4.7 Article

Control Method of Flexible Manipulator Servo System Based on a Combination of RBF Neural Network and Pole Placement Strategy

期刊

MATHEMATICS
卷 9, 期 8, 页码 -

出版社

MDPI
DOI: 10.3390/math9080896

关键词

flexible manipulator; servo system; neural network; dynamic modeling

资金

  1. National Natural Science Foundation of China [51875092]
  2. Fundamental Research Funds for the Central Universities [N170302001]

向作者/读者索取更多资源

This paper investigates the rotation angle fluctuations in the servo system of flexible manipulators and proposes a control method combining RBF neural network and pole placement strategy to suppress the fluctuations. The proposed method effectively reduces the rotation angle error and improves motion accuracy.
Gravity and flexibility will cause fluctuations of the rotation angle in the servo system for flexible manipulators. The fluctuation will seriously affect the motion accuracy of end-effectors. Therefore, this paper adopts a control method combining the RBF (Radial Basis Function) neural network and pole placement strategy to suppress the rotation angle fluctuations. The RBF neural network is used to identify uncertain items caused by the manipulator's flexibility and the time-varying characteristics of dynamic parameters. Besides, the pole placement strategy is used to optimize the PD (Proportional Differential) controller's parameters to improve the response speed and stability. Firstly, a dynamic model of flexible manipulators considering gravity is established based on the assumed mode method and Lagrange's principle. Then, the system's control characteristics are analyzed, and the pole placement strategy optimizes the parameters of the PD controllers. Next, the control method based on the RBF neural network is proposed, and the Lyapunov stability theory demonstrates stability. Finally, numerical analysis and control experiments prove the effectiveness of the control method proposed in this paper. The means and standard deviations of rotation angle error are reduced by the control method. The results show that the control method can effectively reduce the rotation angle error and improve motion accuracy.

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