Vibration suppression of railway vehicles using a magneto-rheological fluid damper and semi-active virtual tuned mass damper control

Author:

Shin Ji-Hwan1,Lee Jin-Ho1,You Won-Hee1,Kwak Moon K.1

Affiliation:

1. A Department of Mechanical, Robotics and Energy Engineering, Dongguk Universityâ–”Seoul

Abstract

A semi-active virtual tuned mass damper (SAVTMD) control algorithm is developed to suppress vibrations of a railway vehicle by using magneto-rheological (MR) damper. To this end, a virtual-tuned-mass-damper control algorithm analogous to the tuned mass damper was developed prior to the semi-active application. The proposed SAVTMD control algorithm uses the acceleration of the car body directly, so that it is more practical than the sky-hook control algorithm that uses the velocity of the car body. The application of the SAVTMD control to a real MR fluid damper is discussed, and a step-by-step procedure to calculate the command voltage to the driver of the MR fluid damper is presented. A hardwarein-the-loop simulation system developed in the previous study is used to test the SAVTMD control algorithm. The theoretical and experimental results showed that the proposed SAVTMD control algorithm is more effective than is the semi-active sky-hook control in suppressing vibrations of the car body of the railway vehicle by the MR damper.

Publisher

Institute of Noise Control Engineering (INCE)

Subject

Industrial and Manufacturing Engineering,Public Health, Environmental and Occupational Health,Mechanical Engineering,Acoustics and Ultrasonics,Aerospace Engineering,Automotive Engineering,Building and Construction

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1. Study on the Lateral Vibration Reduction of the Capsule Train Carbody by Using the Half Car Model Simulator;Transactions of the Korean Society of Mechanical Engineers - A;2024-03-31

2. Design and Implementation of an Active Vibration Control Algorithm Using Servo Actuator Control Installed in Series with a Spring-Damper;Applied Sciences;2023-03-06

3. Research on Hybrid Damping Skyhook Semi-Active Control of High-Speed Trains;2022 4th International Conference on Intelligent Control, Measurement and Signal Processing (ICMSP);2022-07-08

4. Development of multi-input multi-output virtual tuned mass damper controls for the vibration suppression of structures;Journal of Low Frequency Noise, Vibration and Active Control;2021-12-22

5. Literature Survey;Dynamic Modeling and Active Vibration Control of Structures;2021-08-15

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