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Article

Experimental and Analytical Study of Secondary Path Transfer Function in Active Hydraulic Mount with Solenoid Actuator

1
School of Mechanical Engineering, University of Science and Technology Beijing, Beijing 100083, China
2
Shunde Graduate School of University of Science and Technology Beijing, Foshan 528399, China
*
Author to whom correspondence should be addressed.
Actuators 2021, 10(7), 150; https://doi.org/10.3390/act10070150
Submission received: 11 May 2021 / Revised: 19 June 2021 / Accepted: 29 June 2021 / Published: 2 July 2021

Abstract

The active hydraulic mount with solenoid actuator (AHM-SNA) does not require permanent magnets, is of low cost, and has attracted wide attention. This paper focuses on each link of the secondary path in AHM-SNA, the transfer functions (TFs) were studied one by one, and a simple and efficient expression for the total secondary path is discussed. First, based on the mathematical model of the hydraulic mount with inertia track and decoupling membrane, the TF from actuator active force to output force at frame side was analyzed, the results show that the TF was constant in the mid-frequency band. Second, based on the geometric parameters and cone air gap of solenoid actuator, it was obtained that the TF from the square of current to actuator active force is also constant; based on the relationship that the active force frequency is twice of the harmonic current frequency, the full-wave-rectified current was introduced. Utilizing the fact that the second harmonic component of the current is the main component, it was concluded that the total TF of the secondary path from current to active force and then to output force at frame side was constant in the mid-frequency band. Finally, two sets of experiments with full-wave-rectified current as the excitation were carried out, and the analytical conclusion was verified that the TF of the secondary path was constant as a proportional link and was convenient for the active control algorithms.
Keywords: active hydraulic mount; active control mount; solenoid actuator; electromagnetic force; secondary path; transfer function active hydraulic mount; active control mount; solenoid actuator; electromagnetic force; secondary path; transfer function

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MDPI and ACS Style

Fan, R.-L.; Dou, Y.-F.; Yao, F.-H.; Qi, S.-Q.; Han, C. Experimental and Analytical Study of Secondary Path Transfer Function in Active Hydraulic Mount with Solenoid Actuator. Actuators 2021, 10, 150. https://doi.org/10.3390/act10070150

AMA Style

Fan R-L, Dou Y-F, Yao F-H, Qi S-Q, Han C. Experimental and Analytical Study of Secondary Path Transfer Function in Active Hydraulic Mount with Solenoid Actuator. Actuators. 2021; 10(7):150. https://doi.org/10.3390/act10070150

Chicago/Turabian Style

Fan, Rang-Lin, Yu-Fei Dou, Fang-Hua Yao, Song-Qiang Qi, and Chen Han. 2021. "Experimental and Analytical Study of Secondary Path Transfer Function in Active Hydraulic Mount with Solenoid Actuator" Actuators 10, no. 7: 150. https://doi.org/10.3390/act10070150

APA Style

Fan, R.-L., Dou, Y.-F., Yao, F.-H., Qi, S.-Q., & Han, C. (2021). Experimental and Analytical Study of Secondary Path Transfer Function in Active Hydraulic Mount with Solenoid Actuator. Actuators, 10(7), 150. https://doi.org/10.3390/act10070150

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