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A Hybrid Control Policy for Semi-Active Vehicle Suspensions

机译:半主动车辆悬架的混合控制策略

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摘要

Various control policies, such as skyhook and groundhook control, have often been considered for semi-active vehicle suspensions. Past studies have shown the performance limitations of these policies, as well as others that have been considered for vehicle applications. This study will provide a look into an alternative control technique called "hybrid control", which attempts to merge the performance benefits of skyhook and groundhook control. The results of this study are based on an experimental evaluation of hybrid control using a quarter-car rig and a magneto-rheological damper. The control policy is employed and evaluated under a steady-state or pure tone input, and a transient or step input. Peak-to-peak displacement and peak-to-peak acceleration are used to evaluate performance. The results indicate that hybrid control can offer benefits to both the sprung mass and the unsprung mass. The steady-state results reveal that hybrid control can be used to reduce the peak-to- peak displacements and accelerations of both bodies. The transient evaluation shows that hybrid control can be effective at reducing the peak-to-peak displacement of the sprung mass.
机译:半主动车辆悬架经常考虑各种控制策略,例如天钩和地钩控制。过去的研究表明,这些政策以及其他一些针对车辆应用的政策存在性能限制。这项研究将探讨一种称为“混合控制”的替代控制技术,该技术试图将天钩和地钩控制的性能优势融合在一起。这项研究的结果是基于对使用四分之一钻机和磁流变阻尼器的混合控制的实验评估。在稳态或纯音输入以及瞬态或阶跃输入下采用和评估控制策略。峰峰值位移和峰峰值加速度用于评估性能。结果表明,混合控制可同时对簧载质量和未簧载质量提供好处。稳态结果表明,混合控制可用于减小两个物体的峰到峰位移和加速度。瞬态评估表明,混合控制可以有效地减少簧载质量的峰峰位移。

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