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Study on Car Body Tilting System Using Variable Link Mechanism (Perfect Tilting Condition and Tilting Control)

机译:基于可变连杆机构的车身倾斜系统研究(完美倾斜条件和倾斜控制)

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摘要

This study aims to analyze fundamental dynamical characteristics of a tilting railway vehicle using variable link mechanism for compensating both lateral acceleration that passengers feel and wheel load imbalance between inner and outer rails. Theoretical analysis is conducted to find "Perfect Tilting Condition" that is a geometric parameter set of link mechanism that can provide both zero lateral acceleration and zero wheel load imbalance simultaneously. This perfect tilting condition can be realized by changing the variable length of, link mechanism so that this tilting control system is a kind of semi-active control. To change the length of link mechanism on curved section, optimal control theory is applied to the vehicle body tilting system with a newly developed variable link mechanism. From computer simulation and experiment using a scale model, it is clarified that the proposed tilting system is effective to suppress both over-centrifugal acceleration and wheel load imbalance.
机译:这项研究旨在使用可变连杆机构来分析倾斜的铁路车辆的基本动力学特性,以补偿乘客感觉到的横向加速度和内,外轨之间的车轮载荷不平衡。进行理论分析以找到“完美倾斜条件”,它是连杆机构的几何参数集,可同时提供零横向加速度和零车轮负载不平衡。可以通过改变连杆机构的可变长度来实现这种理想的倾斜状态,因此这种倾斜控制系统是一种半主动控制。为了改变连杆机构在弯曲截面上的长度,将最优控制理论应用于具有新开发的可变连杆机构的车身倾斜系统。从计算机模拟和使用比例模型的实验可以看出,所提出的倾斜系统可以有效地抑制过离心加速度和车轮负载不平衡。

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