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Modeling and Simulation of Quarter Car Semi Active Suspension System Using LQR Controller

机译:使用LQR控制器的四分之一汽车半主动悬架系统建模与仿真

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In this paper design of the Linear Quadratic Regulator (LQR) for Quarter car semi active suspension system has been done. Current automobile suspension systems use passive components only by utilizing spring and damping coefficient with fixed rates. The vehicle suspension systems are typically rated by its ability to provide good road handling and improve passenger comfort. In order to improve comfort and ride quality of a vehicle, four parameters are needed to be acknowledged. Those four parameters are sprung mass acceleration,sprung mass displacement, unsprung displacement and suspension deflection. This paper uses a new approach in designing the suspension system which is semi-active suspension. Here, the hydraulic damper is replaced by a magneto-rheological damper and a controller is developed for controlling the damping force of the suspension system. The semi-active suspension with controller reduces the sprung mass acceleration and displacement hence improving the passengers comfort.
机译:在本文的情况下,四分之一汽车半主动悬架系统的线性二次调节器(LQR)的设计已经完成。目前的汽车悬架系统仅利用具有固定速率的弹簧和阻尼系数来使用无源部件。车辆悬架系统通常通过其提供良好的道路处理和提高乘客舒适度的能力来评级。为了提高车辆的舒适性和乘坐质量,需要确认四个参数。这四个参数是弹簧批量加速度,弹簧质量位移,术术术语,悬垂性和悬架偏转。本文在设计半主动悬架的悬架系统方面采用了一种新方法。这里,液压阻尼器由磁流变阻尼器代替,并且开发了用于控制悬架系统的阻尼力的控制器。具有控制器的半主动悬架可降低弹簧群集加速度和位移,从而提高乘客舒适。

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