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Evaluation of off-highway vehicle cab noise and vibration using inverse matrix techniques

机译:使用逆矩阵技术评估越野车辆驾驶室噪声和振动

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Noise Path Analysis techniques (NPA) have been developed and refined by the automotive industry for structure-borne noise and vibration evaluation of their products. Off-highway vehicles, particularly those with enclosed cabs, are excellent candidates for the application of these techniques. Like automobiles, many off-highway machines are typically driven by a rotating power source, have a well-defined acoustic receiver space, and use some form of isolation between source and receiver subsystems. These structural characteristics make NPA a useful tool for identifying dominant sources and energy transfer paths. The objectives of this paper are to revisit the fundamental theory of matrix inversion as it applies to NPA techniques, and to address the common setup and measurement issues encountered when acquiring noise path data on off-highway machines. A general overview of the procedures involved in applying NPA to an off-highway machine will be presented. Selection and measurement of target frequency response functions (FRF), as well as the measurement of vibro-acoustic FRF's using reciprocal techniques, will be discussed. Sub-system selection and appropriate measurement boundary conditions will also be emphasized.
机译:通过汽车行业开发和精炼噪声路径分析技术(NPA),用于其产品的结构传播和振动评估。偏离公路车辆,特别是具有封闭式驾驶室的车辆,是应用这些技术的优秀候选者。像汽车一样,许多脱气机通常由旋转电源驱动,具有明确定义的声学接收空间,并在源极和接收器子系统之间使用某种形式的隔离。这些结构特征使NPA成为识别主导来源和能量转移路径的有用工具。本文的目标是重新审视矩阵反转的基本理论,因为它适用于NPA技术,并在从高速公路机上获取噪声路径数据时遇到的常见设置和测量问题。将介绍将NPA应用于非公路机的程序的一般概述。将讨论目标频率响应函数(FRF)的选择和测量,以及使用互易技术的vibro-acoustic frf的测量。还将强调子系统选择和适当的测量边界条件。

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