The laser scanning application for power systems equipment engineering reverse

O. Vozisova, D. Bliznyuk, A. Egorov, S. Eroshenko, D. Snegirev
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引用次数: 2

Abstract

In our days, “Electric Power System Kit” is the only producer of power and secondary equipment scale models. The production laboratory is established on the basis of ≪Automated Power Systems≫ department, Ural Power Engineering Institute, UrFU. In the laboratory, the following processes are organized: designing, 3D printing of models and 3D laser scanning of power equipment installed at substations. Laser scanning of power facilities allows to achieve the priority goal, namely to obtain three-dimensional primary digital CAD-models and drawings of high accuracy, which are necessary in order to meet the challenges of designing, construction, quality control, diagnostics, and other engineering tasks. Applied to electric power system kit, laser scanning is used to improve the quality of basic data needed for the creation of 3D drawings of equipment and creation of printed models on the basis of CAD-scale models. At the present moment, the problem set is to accomplish the reverse engineering of 110/20 kV step-down transformer, using up-to-date methods of 3D laser scanning. On the basis of the data obtained, the transformer CAD-model of high accuracy is crested in accordance with the initial dimensions.
激光扫描在电力系统设备工程逆向中的应用
在我们的日子里,“电力系统套件”是电力和二次设备比例模型的唯一生产商。生产实验室是在乌拉尔大学乌拉尔动力工程学院《自动化动力系统》部的基础上建立的。在实验室中,对变电站安装的电力设备进行设计、模型3D打印和3D激光扫描。电力设施的激光扫描可以实现优先目标,即获得高精度的三维初级数字cad模型和图纸,这是满足设计、施工、质量控制、诊断和其他工程任务挑战所必需的。激光扫描应用于电力系统套件,用于提高在cad比例模型的基础上创建设备三维图纸和创建打印模型所需的基础数据的质量。目前的问题集是利用最新的三维激光扫描方法,完成110/ 20kv降压变压器的逆向工程。在此基础上,根据初始尺寸进行了高精度的变压器cad模型拟合。
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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