Modeling and Simulation of Semiactive and Active Suspension System using Quarter Car Model

V. Barethiye
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Abstract

A passive suspension system is used by the automotive industry to control the motion of the vehicle. Nowadays, semiactive and active suspension systems are a requirement of commercial vehicles to improve performance characteristics and road comfort. The objective of the paper is to present a comprehensive analysis of passive, semiactive, and active suspension systems. The fuzzy logic controller is used to present the active suspension system. The characteristic of the shock absorber (damper) is non-linear and hysteresis in nature. Hence, a Magneto-rheological (MR) damper-based Bouc-Wen model is utilized to present the semiactive suspension. The comparative analysis of vehicle suspension characteristics has been carried out by using a bump road profile. The modeling of the Bouc-Wen model and quarter car system is carried out in the Simulink environment. The simulated results show that the semiactive and active suspension systems can be a better option for vehicle suspension systems to provide passengers with road comfort.
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使用四分之一汽车模型对半主动和主动悬架系统进行建模和仿真
汽车工业使用被动悬挂系统来控制车辆的运动。如今,半主动和主动悬挂系统已成为商用车辆提高性能特点和道路舒适性的要求。本文旨在对被动、半主动和主动悬挂系统进行全面分析。模糊逻辑控制器用于介绍主动悬架系统。减震器(阻尼器)的特性具有非线性和滞后性。因此,利用基于磁流变(MR)减振器的 Bouc-Wen 模型来呈现半主动悬架。通过凹凸路面轮廓对车辆悬架特性进行了比较分析。Bouc-Wen 模型和四分之一汽车系统的建模是在 Simulink 环境中进行的。模拟结果表明,半主动和主动悬架系统可以作为车辆悬架系统的更好选择,为乘客提供舒适的道路体验。
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审稿时长
16 weeks
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