Sensor-Fusion-Based Simultaneous Positioning and Vibration Suppression Method for a Three-Degrees-of-Freedom Isolator

Author:

Wang Jing1,Wang Lei1ORCID,Jin Peng1,Zhang Zhen1,Li Pengxuan1,Xiao Ritao1

Affiliation:

1. School of Instrumentation Science and Engineering, Harbin Institute of Technology, Harbin 150001, China

Abstract

For vibration isolation systems, vibration suppression and platform positioning are both important. Since absolute velocity feedback causes difficulty in achieving positioning while suppressing vibration, an H∞ control strategy based on sensor fusion feedback is proposed in this paper. The signals of inertial and displacement sensors are fused through a pair of complementary filters. Thus, active control based on the fusion signal could concurrently achieve vibration and position control since it is a displacement signal. In addition, the obtained fusion signals have a lower noise level. In this way, simultaneous positioning and vibration suppression can be established using the sensor fusion strategy. On this basis, in order to obtain an optimal H∞ controller, system damping can be maximized by using the performance weight function to attenuate noise; the system bandwidth is determined by the uncertainty weight function, which can avoid the effect of high-frequency modes of the system. The effectiveness of the proposed strategy is verified by comparing it with the conventional absolute velocity feedback strategy on a 3-DOF isolator.

Funder

National High Technology Research and Development Program of China

Publisher

MDPI AG

Reference30 articles.

1. Akutsu, T., Ando, M., and Araya, A. (2020, January 24–28). The Status of Kagra Underground Cryogenic Gravitational Wave Telescope. Proceedings of the Journal of Physics Conference Series, Sudbury, ON, Canada.

2. A Multistage Vibration Isolation System for Advanced Virgo Suspended Optical Benches;Bertolini;Class. Quantum Gravity,2019

3. A Combined Review of Vibration Control Strategies for High-Speed Trains and Railway Infrastructures: Challenges and Solutions;Zhang;J. Low Freq. Noise Vib. Act. Control.,2023

4. A Sky-Hook Sliding Mode Semiactive Control for Commercial Truck Seat Suspension;Chen;J. Vib. Control,2021

5. A Double Sky-Hook Algorithm for Improving Road-Holding Property in Semi-Active Suspension Systems for Application to in-Wheel Motor;Seunghoon;Appl. Sci.,2021

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