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Vehicle NVH Prediction Technique for Engine Downsizing

机译:发动机缩小规模的车辆NVH预测技术

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As fuel prices continue to be unstable the drive towards more fuel efficient powertrains is increasing. For engine original equipment manufacturers (OEMs) this means engine downsizing coupled with alternative forms of power to create hybrid systems. Understanding the effect of engine downsizing on vehicle interior NVH is critical in the development of such systems. The objective of this work was to develop a vehicle model that could be used with analytical engine mount force data to predict the vehicle interior noise and vibration response. The approach used was based on the assumption that the largest contributor to interior noise and vibration below 200 Hz is dominated by engine mount forces. An experimental transfer path analysis on a Dodge Ram 2500 equipped with a Cummins ISB 6.7L engine was used to create the vehicle model. The vehicle model consisted of the engine mount forces and vehicle paths that define the interior noise and vibration. The same engine mount forces were calculated analytically and imported into the vehicle model to compare against experimental results. Good correlation between engine mount forces enabled the vehicle model to be used with analytically calculated I4 engine mount forces to predict interior response. The predicted interior noise and vibration results were used to define powertrain bending and engine radiated noise and vibration targets.
机译:随着燃料价格继续不稳定,朝向更多燃油效率的动力驱动正在增加。对于发动机原始设备制造商(OEM)这意味着发动机缩小化耦合替代形式的电源来创建混合系统。了解发动机缩小尺寸对车辆内部的影响NVH在这种系统的发展中至关重要。这项工作的目的是开发一种可以与分析发动机安装力数据一起使用的车型,以预测车辆内部噪声和振动响应。使用的方法是基于假设,最大贡献者在200Hz以下的内部噪音和振动的最大贡献者由发动机安装力主导。用吊顶2500配备有康明斯ISB 6.7L发动机的实验转移路径分析来创建车辆模型。车辆模型包括发动机安装力和限定内部噪声和振动的车辆路径。在分析上计算相同的发动机安装力并进口到车辆模型中以与实验结果进行比较。发动机安装力之间的良好相关性使得具有用于分析计算的I4发动机安装力的车辆模型来预测内部响应。预测的内部噪声和振动结果用于定义动力总成弯曲和发动机辐射噪声和振动靶。

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