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Performance-based step-length adaptation laws for path-following methods

机译:基于性能的步骤长度适应法律,用于路径跟踪方法

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A quasi-static problem is usually formulated by the equations of static equilibrium and a load parameter which shows the level of loading. Path-following methods are widely used to analyze these kinds of problems. These methods add a constraint function to the equilibrium equations in order to determine the loading evolution. There is a parameter in the constraint function, the step-length, which should be positive in each analysis step and which is determined by a step-length adaptation law. Different adaptation laws control the step-length growth differently, and thus, they influence the performance of the solution. We propose two novel types of adaptation laws based on (a) a local degree of smoothness and (b) global performance measures of the solution. The former uses the angle between the linearized solution path and the tangent to the analytical solution curve while the latter employs simple prediction models for the future evolution of two performance measures. Moreover, appropriate constraint functions for the latter are suggested. Example problems of structural damage are solved by path-following methods utilizing the proposed adaptation laws as well as a conventional one. Results show that the new laws raise distinct possibilities to have solutions with an improved performance. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通常通过静态平衡和载荷参数的方程式制定了准静态问题,其显示载荷水平。路径之后的方法广泛用于分析这些问题。这些方法将约束函数添加到平衡方程,以确定加载演化。在约束函数中存在一个参数,步长,在每个分析步骤中应该是正的,并且由步长适应法决定。不同的适应法律控制阶梯长度不同,因此,它们影响了解决方案的性能。我们提出了两种基于(a)局部平滑度的新型适应法律和(b)解决方案的全球性能措施。前者使用线性化解决方案路径与分析液曲线的切线之间的角度,而后者采用简单的预测模型以进行两种性能措施的进展。此外,建议了后者的适当约束函数。通过利用所提出的适应法以及传统的方法来解决结构损坏的示例问题。结果表明,新法律提出了具有改进性能的解决方案的不同可能性。 (c)2019 Elsevier Ltd.保留所有权利。

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