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The application of power-based transfer path analysis to passenger car structure-borne noise

机译:基于功率的传递路径分析在乘用车结构噪声中的应用

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摘要

Structure-borne noise in a passenger car is usually transmitted through multiple and/or multi-dimensional paths. Therefore, identification and control of these transfer paths are effective measures for noise reduction. A power-based transfer path analysis methodology is proposed for this purpose. First, the power flow of each transfer path is estimated with an equivalent-uncoupled-system method based on linear network theory and the Thevenin equivalent theorem. Next, the correlation between the power flow of each transfer path and the sound pressure in the passenger compartment is established; then the contribution of each transfer path is ranked; meanwhile the dominant paths and their key parameters are identified through the equations of power flow calculation. Finally, these key parameters can be analysed and then improved to reduce the structure-borne noise. An illustration of this methodology is given with a passenger car model containing a power plant, three mounts, a compliant car body, and an enclosed acoustic cavity. It is demonstrated that the methodology is effective to analyse and control the structure-borne noise transfer paths. [PUBLICATION ABSTRACT]
机译:乘用车中的固体声通常通过多个和/或多维路径传播。因此,识别和控制这些传输路径是降低噪声的有效措施。为此,提出了一种基于功率的传输路径分析方法。首先,利用基于线性网络理论和戴维南等效定理的等效解耦系统方法,估算每个传输路径的功率流。接下来,建立每个传递路径的功率流与乘客室中的声压之间的相关性;然后对每个传输路径的贡献进行排名;同时通过潮流计算方程确定了主要路径及其关键参数。最后,可以对这些关键参数进行分析,然后进行改进以减少结构噪声。乘用车模型给出了该方法的说明,该乘用车模型包含发电厂,三个底座,顺应性的车身和封闭的声腔。结果表明,该方法可以有效地分析和控制固体声传递路径。 [出版物摘要]

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