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A Mechatronic Approach for Anti-slip Control in Railway Traction

机译:铁路牵引中防滑控制的机电方法

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This paper presents a novel mechatronic approach for the detection of wheel slip/slide and anti-slip control in railway traction systems, to enable an optimal use of adhesion in poor contact conditions. The proposed technique explores the variations in wheelset dynamic properties caused by condition changes at the wheel-rail contact and detects slip conditions from the torsional resonant vibrations of the wheelset axle indirectly. The modeling of a typical traction system, consisting of an induction traction motor (with associated power inverter and field-orientated control) connected to a wheelset via a gearbox, is introduced. The development of the slip detection and control scheme is presented, and the effectiveness of the proposed technique is demonstrated using computer simulations.
机译:本文介绍了一种新型机电调整方法,用于检测铁路牵引系统中的车轮滑动/滑动和防滑控制,以实现粘附在差的接触条件下的最佳用途。所提出的技术探讨了轮轨接触处的条件变化引起的轮键动态特性的变化,并间接地检测来自轮孔轴的扭转谐振振动的滑动条件。介绍了由通过齿轮箱连接到轮廓的感应牵引电动机(具有相关的电源逆变器和现场取向控制)的典型牵引系统的建模。提出了滑移检测和控制方案的发展,并使用计算机仿真对所提出的技术的有效性。

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