首页> 外文会议>Korean Society of Noise & Vibration Control;Institute of Noise Control Engineering;International congress and exposition on noise control engineering;ASME Noise Control & Acoustics Division >Operational transfer path analysis predicting contributions to the vehicle interior noise for different excitations from the same sound source
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Operational transfer path analysis predicting contributions to the vehicle interior noise for different excitations from the same sound source

机译:操作传递路径分析,预测来自相同声源的不同激励对车辆内部噪声的影响

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For a quantitative ranking of contributions from several sources via different transfer paths to a response, in this example the vehicle interior sound, Transfer Path Analysis is applied. The method used in this experiment is the Operational Transfer Path Analysis, which calculates linearized transfer functions between selected source and response channels using singular value decomposition. For the analysis, several multichannel measurements, containing synchronous data for structure- and air-borne sound, in different operating conditions were performed. The transfer functions calculated from an engine run-up measurement are used to analyze the contributions of the main sound sources over the dominant transfer paths to the vehicle interior noise. In addition, the excitation from the main source was altered while all other aspects of source and structure were kept the same. In this experiment the engine excitation was altered by changing parameters of the engine control unit. Using the calculated transfer functions, predictions of the vehicle interior noise for the altered excitations are evaluated. The resulting sound pressure level of the calculated vehicle interior sound is in accordance with the values from the original measurements.
机译:为了通过不同的传递路径对来自多个来源的贡献进行定量排名,在此示例中,使用车辆内部声音“传递路径分析”。本实验中使用的方法是“操作传递路径分析”,它使用奇异值分解计算选定源和响应通道之间的线性化传递函数。为了进行分析,在不同的操作条件下进行了多个多通道测量,其中包含结构和空气传播的声音的同步数据。由发动机加速测量计算出的传递函数用于分析主要声源在主要传递路径上对车辆内部噪声的影响。此外,改变了主要来源的激发,同时在来源和结构的所有其他方面保持不变。在该实验中,通过改变发动机控制单元的参数来改变发动机励磁。使用计算出的传递函数,可以评估对于改变后的激励的车辆内部噪声的预测。计算出的车辆内部声音的最终声压级与原始测量值一致。

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