Baseline method for structural vibration and noise optimization, partI: baseline sensitivity method

Author:

HONG Jiajun1,YOSHIMURA Takuya1

Affiliation:

1. Department of Mechanical Engineering, Tokyo Metropolitan University

Publisher

Japan Society of Mechanical Engineers

Reference13 articles.

1. Allemang, R. J and Brown, D. L., A Correlation Coefficient for Modal Vector Analysis, Proceedings, International Modal Analysis Conference (1982) , pp. 110-116.

2. Boeswald, M., Goege, D. and Fuellekrug, U., A review of experimental modal analysis methods with respect to their applicability to test data of large aircraft structures, Proceedings of the international conference on noise and vibration engineering ISMA, Vol.1 (2006), pp.2461-2482.

3. Durand, J. and Soize, C., Structural-acoustic modeling of automotive vehicles in presence of uncertainties and experimental identification and validation, The Journal of the Acoustical Society of America, Vol. 124, No.3 (2008), pp.1513-1525.

4. Fahy, F. J. and Mohammed, A. D., A study of uncertainty in applications of sea to coupled beam and plate systems, part I: Computational experiments, Journal of Sound and Vibration, Vol. 158, No.1 (1992), pp.45-67.

5. Hazra, S., and Reddy, JK A Review Paper on Recent Research of Noise and Vibration in Electric Vehicle Powertrain Mounting System, SAE International Journal of Vehicle Dynamics, Stability, and NVH, Vol. 6, No. 1 (2022), pp.3-22.

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