首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Reliability-based design optimization for vertical vibrations of a modified electric vehicle using fourth-moment polynomial standard transformation method
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Reliability-based design optimization for vertical vibrations of a modified electric vehicle using fourth-moment polynomial standard transformation method

机译:基于可靠性的设计优化,用于使用四矩多项式标准变换方法改进电动车辆的垂直振动

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摘要

This article presents a new reliability-based design optimization procedure for the vertical vibration issues raised by a modified electric vehicle using fourth-moment polynomial standard transformation method. First, the fourth-moment polynomial standard transformation method with polynomial chaos expansion is used to obtain the reliability index of uncertain constraints in the reliability-based design optimization which is highly precise and saves computing time compared with other common methods. Next, the half-car model with nonlinear suspension parameters for the modified electric vehicle is investigated, and the response surface methodology is adopted to approximate the complex and time-consuming vertical vibration calculation to the polynomial expressions, and the approximation is validated for reliability-based design optimization results within permissible error level. Then, reliability-based design optimization results under both deterministic and uncertain load parameters are shown and analyzed. Unlike the traditional vertical vibration optimization that only considers one or several sets of load parameters, which lacks versatility, this article presents the reliability-based design optimization with uncertain load parameters which is more suitable for engineering. The results show that the proposed reliability-based design optimization procedure is an effective and efficient way to solve vertical vibration optimization problems for the modified electric vehicle, and the optimization statistics, including the maximum probability interval, can provide references for other suspension dynamical optimization.
机译:本文介绍了一种基于新的可靠性的设计优化过程,用于使用第四轮型多项式标准变换方法由改进的电动车提出的垂直振动问题。首先,利用多项式混沌扩展的第四轮型多项式标准变换方法来获得可靠性的设计优化中不确定约束的可靠性指标,其与其他常用方法相比高精度并节省了计算时间。接下来,研究了具有用于改进的电动车辆的非线性悬架参数的半汽车模型,采用响应面方法近似于多项式表达式的复杂和耗时的垂直振动计算,并且验证近似值 - 基于的设计优化结果在允许的错误级别内。然后,示出并分析了在确定性和不确定负载参数下的基于可靠性的设计优化结果。与传统的垂直振动优化不同,仅考虑一个或多个缺乏通用性的负载参数,本文介绍了基于可靠性的设计优化,不确定的负载参数更适合工程。结果表明,基于可靠性的设计优化程序是解决改进电动车辆的垂直振动优化问题的有效和有效的方法,以及包括最大概率间隔的优化统计,可以为其他悬架动态优化提供参考。

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