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Design and Vibration Control of Vehicle Engine Mount Activated by MR Fluid and Piezoelectric Actuator

机译:MR流体和压电致动器激活的车辆发动机支架的设计与振动控制

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An engine is one of the most dominant noise and vibration sources in vehicle systems. Therefore, in order to resolve noise and vibration problems due to engine, various types of engine mounts have been proposed. This work presents a new type of active engine mount system featuring a magneto-rheological (MR) fluid and a piezostack actuator. As a first step, six degrees-of freedom dynamic model of an in-line four-cylinder engine which has three points mounting system is derived by considering the dynamic behaviors of MR mount and piezostack mount. In the configuration of engine mount system, two MR mounts are installed for vibration control of roll mode motion whose energy is very high in low frequency range, while one piezostack mount is installed for vibration control of bounce and pitch mode motion whose energy is relatively high in high frequency range. As a second step, linear quadratic regulator (LQR) controller is synthesized to actively control the imposed vibration. In order to demonstrate the effectiveness of the proposed active engine mount, vibration control performances are evaluated under various engine operating speeds (wide frequency range).
机译:发动机是车辆系统中最主导的噪声和振动源之一。因此,为了解决由于发动机引起的噪声和振动问题,已经提出了各种类型的发动机支架。该工作介绍了一种新型的有源发动机安装系统,具有磁流变(MR)流体和压电棘爪致动器。作为第一步,通过考虑MR MIS和PIDOZOSTACK安装座的动态行为来导出具有三个点安装系统的一线四缸发动机的六个自由度动态模型。在发动机安装系统的配置中,安装了两个MR安装座,用于滚动模式运动的振动控制,其能量在低频范围内非常高,而一个压电机安装安装用于反弹的振动控制和音高模式运动,其能量相对较高在高频范围内。作为第二步,合成线性二次调节器(LQR)控制器以主动控制施加的振动。为了证明所提出的有效发动机支架的有效性,在各种发动机操作速度(宽频范围)下评估振动控制性能。

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