Control synchronization of three eccentric rotors driven by motors in space considering adaptive fuzzy sliding mode control algorithm

Author:

Shuangquan Shi123,Pan Fang123ORCID,Min Zou12,Huan Peng12,Zhiliang Zhang12,Xiaogang Lu1

Affiliation:

1. School of Mechanical Engineering, Southwest Petroleum University, Chengdu, China

2. Sichuan science and technology resource sharing service platform of oil and gas equipment technology, Chengdu, China

3. Key Laboratory of Oil & Gas Equipment Ministry of Education, Southwest Petroleum University, Chengdu, China

Abstract

In this paper, to obtain ideal dynamic behavior of vibration screen, control synchronization of three eccentric rotors (ERs) driven by motors in space vibration system is investigated by employing the adaptive fuzzy sliding mode control (AFSMC) algorithm. First, the dynamic model of the vibration system is established, and the motion equation of the electromechanical coupling system is derived via Lagrange equation. Then, the synchronization controllers of three ERs are systematically designed with the combination of AFSMC algorithm and master–slave control (MSC) structure, and the stability of the control system is verified by Lyapunov theory. Additionally, in comparison with the conventional sliding mode control (SMC) algorithm, the superiority and feasibility of the proposed AFSMC strategy are confirmed through numerical simulation in MATLAB/Simulink. Moreover, the robustness of the control system is demonstrated in the simulation via changing the motor velocities and structure parameters. The research result shows that the proposed adaptive strategy can effectively control the ERs to implement the desired in-phase synchronization motion, and the control method possesses commendable efficacy in reducing chattering, enhancing control accuracy, eliminating overshoot, and resisting parameter perturbation.

Funder

The National Natural Science Foundation of China

The Sichuan Science and Technology Support Project

The Chinese Postdoctoral Fund

The Chengdu International Science and Technology Cooperation Projects

Publisher

SAGE Publications

Subject

Mechanical Engineering,Mechanics of Materials,Aerospace Engineering,Automotive Engineering,General Materials Science

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