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Influence of active steering with adaptive control law on a metro rail vehicle wheel wear and dynamic performance

机译:主动转向与自适应控制法对地铁车轮磨损和动态性能的影响

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摘要

An active steering bogie is designed to for yaw control of the wheel-sets to align the wheels with the track direction during curve negotiation. Existing control laws for active steering are developed by assuming new wheels and rails, and known vehicle and track layout, but do not include the vehicle speed as an input variable. As wheels wear and vehicle speed varies, such static control law may not be optimal. In this paper, the time-varying cant surplus/ deficiency information are adapted into a modified active steering control law. Multi-body simulation results show reduced wheel wear, and increase in passenger comfort, operating speed and wheel life due to the proposed adaptive steering control law.
机译:主动转向转向转向架设计为用于轮辋的偏航控制,以在曲线协商期间将车轮与轨道方向对准。 通过假设新的轮子和轨道和已知的车辆和轨道布局,因此开发了用于主动转向的现有控制法,但不包括作为输入变量的车速。 随着轮子磨损和车速变化,这种静态控制法可能不是最佳的。 在本文中,时变不盈余/缺乏信息适用于改进的主动转向控制法。 多体仿真结果表明,由于建议的自适应转向控制法,乘客舒适,运行速度和车轮寿命的增加。

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