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Direct Instantaneous Force Control With Improved Efficiency for Four-Quadrant Operation of Linear Switched Reluctance Actuator in Active Suspension System
Journal article   Peer reviewed

Direct Instantaneous Force Control With Improved Efficiency for Four-Quadrant Operation of Linear Switched Reluctance Actuator in Active Suspension System

Zhu Zhang, N. C. Cheung, K. W. E. Cheng, Xiangdang Xue, Jiongkang Lin and Ngai Man Cheung
IEEE transactions on vehicular technology, Vol.61(4), pp.1567-1576
01/05/2012

Abstract

Active suspension system Actuators direct instantaneous force control (DIFC) Distribution functions Electromagnetics Force Force control force distribution function (FDF) linear switched reluctance actuator (LSRA) Suspensions Switches
A direct instantaneous force control with improved efficiency for the linear switched reluctance actuator (LSRA) is proposed in this paper. Four-quadrant operation is investigated for application in the active suspension system. Force ripple minimization is considered as the primary objective due to the direct impact on passenger ride comfort. An adaptive force distribution function based on the instantaneous force feedback is proposed to achieve a ripple-free system. The choice of switching parameters for improved operation efficiency is examined. The optimal switching positions are online adjusted with respect to the force demand. Simulation and experimental results are presented to verify the effectiveness of the proposed control strategy.

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