控制轧钢缺陷喷射水处理的智能模型

O. Ilyunin, M. Khodak, V. Pyrohov, O. Pasholoc, M. Tryhuba, S. Serdiuk
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引用次数: 0

摘要

介绍了一种用于轧制产品表面缺陷加氢处理的智能控制系统的结构,该系统符合欧洲“工业4.0”计划在节能和过程全面自动化方向上的概念。采用Kaczmarz-Widrow-Hoff算法对考虑的局部RBNN加氢处理模型进行了调优。用于确定加工流体压力当前任务的模型考虑了加工缺陷的厚度、工作流体组成的变化以及其磨蚀性能之间的关系。为了在相应的射流中形成给定的压力,下面的神经模型实时估计控制射流控制阀电驱动的电压的持续时间和极性。小尺寸模型输送机是一种很有前途的解决方案,用于控制水射流加工的金属,如圆锐边;复杂表面的研磨和抛光;焊缝去毛刺和清洁;涂层的表面处理;从表面去除缺陷;高精度水射流切割金属。该解决方案将TP的速度从1.2提高到1.96 [m/s]。考虑到模型的小尺寸和TP的相对较低的速度,基于所提出的模型的软件应用程序可以在控制系统中实现,以廉价的IIOT微控制器模块的形式对轧制金属产品进行加氢处理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
INTELLIGENT MODELS FOR CONTROL OF JET HYDRO-PROCESSING OF ROLLED STEEL DEFECTS
The structure of an intelligent control system for the hydro-processing of surface defects in rolled products is presented, which corresponds to the concept of the European program "Industry 4.0" in the direction of energy saving and total automation of processes. The considered local RBNN hydro-processing models are tuned using the Kaczmarz-Widrow-Hoff algorithm. The model for identifying the current task of the pressure of the processing fluid takes into account the relationship between the thickness of the processed defect, changes in the composition of the working fluid and, as a result, its abrasive properties. To form a given pressure in the corresponding jet, the following neural model estimates the duration and polarity of the voltage that controls the electric drive of the jet control valve in real time. The small-dimensional models’ conveyor is a promising solution for controlling waterjet processing of metals in such areas as rounding sharp edges; grinding and polishing complex surfaces; deburring and cleaning of welds; surface preparation for coating; removal of defects from the surface; high-precision waterjet cutting of metals. The solution will increase the speed of TP from 1.2 to 1.96 [m/s]. Taking into account the small dimensions of the models and the relatively low speed of the TP, a software application based on the proposed models can be implemented in the control system for the hydro-processing of rolled metal products in the form of an inexpensive IIOT microcontroller module.
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