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Inter-batch-evolution-traced process monitoring based on inter-batch mode division for multiphase batch processes

机译:基于批间模式划分的多阶段批处理批间演化跟踪过程监控

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摘要

The multiplicity of operation phases is an inherent nature of many batch processes and each phase exhibits significantly different behaviors. Besides process variation along the time direction within each batch, process variation along the batch direction, called inter-batch evolution here, widely exists in batch processes. Interbatch evolution has caused different operation modes along the batch direction, which may not be well captured by a single model. In this work, the inter-batch evolution is tracked, based on which multiple modes are separated and modeled for online process monitoring along the batch direction. First, a batch cycle is divided into multiple phases. Then sliding windows are constructed for analysis of the inter-batch evolution within each phase. Based on the comparison between reference windows and sliding windows, different process modes are separated in order along the batch direction. Four monitoring subspaces which cover different types of relative variations are used in monitoring. During online monitoring, these different variations are then supervised respectively to trace the inter-batch evolution. The application to a typical multiphase batch process with inter-batch evolution, injection molding start-up process, illustrates the feasibility and performance of the proposed algorithm.
机译:操作阶段的多样性是许多批处理过程的固有特性,每个阶段都表现出明显不同的行为。除了在每个批处理中沿着时间方向的过程变化之外,在批处理过程中还广泛存在沿着批处理方向的过程变化,这里称为批间演化。批间演变已导致沿批处理方向的不同操作模式,单个模型可能无法很好地捕获这些操作模式。在这项工作中,跟踪了批次间的演变,在此基础上,对多个模式进行了分离和建模,以沿批次方向进行在线过程监控。首先,批处理周期分为多个阶段。然后构建滑动窗口以分析每个阶段内的批间演变。基于参考窗口和滑动窗口之间的比较,沿批处理方向按顺序分离了不同的处理模式。监视中使用了四个覆盖不同类型的相对变化的监视子空间。在在线监视期间,然后分别监督这些不同的变化以跟踪批间的演变。应用于具有批间演化的典型多相批处理过程,注塑启动过程,说明了该算法的可行性和性能。

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