A Case of Application of Data Transforms

S. Spuzic
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Abstract

The recent implementations of Industry 4.0 and allied mathematical applications such as machine learning and big data analytics are conditioned by mathematizing the basic features of the observed system. For example, the key phenomena in a number of man-made processes are controlled by an orifice, an opening through which is passing a medium of interest. When the observed process is recursive, the related records indicate the possibility of extracting from the accumulating observations knowledge useful for the system optimisation. Many of the process variables such as chemical composition, velocities, temperatures, and forces, are recorded in a convenient digital format. This, however, is not always the case with the orifice geometry. Mathematical transforms presented hereby demonstrate how a broad variety of the orifice geometries can be defined in a generic mathematical format that allows for analysing them within the same observation space
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数据变换的一个应用实例
最近工业4.0的实施和相关的数学应用,如机器学习和大数据分析,都是以数学化观察系统的基本特征为条件的。例如,许多人造过程中的关键现象是由孔控制的,孔是通过感兴趣的介质的开口。当观测过程是递归的,相关记录表明从累积的观测知识中提取对系统优化有用的可能性。许多过程变量,如化学成分、速度、温度和力,都以方便的数字格式记录下来。然而,对于孔口几何形状,情况并非总是如此。本文提出的数学变换演示了各种各样的孔板几何形状是如何用一种通用的数学格式来定义的,这种格式允许在相同的观察空间内对它们进行分析
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