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首页> 外文期刊>Mechanical systems and signal processing >Anti-yaw damping monitoring of railway secondary suspension through a nonlinear constrained approach integrated with a randomly variable wheel-rail interaction
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Anti-yaw damping monitoring of railway secondary suspension through a nonlinear constrained approach integrated with a randomly variable wheel-rail interaction

机译:通过非线性约束方法与随机可变轮轨相互作用集成的非线性约束方法抗偏航阻尼监测

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摘要

The real-time monitoring of railway vehicles is becoming a key factor for safety and the optimization of the maintenance costs. In this context, the secondary anti-yaw suspension system represents a key element, subjected to degradation phenomenon. This paper presents a model-based real time monitoring technique of the anti-yaw damping. The approach is based on a constrained nonlinear estimation procedure that employs a railway vehicle modelling characterized by the presence of a random walk model for the wheel-rail interaction. The technique allows to employ a model-based approach, with advantages in terms of robustness respect to the interaction parameters, a priori no knowledge of the track irregularities and constraints applied to the estimated states.
机译:铁路车辆的实时监测正成为安全性和维护成本优化的关键因素。在这种情况下,二次抗偏悬架系统代表经受降解现象的关键元件。本文介绍了抗偏航阻尼的基于模型的实时监测技术。该方法基于受限制的非线性估计程序,该过程采用铁路车辆建模,其特征在于,通过用于轮轨相互作用的随机步道模型的存在。该技术允许采用基于模型的方法,在鲁棒性方面,优点对于交互参数,优先考虑应用于估计状态的轨道不规则性和约束的知识。

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