Multi-mode switching control of electromagnetic hybrid suspension based on human subjective sensation

Author:

Xu Jianan1ORCID,Kou Farong1,Zhang Xinqian1ORCID,Chen Chen12

Affiliation:

1. School of Mechanical Engineering, Xi’an University of Science and Technology, Xi’an, Shaanxi, China

2. School of Automotive Engineering, Shanxi Polytechnic Institute, Xi’an, Shaanxi, China

Abstract

This study proposes a multi-mode switching control strategy based on electromagnetic hybrid suspension (EMHS) to achieve the best relationship possible between the vehicle’s vibration reduction performance and energy consumption. The working modes of EMHS are divided into active, semi-active, and energy recovery modes according to the relationship between the root mean square of weighted acceleration and the human subjective sensation. The two key switching parameters of the analysis sampling interval and switching judgment times are introduced to optimize the switching conditions and reduce the deterioration of comfort and handling stability caused by frequent system switching in mode switching decisions. In the sub-modes, it’s designed that an LQG main control loop uses an ant colony algorithm to optimize parameters to obtain the ideal output force. And inner-loop control strategies in active and semi-active modes are designed so that the actual force output by the actuator tracks the ideal force. The results show that the multi-mode switching control strategy can switch the EMHS reasonably in the three modes and achieve good vibration reduction performance. The RMS of SMA, SDD, and TDL are reduced by 27.5%, 6.3%, and 17.6%, respectively under the variable conditions road.

Funder

National Natural Science Foundation of China

Xi’an Science and Technology Development Program

Xianyang Key Research and Development Program

Publisher

SAGE Publications

Subject

Mechanical Engineering,Aerospace Engineering

Reference27 articles.

1. Variable damping control strategy of a semi-active suspension based on the actuator motion state

2. Performance Evaluation of a Single Sensor Control Scheme Using a Twin-Tube MR Damper Based Semi-active Suspension

3. Glanfranco DL, Massimo T, Walter B. Piston for a damping-adjustable shock-absorber particularly for a vehicle suspension provided with four passive flow-control valves and with a flow-dividing solenoid valve. Patent US9016447-B2, USA, 2015.

4. A Comprehensive Review on Regenerative Shock Absorber Systems

5. Intelligent Neural Network Control for Active Heavy Truck Suspension

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