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首页> 外文期刊>Journal of Sound and Vibration >Excitation force identification of an engine with velocity data at mounting points
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Excitation force identification of an engine with velocity data at mounting points

机译:利用安装点处的速度数据识别发动机的激励力

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摘要

This paper describes how to reconstruct the excitation force of a typical engine from the measured velocity data at mounting points. The theoretical analysis is carried out at first to get the equations for the force re-construction. It indicates that with the full information of velocity (amplitude and phase) at all mounting points, the excitation force and moment at the center of gravity of engine can be exactly retrieved. Due to the difficulty in measuring the absolute values of the phases, Further study is carried out to investigate the possibility to reconstruct the force and moment only with the velocity amplitude as well as the phase difference between three directions at each mounting point. A group of overdetermined equations are derived and solved with optimization methods rather than the conventional numerical method. It is found that with combination of genetic and gradient-based algorithms, the excitation force and moment of engine can be well-established based on the velocity spectra and phase angle difference of velocities. (C) 2001 Academic Press. [References: 13]
机译:本文描述了如何从安装点处测得的速度数据重建典型发动机的激励力。首先进行理论分析,得到力重建的方程。它表明,利用所有安装点处的速度(振幅和相位)的全部信息,可以精确地获取发动机重心处的激振力和力矩。由于难以测量相位的绝对值,因此进行了进一步的研究,以研究仅利用速度振幅以及每个安装点的三个方向之间的相位差来重构力和力矩的可能性。推导了一组超定方程,并使用优化方法而不是常规的数值方法进行求解。研究发现,结合遗传算法和基于梯度的算法,可以根据速度谱和速度的相位差,很好地建立发动机的激励力和力矩。 (C)2001学术出版社。 [参考:13]

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