4.5 Article

Switching control of semi-active suspension based on road profile estimation

Journal

VEHICLE SYSTEM DYNAMICS
Volume 60, Issue 6, Pages 1972-1992

Publisher

TAYLOR & FRANCIS LTD
DOI: 10.1080/00423114.2021.1889621

Keywords

Semi-active suspension; switching control; road profile estimation; parameter optimisation; vehicle dynamic performance

Funding

  1. National Natural Science Foundation Project, China [51975253, 51575240]
  2. Natural Science Research Project, Jiangsu [20KJB580004]

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This study proposes a switching control strategy for the semi-active suspension based on road profile estimation, which effectively improves vehicle dynamic performance under different road conditions. By studying the mapping relationship between driving conditions and performance requirements and designing a switching controller with multiple sub-controllers, the study demonstrates the effectiveness of the road estimation results and the superiority of the switching control strategy.
The road condition is complex and variable during driving; hence, the suspension system cannot easily suppress the vertical vibration of the vehicle. To effectively improve the vehicle dynamic performance under different road conditions, this study proposes a switching control strategy for the semi-active suspension based on the road profile estimation. First, the mapping relationship between different driving conditions and requirements of vehicle dynamic performances is studied. Then, a switching controller with multiple sub-controllers is designed on the basis of the modified skyhook control. The optimal control gains are obtained by adopting the cuckoo search algorithm. In addition, to realise the automatic switching of the controller under different road conditions, an online road profile estimation method, including road disturbance estimation and road roughness classification, is developed. Bench test results show that the proposed control algorithm has an obvious effect on improving the vehicle ride comfort and handling performance, which verifies the effectiveness of the road estimation results and the superiority of the switching control strategy.

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