conditions, a dynamic variable steering ratio control scheme based on fuzzy neural network is proposed. The definition, implementation steps, and adjustment algorithms of each layer of fuzzy neural network are given. The final experiment results show that the dynamic variable steering ratio method based on fuzzy neural network is more resistant to the disturbance of its own parameters and can be used in complex dynamic conditions, which helps to improve the handling stability of the forklift. |
url |
https://doi.org/10.1177/1687814018822898 |
work_keys_str_mv |
AT junjiehuang variablesteeringratiodesignandhandlingstabilityresearchforsteerbywireforklift AT benxianxiao variablesteeringratiodesignandhandlingstabilityresearchforsteerbywireforklift |
_version_ |
1724485209370394624 |