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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Modeling, simulation and re-adhesion control of an induction motor-based railway electric traction system
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Modeling, simulation and re-adhesion control of an induction motor-based railway electric traction system

机译:基于感应电动机的铁路电力牵引系统的建模,仿真和重新附着控制

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摘要

Increasing the traction force is a complex problem in the design of railway vehicles; therefore, effective traction systems and algorithms have to be developed. During the traction process, the verification of traction algorithms and control strategies are based on simulations covering all locomotive dynamics. In this article, traction model of a railway vehicle and re-adhesion control method based on simulation approach are investigated to obtain more effective results. The longitudinal dynamic of a railway vehicle having traction system, which comprises two parallel motor groups, each of which has two field-oriented induction motor connected in series, is simulated to examine time-dependent changes in motor stator currents, traction torque, adhesion and resistance forces according to a given speed reference. The interaction between the adhesion force and the slip ratio is established according to the Burckhardt adhesion model, and a modified super-twisting sliding mode slip control is implemented in a computer simulation under various contact conditions so that simulation results approve the presented control method works under the maximum adhesion force. The comparison between the classical and modified version of the proposed control strategy was made to better evaluate the performance of the control system and to better optimize the traction system.
机译:在铁路车辆的设计中,增加牵引力是一个复杂的问题。因此,必须开发有效的牵引系统和算法。在牵引过程中,牵引算法和控制策略的验证基于涵盖所有机车动力学的仿真。本文研究了铁路车辆的牵引模型和基于仿真方法的再附着控制方法,以获得更有效的结果。模拟具有牵引系统的铁路车辆的纵向动力学,该系统包括两个平行的电动机组,每个电动机组具有两个串联的磁场定向感应电动机,以检查电动机定子电流,牵引转矩,附着力和根据给定速度参考值的阻力。根据Burckhardt粘附模型建立了粘附力与滑移率的相互作用,在各种接触条件下的计算机仿真中实施了改进的超扭转滑模滑移控制,仿真结果验证了所提出的控制方法在最大附着力。对所提出的控制策略的经典版本和改进版本进行了比较,以更好地评估控制系统的性能并更好地优化牵引系统。

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