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The Sensitivity Analysis of Engine Mounting System's Inertial Parameters Based on The Orthogonal Test

机译:发动机安装系统的惯性参数基于正交试验的敏感性分析

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This paper analyze the variation of the inertial parameters of the powertrain based on the orthogonal test, and their effect on the vibration characteristics of the system. Then the paper designs a test plan of the two levels orthogonal test with 6 facts by establishing a mathematical model of 6-dof in engine-mount system. We spend 8 times having done the orthogonal computation with MATLAB. The experiment results bring us the average of the changes of two levels decoupling owned by the mounting system's 6 rank inherent characteristics on each direction. And this changes are caused by the fluctuating of inertial parameters. Finally, we analyze the variation of the rotational inertial and the inertial integrated parameters, and their influence on the quality level of the sensitivity on the all decoupling parameters in engine-mounting system on each direction. Combined with the calculation examples in the thesis, we discuss the individual inertial parameters of the engine-mounting system, which is the crucial design parameters of sensitivity analysis, and have provided a parameter basis for the design of engine-mounting system.
机译:本文分析了基于正交试验的动力总成的惯性参数的变化,以及它们对系统振动特性的影响。然后,本文通过在发动机安装系统中建立6-DOF的数学模型,设计了两个正交测试的测试计划。我们花了8次与Matlab完成了正交计算。实验结果为我们带来了安装系统的6个级别的两个水平解耦的平均变化的平均值。并且这种变化是由惯性参数的波动引起的。最后,我们分析了旋转惯性和惯性综合参数的变化,以及它们对每个方向上发动机安装系统中所有解耦参数的敏感性质量水平的影响。结合本文的计算实施例,我们讨论了发动机安装系统的个体惯性参数,这是灵敏度分析的关键设计参数,并且为发动机安装系统的设计提供了参数依据。

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