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Development of a Prandtl-Ishlinskii hysteresis model for a large capacity magnetorheological fluid damper

Author(s): Vatandoost H; Abdalaziz M; Sedaghati R; Rakheja S;

Magnetorheological (MR) fluid (MRF) dampers, serving as fail-safe semi-active devices, exhibit nonlinear hysteresis characteristics, emphasizing the necessity for accurate modeling to formulate effective control strategies in smart systems. This paper introduces a novel stop operator-based Prandtl-Ishlinskii (PI) model, featuring a reduced parameter set ( ...

Article GUID: 39867636


Design optimization and experimental evaluation of a large capacity magnetorheological damper with annular and radial fluid gaps

Author(s): Abdalaziz M; Sedaghati R; Vatandoost H;

This paper presents an optimal design of a large-capacity Magnetorheological (MR) damper suitable for off-road vehicle applications. The damper includes an MR fluid bypass valve with both annular and radial gaps to generate a large damping force and dynamic range. An analytical model of the proposed damper is formulated based on the Bingham plastic model ...

Article GUID: 37521729


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