Information Processing Algorithms in the Steel-Teeming Ladles Tracking System in Steelmaking

Y. Trofimenko, E. Ershov, I. Varfolomeev
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Abstract

Purpose of research. The purpose of research is to increase the efficiency of control over the movement of steel ladles in steelmaking, through the development of mathematical and software.Methods. The control of the movement of steel-pouring ladles can be divided into 2 parts: the first is the object detection in the image from a camera located on a certain section of the route, followed by determining the position of the object in the frame, and the second part is identification based on an array of data from different systems. Methods used in research are: mathematical modeling, neural networks, the basics of the theory of algorithms construction, as well as software and hardware of modern computer technologies. The article describes a model for the routes generation for the movement of steel ladles, on the basis of which the control of the movement of steel ladles is carried out. Algorithmic support is a combination of such algorithms as: an algorithm for generating possible routes for moving steel ladles, an algorithm for determining the position of a steel ladle on a route for moving steel ladles, an algorithm for identifying a steel ladle and a generalized algorithm for processing information. The structuralfunctional organization of the tracking system for steel-pouring ladles in steel-smelting production is given.Results. Experimental verification of algorithmic support was carried out on a test data set, which was formed from real technological data. Adaptation and tuning of the algorithms and software will make it possible to apply this software system in steelmaking plants with a different composition of plant units.Conclusion. Control over the movement of steel ladles allows build the process so that the movement of liquid steel will cause minimal heat loss. The need to heat steel in secondary processing units is correlates with energy costs. Thus, reducing heat loss and downtime of steel ladles will reduce energy costs for the entire process.
炼钢炼钢钢包跟踪系统中的信息处理算法
研究目的。研究的目的是通过开发数学和软件方法,提高对炼钢过程中钢包运动的控制效率。浇注钢包运动的控制可分为2部分:第一部分是定位在路线某一段的摄像机图像中的目标检测,然后确定目标在帧中的位置,第二部分是基于不同系统的一组数据进行识别。研究中使用的方法有:数学建模、神经网络、算法构建的基础理论,以及现代计算机的软硬件技术。本文建立了钢包运动路线生成模型,并在此基础上对钢包运动进行控制。算法支持是生成移动钢包可能路径的算法、确定钢包在移动钢包路径上的位置的算法、识别钢包的算法和处理信息的广义算法的组合。给出了炼钢生产中浇注钢包跟踪系统的结构和功能组织。在由实际工艺数据形成的测试数据集上,对算法的支持度进行了实验验证。通过对算法和软件的调整和调整,使该软件系统能够应用于不同装置组成的炼钢厂。控制钢包的运动可以使钢水的运动使热损失降到最低。在二次加工装置中加热钢材的需要与能源成本有关。因此,减少钢包的热损失和停机时间将降低整个过程的能源成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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