MATHEMATICAL MODELLING OF TRANSIENTS IN THE ELECTRIC DRIVE OF THE SWITCH – THE MAIN EXECUTIVE ELEMENT OF RAILWAY AUTOMATION

IF 1.6 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC Electrical Engineering & Electromechanics Pub Date : 2020-08-23 DOI:10.20998/2074-272x.2020.4.03
S. Buriakovskyi, A. Maslii, O. Pasko, V. Smirnov
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引用次数: 13

Abstract

Goal. To develop a mathematical and imitation model of the electric drive of the railroad switch as a twoand three-mass electromechanical system based on DC and AC motors as the main executive element of railway automation. The modelling is based on the parameters of the SP-6m switches as the main modification of the executive element of the Ukrainian domestic railways automation system. Methodology. The authors have presented the mechanical part of the railroad switch as a three-mass construction scheme with serial connection of elastic masses. Special attention is paid to the character of the movement of the switch point tongues, when describing them in the form of twoand threemass kinematic schemes, as well as to the mechanical state of the traction and connections as nodes, which are most sensitive to the negative effects of some modes of the railroad switch. Results. A simulation mathematical model of SP-6m switch for AC and DC motors, which allows to study the influence of various factors, has been developed and tested at the stand of the Automation Laboratory of the Ukrainian State University of Railway Transport, Kharkiv. The deviation in the basic parameters of the switch translation process is less than 5 %. Originality. For the first time a mathematical model of an electric drive of the railroad switch is developed, which takes into account elastic relations and load characteristics as an object of controlling the speed of movement of switch point tongues. Practical significance. We have created a mathematical model of the electric drive of the railroad switch which allows to examine the influence of various factors, including the influence of the environment on the operation of the switch. References 10, table 1, figures 10.
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铁路自动化主要执行元件——开关柜电传动暂态的数学建模
的目标。建立了以直流和交流电机为主要执行元件的铁路开道岔电传动二、三质量机电系统的数学模型和仿真模型。该模型基于SP-6m开关的参数,作为乌克兰国内铁路自动化系统执行元件的主要修改。方法。将铁路道岔的机械部分采用弹性质量串联的三质量施工方案。在以二质量和三质量运动学方案的形式描述开关点舌时,特别注意开关点舌的运动特性,以及作为节点的牵引和连接的力学状态,这些节点对铁路开关的某些模式的负面影响最为敏感。结果。在哈尔科夫乌克兰国立铁路运输大学自动化实验室的展台上,开发并测试了用于交流和直流电机的SP-6m开关的仿真数学模型,该模型可以研究各种因素的影响。开关平移过程基本参数偏差小于5%。创意。首次建立了考虑弹性关系和载荷特性的铁路开道岔电传动数学模型,并将其作为控制开道岔点舌运动速度的对象。现实意义。我们建立了铁路开关柜电驱动的数学模型,可以考察各种因素的影响,包括环境对开关柜运行的影响。参考文献10,表1,图10。
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来源期刊
Electrical Engineering & Electromechanics
Electrical Engineering & Electromechanics ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
2.40
自引率
50.00%
发文量
53
审稿时长
10 weeks
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