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UNIFIED CONTROL OF PRODUCTION, CAPACITY, AND PRE-EMPTIVE MAINTENANCE OF FUSED FILAMENT FABRICATION PROCESS

机译:熔丝制造过程的生产,产能和维护前的统一控制

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The quest for smarter manufacturing is motivating the need for operational decisions to be made in real-time to adapt to uncertainties. Prevailing decision-making techniques typically consider each manufacturing function in isolation to reduce the complexity, which in turn leads to sequential decision-making where prior decisions become constraints for subsequent decisions. This paper proposes a unified approach for simultaneously controlling the timing of production events, the timing of maintenance events, and physical processing capacity. Moreover, the control algorithms can be fully distributed and exploit physics-based models for processes and remaining-useful-life of machinery components in real-time decisionmaking. Fused Filament Fabrication (FFF) additive manufacturing process is used as an example in the paper to demonstrate the unified approach. Dynamics of the resulting unified control system is modeled using non-linear discontinuous differential equations. Computer simulations are used to illustrate dynamic interactions between production and maintenance functions. Benchmarking of the unified control approach for randomly generated datasets show superior performance compared to other commonly used scheduling heuristics by about 48%.
机译:对智能制造的追求促使人们需要实时做出操作决策,以适应不确定性。流行的决策技术通常独立地考虑每个制造功能以降低复杂性,这又导致顺序决策,其中先前的决策成为后续决策的约束。本文提出了一种用于同时控制生产事件的时间,维护事件的时间和物理处理能力的统一方法。此外,控制算法可以完全分发,并且可以在实时决策中利用基于物理的模型来处理机械组件的过程和剩余使用寿命。本文以熔融长丝制造(FFF)增材制造工艺为例来说明统一方法。使用非线性不连续微分方程对所得的统一控制系统的动力学进行建模。计算机模拟用于说明生产和维护功能之间的动态交互。与其他常用的调度试探法相比,针对随机生成的数据集的统一控制方法的基准测试显示出优越的性能。

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