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Hunting instability analysis and H{sup}∞ controlled stabilize design for high speed railway passenger car

机译:狩猎不稳定分析和H {SUP}∞高速铁路乘用车控制稳定设计

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First in this paper, the nonlinear stability for a high speed railway passenger car is investigated theoretically and experimentally. Numerical methods are used to evaluate the Hopf bifurcation point and limit cycles of the vehicle system. Andlull scale roller rig test is carried out for the validation of the theoretical analysis. Then the H{sup}∞ robustness control theory is applied to design an actively controlled secondary lateral suspension. The controller is designed according to asimple car body-bogie frame model. Numerical computation shows that the use of active secondary suspension can not only ensure the hunting stability, but also improve the dynamic responses of the high speed passenger car. An attempt is made to realizeactive control for the secondary lateral suspension forces and to carry out test validation on roller rig.
机译:首先,理论上和实验研究了高速铁路乘用车的非线性稳定性。数值方法用于评估车辆系统的HOPF分叉点和极限循环。 andlull刻度辊钻机测试是为了验证理论分析。然后将H {SUP}∞鲁棒性控制理论应用于设计主动控制的次级横向悬架。控制器根据Asimple汽车Body-Pogie框架模型设计。数值计算表明,使用有源二级悬架不仅可以确保狩猎稳定性,而且还可以改善高速乘用车的动力响应。尝试对次级横向悬架力的实现控制并对辊子进行测试验证。

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