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Excitation force analysis of a powertrain based on CAE technology

机译:基于CAE技术的动力总成激励力分析

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The excitation force of a powertrain is one of major sources of interior noise in a vehicle. This paper presents a novel approach to predict the interior noise caused by the vibration of the powertrain by using the hybrid TPA (transfer path analysis) method. Although the traditional transfer path analysis (TPA) is useful for the identification of powertrain noise sources, it is difficult to modify the structure of a powertrain by using experiments for the reduction of vibration and noise. In order to solve this problem, the vibration of the powertrain in a vehicle is numerically analyzed by using the finite element method (FEM). The vibration of the other parts of the vehicle is investigated by using experiments based on vibrato-acoustic transfer function (VATF) analysis. These two methods are combined for the prediction of interior noise caused by a powertrain. Throughout this research, two papers are presented. This paper presents a simulation of the excitation force of the powertrain exciting the vehicle body based on numerical simulation. The other paper presents a prediction of interior noise based on the hybrid TPA, which uses the VATF of the car body and the excitation force predicted in this paper.
机译:动力总成的激励力是车辆内部噪声的主要来源之一。本文提出了一种新的方法,通过使用混合TPA(传递路径分析)方法来预测由动力总成的振动引起的内部噪声。尽管传统的传递路径分析(TPA)可用于识别动力总成噪声源,但很难通过使用减少振动和噪声的实验来修改动力总成的结构。为了解决该问题,通过使用有限元法(FEM)对车辆中的动力总成的振动进行了数值分析。通过使用基于振动声传递函数(VATF)分析的实验来研究车辆其他部分的振动。结合这两种方法来预测由动力总成引起的内部噪声。在整个研究过程中,提出了两篇论文。本文基于数值模拟,给出了动力总成对车身的激励力的仿真。另一篇论文提出了基于混合TPA的内部噪声预测,该混合TPA利用了车身的VATF和本文预测的激励力。

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