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VEHICLE FLOOR CARPET ACOUSTIC OPTIMIZATION USING STATISTICAL ENERGY ANALYSIS METHOD

机译:使用统计能量分析方法的车辆地板地毯声学优化

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Optimizing acoustic performance of a vehicle at component or system levels is always a challenge to NVH Engineers. This paper is to develop a full vehicle statistical energy analysis (SEA) model for acoustic package application and focus on floor carpet system design optimization over cost and weight. Simplification and remodelling process of a vehicle SEA model were achieved from importing CAD model into the AUTOSEA2 software. A procedure of the model development in AUTOSEA2 was described and the vehicle was remodelled using plate/shell functions. The excitation and cavities were then applied to the model. Finally vehicle trim components in the model were assigned by correct materials. After the AUTOSEA2 model was established, vehicle acoustic transfer function tests have been conducted to validate the vehicle AUTOSEA 2 model. Taguchi method has been introduced to find which location of the vehicle floor carpet will have the largest influences on the sound pressure levels inside the passenger compartment in consideration of power-train and tyre-road noise excitation.
机译:在组件或系统级别优化车辆的声学性能始终是对NVH工程师的挑战。本文为开发了一种用于声学封装应用的全车辆统计能量分析(SEA)模型,并专注于地毯系统设计优化超过成本和重量。从将CAD模型导入AutoSea2软件,实现了车辆海模型的简化和重塑过程。描述了Autosea2中的模型开发的过程,并且使用板/壳功能来改造车辆。然后将激发和腔应用于模型。最后通过正确的材料分配模型中的车辆修剪组件。建立了Autosea2模型后,已经进行了车辆声学传递函数测试以验证车辆AutoSea 2模型。已经介绍了Taguchi方法,以查找车辆地毯的哪个位置将考虑到动力列车和轮胎 - 道路噪声激发的乘客舱内的声压水平的最大影响。

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