Analysis of wheel pairs slip control of electric freight locomotive with asynchronous traction motors

A. Savos’kin, N. D. Shilin
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Abstract

Introduction. Every year, the amount of electric rolling stock with asynchronous traction motors is continuously increasing on the Russian railway network, since such traction drives have a number of advantages over drives with DC motors. One of the problems associated with the introduction of asynchronous motors and an increase in the mass of trains is the implementation of the maximum traction force by an electric locomotive at the threshold in terms of wheel – rail adhesion. Timely recognition of excessive slip of wheel pairs is the most important indicator of the efficiency of the traction drive in realising the maximum traction properties of the electric locomotive at all axles.Materials and methods. The article reflects the results of the study of slip of electric locomotive wheel pairs with asynchronous traction motors and axial control of the traction force, obtained during experimental runs on a railway section under various adhesion conditions. The article presents a technique for studying the wheel pair adhesion failure of electric locomotives with asynchronous traction motors.Results. During the comparison of the obtained experimental results with the calculated parameters by the O. Polach mathematical model, an updated range of the relative slip of wheel pairs is given, in which the electric locomotive control system could realise the maximum tractive effort. Exceeding this range will lead to increased wear of wheel pairs without increasing traction properties.Discussion and conclusion. It is advisable to use the results of the study in the future when developing systems for controlling the tractive effort at the limit of adhesion and systems for controlling the slip of wheel pairs of electric freight locomotives with asynchronous traction motors.
采用异步牵引电动机的电力货运机车轮对滑移控制分析
介绍。在俄罗斯铁路网上,每年使用异步牵引电动机的电动机车车辆的数量都在不断增加,因为这种牵引驱动器比使用直流电动机的驱动器具有许多优点。与异步电动机的引进和列车质量的增加相关的问题之一是在轮轨附着力的阈值处由电力机车实现最大牵引力。及时识别车轮对过大滑移是牵引传动效率的重要指标,是实现电力机车各轴最大牵引性能的重要指标。材料和方法。本文反映了在不同附着条件下在某段铁路上进行的试验中,对异步牵引电动机驱动的电力机车轮对滑移及牵引力轴向控制的研究结果。本文介绍了一种研究异步牵引电动机电力机车轮对附着故障的方法。将实验结果与O. Polach数学模型计算参数进行比较,给出了机车控制系统能实现最大牵引力的车轮对相对滑移的更新范围。超过这个范围将导致车轮对磨损增加而不增加牵引性能。讨论与结论。建议今后在开发附着力极限牵引力控制系统和异步牵引电动机货运电力机车轮对滑移控制系统时,借鉴本研究成果。
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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