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Model of the Secondary Path between the Input Voltage and the Output Force of an Active Engine Mount on the Engine Side

机译:在发动机侧的输入电压和有源发动机支架的输出力之间的次要路径模型

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The active engine mount (AEM) provides an effective solution to improve the acoustic and vibration comfort of a car. The same AEM can be installed for different engines and different vehicle bodies and attenuates the engine vibration, which is one of the most pressing challenges. To study this problem, this paper develops a mathematical model of a secondary path between the input voltage and output force of the AEM on the engine side considering the frequency-dependent characteristic of the stiffness, which includes the structure parameters of the AEM as well as the dynamics of the actuator, the fluid in the inertia track, the foundation (vehicle body), and the attenuated vibrating object (AEM preload or engine). The proposed model is validated by three test cases without vibration excitation, which are performed with different AEM preloads and foundations. The AEM is considered as an active part and passive part, the mass of which is determined experimentally. Parameter effect on the dynamic characteristics of the secondary path of the AEM is studied based on three tests and a numerical simulation.
机译:主动发动机支架(AEM)提供了一种有效的解决方案,可以改善汽车的声学和振动舒适度。同样的AEM可以安装不同的发动机和不同的车身,并衰减发动机振动,这是最紧迫的挑战之一。为了研究这个问题,本文考虑了考虑到刚度的频率依赖性特性的发动机侧的AEM的输入电压和输出力之间的次要路径的数学模型,包括AEM的结构参数以及AEM的结构参数致动器的动力学,惯性轨道中的流体,基础(车身)和减毒振动物体(AEM预载物或发动机)。所提出的模型由三个测试用例验证,无振动激励,其用不同的AEM预载和基础进行。 AEM被认为是有源部分和无源部分,其质量是通过实验确定的。基于三次测试和数值模拟研究了对AEM二次路径的动态特性的参数效应。

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