Fractional-Order Least-Mean-Square-Based Active Control for an Electro–Hydraulic Composite Engine Mounts

Author:

Wang Lida12,Ding Rongjun1,Liu Kan1ORCID,Yang Jun2,Ding Xingwu2,Li Renping1

Affiliation:

1. School of Mechanical and Vehicle Engineering, Hunan University, Changsha 410082, China

2. Zhuzhou Times New Material Technology Co., Ltd., Zhuzhou 412000, China

Abstract

For the vibration of automobile powertrain, this paper designs electro–hydraulic composite engine mounts. Subsequently, the dynamic characteristics of the hydraulic mount and the electromagnetic actuator were analyzed and experimentally studied separately. Due to the strong nonlinearity of the hybrid electromechanical engine mount, a Fractional-Order Least-Mean-Square (FGO-LMS) algorithm was proposed to model its secondary path identification. To validate the vibration reduction effect, a rapid control prototype test platform was established, and vibration active control experiments were conducted based on the Multiple–Input Multiple–Output Filter-x Least-Mean-Square (MIMO-FxLMS) algorithm. The results indicate that, under various operating conditions, the vibration transmitted to the chassis from the powertrain was significantly suppressed.

Funder

Science and Technology Innovation Program of Hunan Province

Publisher

MDPI AG

Reference26 articles.

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