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Reduced Model Identification and Parameter Estimation for Traction Drive-Trains

机译:牵引传动系统的简化模型辨识和参数估计

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Traction drive-trains of modern locomotives consist of a flexible multi-inertia structure that experiences significant wheelset wear due to wheel-rail contact and ageing of rubber elastic joints during its operational life. For control design, an accurate and suitable reduced model is required. Therefore, a reduced model identification is proposed, taking branched traction drive-trains and parameter adaption in terms of wheelset wear and rubber ageing into consideration. The identification effort is lowered by applying previous knowledge of the flexible structure in order to comply with the limitations imposed by the traction application. For predictive maintenance, the effects of ageing and wheel wear are decoupled, enabling precise estimation of the variable mechanical parameters, namely, the rubber joint stiffness and the wheel disc radius, on the basis of an identified modal three-inertia model. Finally, the proposed scheme is tested with data from a European high-performance locomotive.
机译:现代机车的牵引传动系统包括一个灵活的多惯性结构,该结构由于轮轨接触和橡胶弹性接头在其使用寿命期间的老化而导致轮对明显磨损。对于控制设计,需要一个准确且合适的简化模型。因此,提出了一种简化的模型识别方法,其中考虑了轮对磨损和橡胶老化方面的分支牵引传动系统和参数自适应。通过应用柔性结构的先前知识来降低识别工作量,以便遵守牵引应用程序施加的限制。为了进行预测性维护,将老化和车轮磨损的影响分离开,从而可以在已确定的模态三惯量模型的基础上精确估算可变的机械参数,即橡胶接头的刚度和轮盘半径。最后,使用欧洲高性能机车的数据对提出的方案进行了测试。

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