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An extended Tennessee Eastman simulation dataset for fault-detection and decision support systems

机译:用于故障检测和决策支持系统的扩展田纳西州Eastman仿真数据集

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摘要

The Tennessee Eastman Process (TEP) is a frequently used benchmark in chemical engineering research. An extended simulator, published in 2015, enables a more in-depth investigation of TEP, featuring additional, scalable process disturbances as well as an extended list of variables. Even though the simulator has been used multiple times since its release, the lack of a standardized reference dataset impedes direct comparisons of methods. In this contribution we present an extensive reference dataset, incorporating repeat simulations of healthy and faulty process data, additional measurements and multiple magnitudes for all process disturbances. All six production modes of TEP as well as mode transitions and operating points in a region around the modes are simulated. We further perform fault-detection based on principal component analysis combined with T2 and Q charts using average run length as a performance metric to provide an initial benchmark for statistical process monitoring schemes for the presented data.
机译:田纳西州伊斯特曼流程(TEP)是化学工程研究中经常使用的基准。发布于2015年的扩展模拟器,可更深入地调查TEP,具有额外的,可扩展的过程干扰以及扩展的变量列表。尽管模拟器已被释放以来多次使用,但缺少标准化的参考数据集阻碍了对方法的直接比较。在这一贡献中,我们介绍了一个广泛的参考数据集,包括重复模拟健康和故障的过程数据,额外的测量和所有过程干扰的多个大小。模拟了TEP的所有六种生产模式以及模式周围的区域中的模式转换和操作点。我们进一步基于主成分分析来执行故障检测,使用平均运行长度与T2和Q图表相结合,作为性能度量,为所提出的数据提供统计过程监视方案的初始基准。

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