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A starting-point strategy for interior-point algorithms for shakedown analysis of engineering structures

机译:用于工程结构减振分析的内点算法的起点策略

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摘要

Lower-bound shakedown analysis leads to nonlinear convex optimization problems with large numbers of unknowns and constraints, the solution of which can be obtained efficiently by interior-point algorithms. The performance of these algorithms strongly depends on the choice of the starting point. In general, starting points should be located inside the feasible region. In addition, they should also be well centred. Although there exist several heuristics for the construction of suitable starting points, these are restricted, as long as only the mathematical procedure is considered without taking into account the nature of the underlying mechanical problem. Thus, in this article, a strategy is proposed for choosing appropriate starting points for interior-point algorithms applied to shakedown analysis. This strategy is based on both the mathematical characteristics and the physical meaning of the variables involved. The efficiency of the new method is illustrated by numerical examples from the field of power plant engineering.
机译:下界震动分析会导致带有大量未知数和约束条件的非线性凸优化问题,可以通过内点算法有效地获得其解。这些算法的性能在很大程度上取决于起点的选择。通常,起点应位于可行区域内。此外,它们也应该居中。尽管存在一些构造合适的起点的试探法,但是这些试探法受到限制,只要仅考虑数学过程而不考虑潜在机械问题的性质即可。因此,在本文中,提出了一种策略,该策略用于为应用于击倒分析的内点算法选择合适的起点。该策略基于所涉及变量的数学特征和物理含义。电厂工程领域的数值示例说明了该新方法的效率。

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