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Efficient Method for Optimizing Calcium Silicate Masonry Unit Manufacturing Using Simulation-Based Optimization and Decomposition

机译:利用仿真优化和分解优化硅酸钙砌体单元制造的高效方法

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This paper describes a holistic, simulation-based optimization approach to control plant operations for manufacturing calcium silicate masonry units (CS). Starting from an investigation and classification of the CS production, specific target criteria are derived. To enable the influencing of these targets, relevant parameters including their mutual interdependencies are identified. On this basis, the criticality of each process step is assessed in order to determine improvement potentials and to investigate possible adjustments to the parameters. The elementary production types indicate a mix of the discontinuous and continuous processing in CS plants. Particularly, this work shows that through interrupting the continuous material flow, the hardening process is the main criterion for a plant's success in meeting its targets, especially concerning energy efficiency. To achieve a feasible approach, the work develops a solving method geared to an optimized hardening process. Therefore, a formulation of a measureable target system is established, which is the prerequisite for modeling the whole optimization problem. An expedient decomposition of this optimization model to smaller sub-problems provides an efficient solving of these complex job-scheduling problems, in order to direct the method towards an operative use. The paper concludes with the determination of potential solving procedures for the overall problem and appropriate algorithms for solving the sub-problems.
机译:本文介绍了一种整体,仿真的优化方法来控制制造硅酸钙砌体单元(CS)的植物操作。从CS生产的调查和分类开始,得出特定的目标标准。为了实现这些目标的影响,确定了包括其相互相互依赖性的相关参数。在此基础上,评估每个过程步骤的临界性以确定改进电位并调查可能的参数调整。基本生产类型表示CS植物中不连续和连续加工的混合。特别是,这项工作表明,通过中断连续材料流动,硬化过程是植物在满足其目标方面取得成功的主要标准,特别是关于能效。为了实现可行的方法,该工作开发了一种求解到优化的硬化过程的求解方法。因此,建立了可测量的目标系统的制定,这是模拟整个优化问题的先决条件。这种优化模型的权宜解分解为较小的子问题提供了对这些复杂的作业调度问题的有效解决,以便指导该方法朝向操作用途。本文得出结论,确定潜在的解决程序,用于解决副问题的整体问题和适当的算法。

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