半主动悬架系统的先进控制技术

Jessica Gissella Maradey Lázaro, Kevin Sebastian Caceres Mojica, Silvia Juliana Navarro Quintero
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引用次数: 0

摘要

半主动悬架系统为任何类型的车辆驾驶提供舒适和精确的支持。它们的主要特点在于通过施加外部控制来改变阻尼系数。通常,这些悬架与非线性阻尼器一起工作,如磁流变、电流变、气动、干摩擦等;它会产生不连续的力行为,导致一种恼人的噪音,称为“喋喋不休”;然而,这可以通过正确应用控制技术来消除。因此,控制策略的选择是动态行为建模和特征变化描述的关键,是实现车辆在舒适性、性能、可靠性、稳定性和安全性方面的最佳驾驶体验的关键。本文以四分之一轿车为模型,介绍了采用三种先进的控制技术设计半主动汽车悬架。从目前的研究现状出发,对该课题的相关著作和作者进行了综述。最后,介绍了控制技术的应用及得到的结果,并在Matlab/Simulink虚拟环境中对系统的性能进行了仿真,并伴有近现实干扰,验证了本研究的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advanced Control Techniques for Semi-Active Suspension Systems
Semiactive suspension system provides comfort and precise support for any type of driving in vehicles. Their main feature consists in the modification of the damping coefficient by applying an external control. Commonly, these suspensions work with non-linear dampers, such as magnetorheological, electrorheological, pneumatic, dry friction, among others; which generate a discontinuous behavior of force, causing an annoying noise known as “chattering”; however, this can be deleted by the correct application of the control technique. So, control strategy selection is a key task in the modeling of dynamic behavior and to describe the variation of characteristics, as well as to achieve the best vehicle’s driving experience in terms of comfort, performance, reliability, stability, and safety. This article shows three advanced control techniques used to design a semi-active vehicle suspension taking the quarter car as the model. From the review of the state of the art, relevant works and authors on the subject are reported. After, the application of the control techniques is shown together with the results obtained, specially, the performance of the system is carried out by means of computer simulations in the Matlab/Simulink virtual environment, accompanied by near-reality disturbances to verify the effectiveness of this study.
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