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Lower and upper bound limit analysis via the alternating direction method of multipliers

机译:通过乘法器的交替方向方法降低和上限分析

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摘要

Computational limit analysis methods invariably lead to the need to solve a mathematical programming problem. The alternating direction method of multipliers (ADMM) is one versatile and robust technique to solve non-linear convex optimization problems that has recently found applications in a wide range of fields. Its solution scheme, based on an operator splitting algorithm, is not only easy to implement but also suitable to efficiently solve large-scale variational problems. Starting from the ADMM framework, we derive a strict upper bound finite element formulation using a two-(primal)-field approximation, one for the velocity field and the other for the plastic strain rate field. Next, following a similar approach, we develop a novel strict lower bound formulation. Here, the two-(primal)-field model is based on a redundant approximation of the stress field. Duality principles are then explored in order to unify these two formulations.The effectiveness of this approach is demonstrated on test problems and, to conclude, some considerations are made about the performance results.
机译:计算限制分析方法总是导致解决数学编程问题的需要。乘法器(ADMM)的交替方向方法是一种多功能且坚固的技术,可以解决最近发现在各种字段中的非线性凸优化问题。其解决方案方案基于操作员分裂算法,不仅易于实现,而且还适合有效地解决大规模的变分问题。从ADMM框架开始,我们使用一个用于速度场的两个(原始) - 域近似来得出严格的上限有限元配方,另一个用于塑料应变率场。接下来,遵循类似的方法,我们开发了一种新的严格下限配方。这里,两个(原始) - 场模型基于应力场的冗余近似。然后探讨了二元原则,以统一这两个配方。在测试问题上证明了这种方法的有效性,并结束了关于绩效结果的一些考虑因素。

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