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Application of global sensitivity analysis to statistical energy analysis: Vehicle model development and transmission path contribution

机译:全局灵敏度分析在统计能量分析中的应用:车辆模型开发和传输路径贡献

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This paper focuses on prediction of the sound pressure level inside a vehicle by using statistical energy analysis (SEA) and control of the noise within limited trim materials for vehicle weight reduction. To this end, a vehicle SEA model was developed considering the effects of the SEA parameter uncertainties on the prediction results. Thereafter, the contributions of the sound transmission losses of several vehicle components and the absorptivity of the vehicle interior to the sound pressure level were identified. Global sensitivity analysis was performed to evaluate both the effects of the SEA parameter uncertainties and the contribution of the acoustical performance. Only the most influential SEA parameters were calculated or measured to reflect the characteristics of the acoustic material. Our results revealed that the sound pressure levels calculated by using the simplified SEA model agreed well with the measured values. Finally, based on the influences of the acoustic performances of the vehicle components on the interior noise, the design of the trim materials on the dash, which was one of the sensitive components, was modified and compared to the initial design and conventional lightweight design in terms of interior noise and weight. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文着重于通过统计能量分析(SEA)预测车辆内部的声压级,并控制有限的内饰材料中的噪声以减轻车辆的重量。为此,考虑到SEA参数不确定性对预测结果的影响,开发了车辆SEA模型。此后,确定了几个车辆部件的传声损失和车辆内部对声压级的吸收率的贡献。进行全局灵敏度分析以评估SEA参数不确定性的影响和声学性能的影响。仅计算或测量最具影响力的SEA参数以反映声学材料的特性。我们的结果表明,使用简化的SEA模型计算出的声压级与测量值非常吻合。最后,根据车辆部件的声学性能对内部噪声的影响,对仪表板上装饰材料的设计(即敏感部件之一)进行了修改,并与初始设计和传统的轻量化设计进行了比较。内部噪音和重量方面。 (C)2018 Elsevier Ltd.保留所有权利。

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