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Analysis and Control of Displacement Transmissibility and Force Transmissibility for a Two DOF Model Based on Quarter Car Concept Using a Mixed Mode Magnetorheological Fluid Mount

机译:基于四分之一汽车概念使用混合模式磁流变液安装分析和控制两种DOF模型的位移传递率和力传递性

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The chassis is subject to both road profile and engine or pump/motor vibration when a vehicle is moving on the road. The suspension is developed to reduce the effect of the road conditions to the chassis. The vibration from engine or pump/motor of hydraulic hybrid vehicles (HHV) will be also transmitted to the chassis and needs to be isolated. A mixed mode magnetorheological (MR) fluid mount is presented to isolate force vibration for a two-degree-of-freedom (DOF) model based on quarter-car concept. The MR fluid mount is designed to work in flow mode and squeeze mode separately and simultaneously. The skyhook control for the MR fluid mount is also been designed and simulated. Both displacement transmissibility and force transmissibility for each mode and for combined modes have been obtained. These simulation results present a basis for designing a more effective controller to control both the displacement transmissibility and force transmissibility.
机译:当车辆在道路上移动时,底盘受到道路轮廓和发动机或泵/电机振动的影响。 开发了悬架以减少道路状况对底盘的影响。 液压混合动力车辆(HHV)发动机或泵/电机的振动也将传递到底盘,需要隔离。 提出了一种混合模式磁流变(MR)流体支架,以分离基于四分之一汽车概念的双程度自由度(DOF)模型的力振动。 MR流体支架设计成分别和同时在流动模式和挤压模式下工作。 还设计和模拟了MR流体安装架的Skyhook控制。 已经获得了每个模式和组合模式的位移传递性和力传递性。 这些仿真结果为设计更有效的控制器来控制更有效的控制器以控制位移传递率和力传播性的基础。

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