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Intelligent Signal Validation System for Cupola Furnace, Part II: System Integration, Testing and Analysis

机译:Cupola Furnace智能信号验证系统,第二部分:系统集成,测试和分析

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In Part I of this research (Paper 99-77),~1 the motivation behind the signal validation system for the cupola furnace was presented. A methodology for developing an artificial neural network rule-based filter and trend estimator (ANN-RBFTE) and inferential sensors for the molten-iron temperature was described. In this paper, we present the testing results of the filter and inferential sensors, using cupola experimental data. A methodology for building a signal validation system for the cupola, by fusing the data from the ANN-RBFTE and the inferential sensors, is also described. The signal validation system is tested using experimental data from a cupola furnace. The testing results verify the excellent performance provided by the validation system. This research provides a solid foundation for the implementation of the signal validation system to other measurands in the cupola and to other industrial plants.
机译:在本研究的第一部分(纸张99-77)中,〜1提出了圆顶炉信号验证系统的动机。描述了一种用于开发基于人工网络规则的滤波器和趋势估计器(ANN-RBFTE)和用于铁水温度的推理传感器的方法。在本文中,我们介绍了滤波器和推理传感器的测试结果,使用圆顶玉米实验数据。还描述了通过融合来自Ann-RBFTE和推理传感器的数据来构建用于Cupola的信号验证系统的方法。信号验证系统使用来自圆顶炉的实验数据进行测试。测试结果验证了验证系统提供的优异性能。本研究为将信号验证系统实施到CUNOLA和其他工厂的其他尺寸提供了坚实的基础。

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