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Deciphering Wiener and Ashby black box in the problem of dynamic identification and automation of metallurgical process

机译:冶金工艺动态识别与自动化问题中的解密维纳和ashby黑色盒子

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摘要

Mathematical modeling of the physico – chemical phenomena dynamics of metallurgical facilities with the purpose of further calculation of values of control parameters is knowledge-intensive, and cost is sometimes higher than the benefit from the use of these models. Thus powerful computing resources of automation are used only partially – mainly for acquisition, display, storage of information and simple, single-linked control tasks.The paper proposes a mathematical apparatus for modeling the dependence of the studied output parameter on the set of input parameters affecting it, independent of the parameters of internal physical and chemical transformations of the metallurgical process. Explanations are given by the example of a specific facility. The maximum discrepancy between the model and the initial data by the results of the study was 0.18%.
机译:冶金设施的物理化学现象动态的数学建模,目的是进一步计算控制参数值的目的是知识密集型,并且成本有时高于这些模型的使用中的益处。 因此,自动化的强大计算资源仅部分地用于采集,显示,存储信息和简单的单链控制任务。本文提出了一种用于建模研究的输出参数对输入参数集的依赖性的数学仪器 影响它,独立于冶金过程的内部物理和化学转化参数。 通过特定设施的示例给出的说明。 该研究结果与初始数据之间的最大差异为0.18%。

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