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Process modeling and control applied to real-time monitoring of distillation processes by near-infrared spectroscopy

机译:近红外光谱法实时监测蒸馏过程的过程建模与控制

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A distillation device that acquires continuous and synchronized measurements of temperature, percentage of distilled fraction and NIR spectra has been designed for real-time monitoring of distillation processes. As a process model, synthetic commercial gasoline batches produced in Brazil, which contain mixtures of pure gasoline blended with ethanol have been analyzed. The information provided by this device, i.e., distillation curves and NIR spectra, has served as initial information for the proposal of new strategies of process modeling and multivariate statistical process control (MSPC). Process modeling based on PCA batch analysis provided global distillation trajectories, whereas multiset MCR-ALS analysis is proposed to obtain a component-wise characterization of the distillation evolution and distilled fractions. Distillation curves, NIR spectra or compressed NIR information under the form of PCA scores and MCR-ALS concentration profiles were tested as the seed information to build MSPC models. New online PCA-based MSPC approaches, some inspired on local rank exploratory methods for process analysis, are proposed and work as follows: a) MSPC based on individual process observation models, where multiple local PCA models are built considering the sole information in each observation point; b) Fixed Size Moving Window - MSPC, in which local PCA models are built considering a moving window of the current and few past observation points; and c) Evolving MSPC, where local PCA models are built with an increasing window of observations covering all points since the beginning of the process until the current observation. Performance of different approaches has been assessed in terms of sensitivity to fault detection and number of false alarms. The outcome of this work will be of general use to define strategies for on-line process monitoring and control and, in a more specific way, to improve quality control of petroleum derived fuels and other substances submitted to automatic distillation processes monitored by NIRS. (C) 2017 Elsevier B.V. All rights reserved.
机译:设计了一种蒸馏装置,其获得温度连续和同步测量,蒸馏馏分和NIR光谱的百分比用于实时监测蒸馏过程。作为过程模型,已经分析了巴西生产的合成商业汽油批次,其含有与乙醇混合的纯汽油混合物。该设备提供的信息,即蒸馏曲线和NIR光谱,已作为初始信息,以提出新的过程建模和多变量统计过程控制(MSPC)的新策略。基于PCA批量分析的过程建模提供了全球蒸馏轨迹,而提出了多种MCR-ALS分析以获得蒸馏进化和蒸馏馏分的组分 - 方面表征。在PCA分数和MCR-ALS浓度分布的形式下测试蒸馏曲线,NIR光谱或压缩NIR信息作为种子信息,以构建MSPC模型。基于新的在线PCA的MSPC方法,有些灵感在局部排名的过程分析中的探索方法,如下:a)基于各个过程观察模型的MSPC,其中建立了多个本地PCA模型在每个观察中的唯一信息建立观点; b)固定尺寸移动窗口 - MSPC,其中考虑到当前和少数过去观察点的移动窗口建立了本地PCA模型; C)演化的MSPC,其中包括覆盖过程开始以来的所有点的观察窗口的窗口建立了本地PCA模型,直到当前观察。在对故障检测和错误警报的数量的敏感性方面,已经评估了不同方法的性能。这项工作的结果将是一般用来定义在线过程监测和控制的策略,并以更具体的方式,提高石油衍生燃料的质量控制和提交给NIR监测的自动蒸馏过程的其他物质。 (c)2017 Elsevier B.v.保留所有权利。

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