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PROBABILISTIC ANALYSIS OF A METAMORPHIC MECHANISM BASED ON A GLOBAL SENSITIVITY ANALYSIS: A PRELIMINARY STUDY

机译:基于全局敏感性分析的变质机制概率分析:初步研究

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Mathematical modeling is an important part of the engineering design cycle. Most models require application specific input parameters that are established by calculation or experiment. The accuracy of model predictions depends on underlying model assumptions as well as how uncertainty in knowledge of the parameters is transmitted through the mathematical structure of the model. Knowledge about the relative impact of individual parameters can help establish priorities in developing/choosing specific parameters and provide insight into a range of parameters that produce'equally good' designs. In this work Global Sensitivity Analysis (GSA) is examined as a technique that can contribute to this insight by developing Sensitivity Indices, a measure of the relative importance, for each parameter. The approach is illustrated on a kinematic model of a metamorphic 4-bar mechanism. The model parameters are the lengths of the four links. The results of this probabilistic analysis highlight the synergy that must exist between all four link lengths to create a design that can follow the desired motion path. The impact of individual link lengths, however, rises and falls depending on where the mechanism is along its motion path.
机译:数学建模是工程设计周期的重要组成部分。大多数模型都需要通过计算或实验建立的应用程序特定的输入参数。模型预测的准确性取决于底层模型假设以及如何通过模型的数学结构传输参数的知识的不确定性。关于各个参数的相对影响的知识可以帮助在开发/选择特定参数方面建立优先级,并提供对产生的一系列参数的洞察力。在这项工作中,全局敏感性分析(GSA)被检查为通过开发灵敏度指数,对每个参数的相对重要性的衡量标准有助于这种技术的技术。该方法在变形4bar机构的运动学模型上示出。模型参数是四个链路的长度。此概率分析的结果突出了必须存在于所有四个链路长度之间的协同作用,以创建可以遵循所需运动路径的设计。然而,各个连杆长度的影响取决于机制沿其运动路径的位置上升和下降。

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