首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Optimization method for powertrain mounting systems with uncertain parameters
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Optimization method for powertrain mounting systems with uncertain parameters

机译:参数不确定的动力总成悬置系统的优化方法

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摘要

This paper presents an interval optimization method to improve the design robustness of the decoupling layout and frequency allocation of powertrain mounting systems (PMSs). The effects of the uncertainties or variations of the powertrain inertia properties and design parameters on the optimization results are considered in the optimization process. Generally, it is difficult and costly to determine statistical information with sufficient precision for uncertain parameters, so here interval numbers are used to describe the uncertain parameters and only the bounds of them are required. Robustness indices of interval reliability and interval possibility degree are suggested for characterizing the robustness of PMS decoupling layout and frequency allocation respectively. The interval optimization problem is transformed to an equivalent deterministic one based on the robustness indices. The optimization results of a PMS show that the interval optimization method can significantly increase the robustness of the frequency allocation, especially in vertical and pitch directions. This will decrease the possibility of resonance between the powertrain and other parts, such as the wheel, car body, and frame. In contrast to the deterministic optimization method, although the decoupling ratios obtained by the proposed method decrease slightly, the interval optimization results can meet the decoupling layout requirement from the viewpoint of engineering.
机译:本文提出了一种间隔优化方法,以提高去耦布局的设计鲁棒性和动力总成安装系统(PMS)的频率分配。在优化过程中考虑了动力总成惯性特性和设计参数的不确定性或变化对优化结果的影响。通常,对于不确定参数,要以足够的精度确定统计信息是困难且昂贵的,因此这里使用间隔号来描述不确定参数,并且仅需要它们的界限。提出了区间可靠性和区间可能性度的鲁棒性指标,分别表征了PMS解耦布局和频率分配的鲁棒性。基于健壮性指标,将区间优化问题转换为等效的确定性问题。 PMS的优化结果表明,间隔优化方法可以显着提高频率分配的鲁棒性,尤其是在垂直和音高方向上。这将减少动力总成和其他零件(例如车轮,车身和车架)之间产生共振的可能性。与确定性优化方法相比,尽管该方法获得的解耦率略有下降,但从工程学的角度来看,区间优化结果可以满足解耦布局的要求。

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