Author:
Qi Haitao,Liu Zilong,Lang Yan
Abstract
Purpose
The symmetrical valve is usually used in the hydraulic servo control system to control the asymmetrical cylinder, but this system’s structure involves asymmetry, and so its dynamic characteristics are asymmetrical, which causes issues in the control system of symmetric response. The purpose of this paper is to achieve the aim of symmetric control.
Design/methodology/approach
In this paper, the authors proposed a method that combined wavelet neural network (WNN) and model reference adaptive control. The reference model determined the dynamic response that the system was expected to achieve, and the WNN adaptive control made the system follow the reference model to achieve the purpose of symmetric control.
Findings
The experimental results show that the method can achieve a more accurate symmetric control and position control compared with the solutions via the classical PID control.
Originality/value
The proposed combination of the WNN and the reference model can effectively compensate for the asymmetry of dynamic response of the asymmetric cylinder in forward and return directions, which can be extended to deal with other classes of applications.
Subject
Computational Theory and Mathematics,Computer Science Applications,General Engineering,Software
Reference36 articles.
1. Model reference adaptive control in fractional order systems using discrete-time approximation methods;Communications in Nonlinear Science and Numerical Simulation,2015
2. A type-2 fuzzy wavelet neural network for system identification and control;Journal of the Franklin Institute,2013
3. A study on the control method and its application based on wavelet neural network,2004
4. A novel approach to fuzzy wavelet neural network modeling and optimization;International Journal of Electrical Power and Energy Systems,2015
5. Decentralized PID neural network control for five degree-of-freedom active magnetic bearing;Engineering Applications of Artificial Intelligence,2013
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献