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Towards a lifecycle oriented design of infrastructure by mathematical optimization

机译:通过数学优化实现面向生命周期的基础架构设计

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Today's infrastructures are mainly designed heuristically using state-of-the-art simulation software and engineering approaches. However, due to complexity, only part of the restrictions and costs that show up during the lifecycle can be taken into account. In this paper, we focus on a typical and important class of infrastructure problems, the design of high-pressure steam pipes in power plants, and describe a holistic approach taking all design, physical, and technical constraints and the costs over the full lifecycle into account. The problem leads to a large-scale mixed-integer optimization problem with partial differential equation (PDE) constraints which will be addressed hierarchically. The hierarchy consists of a combinatorial and a PDE-constrained optimization problem. The final design is evaluated with respect to damage, using beam models that are nonlinear with respect to kinematics as well as constitutive law. We demonstrate the success of our approach on a real-world instance from our industrial partner Bilfinger SE.
机译:当今的基础架构主要是使用最新的仿真软件和工程方法进行启发式设计的。但是,由于复杂性,只能考虑生命周期中显示的部分限制和成本。在本文中,我们着眼于典型和重要的基础设施问题类别,即电厂高压蒸汽管道的设计,并描述了一种将所有设计,物理和技术约束以及整个生命周期内的成本纳入考虑范围的整体方法。帐户。该问题导致具有部分微分方程(PDE)约束的大规模混合整数优化问题,将对其进行分层处理。层次结构由组合和PDE约束的优化问题组成。使用关于运动学和本构定律是非线性的梁模型,评估最终设计的损伤程度。我们从工业合作伙伴Bilfinger SE的实际实例中证明了我们的方法成功。

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