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Development of a semi-active car suspension control system using magneto-rheological damper model

机译:基于磁流变阻尼器模型的半主动汽车悬架控制系统的开发

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摘要

In this paper, the development of a semi- active suspension control of quarter car model using fuzzy-based controller has been done. The quarter car model to be used here can be described as a nonlinear two degrees of freedom system which is subject to excitation from different road profile. The semi-active control is designed as the fuzzy control inferred by using two single input rule fuzzy modules, and the road model is used as the control force is released by actuating an electromagnetic shaker. To implement semi-active suspension system experimentally, the MR damper is used here as the adjustable damper. The MR damper is a control device that consists of a hydraulic cylinder filled with magnetically polarizable particles suspended in a liquid. MR dampers dissipate vibration by absorbing energy. Magnetorheological (MR) fluids dampers are very effective to control vibration, which use MR fluids to produce controllable damping force and provide both the reliability of passive systems and the facility of active control systems with small power supply. Due to their mechanical simplicity, high dynamic range, low power requirements, large force capacity, and robustness, offer an attractive means of vibration protection. The objectives of this are modeling of semi-active suspension system, developing controller and understanding the characteristics of the MR damper to provide effective damping for the purpose of suspension isolation or suppression car model. In this work pid, fuzzy logic and fuzzy-hybrid controller are used to control semi-active car suspension system.
机译:在本文中,已经完成了基于模糊控制器的四分之一汽车半主动悬架控制系统的开发。这里要使用的四分之一汽车模型可以描述为非线性二自由度系统,该系统会受到来自不同道路轮廓的激励。半主动控制被设计为通过使用两个单输入规则模糊模块推断出的模糊控制,并且道路模型被用作通过驱动电磁振动器释放控制力。为了通过实验实现半主动悬架系统,此处将MR阻尼器用作可调阻尼器。 MR阻尼器是一个控制装置,由一个液压缸组成,该液压缸装有悬浮在液体中的可磁极化颗粒。 MR阻尼器通过吸收能量来消除振动。磁流变(MR)流体阻尼器对于控制振动非常有效,该阻尼器使用MR流体产生可控制的阻尼力,并提供了无源系统的可靠性和具有小电源的有源控制系统的便利性。由于它们的机械简单性,高动态范围,低功率要求,大的承受力和坚固性,提供了一种有吸引力的振动防护手段。其目的是为半主动悬架系统建模,开发控制器并了解MR减震器的特性,从而为悬架隔离或抑制汽车模型提供有效的阻尼。在这项工作中,使用pid,模糊逻辑和模糊混合控制器来控制半主动汽车悬架系统。

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