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Anti-slip control based on optimal slip ratio for heavy-haul locomotives

机译:基于重载机车的最佳滑动比率的防滑控制

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摘要

To solve the problem of wheelset slip and effectively exert locomotive traction, a protection method of anti-slip control with integral sliding mode based on optimal slip ratio is proposed. First, a dynamic model of heavy-haul locomotives is established and a sliding mode observer is designed to observe the real-time adhesion coefficients of heavy-haul locomotives. An extremum seeking algorithm with sliding mode is used to monitor and search the optimal region of slip ratio. Then, a PID compound control is combined to weaken oscillations in the sliding mode extremum seeking. Finally, an integral sliding mode controller with new reaching law is designed to ensure the slip ratio of locomotives running on different rail surfaces are at optimal values, which maximise the utilisation of adhesion between wheels and rails. Simulation results also verify the feasibility and effectiveness of the integral sliding mode variable structure control method based on optimal slip ratio in the anti-slip traction system of vehicles.
机译:为了解决轮孔滑动和有效施加机车牵引的问题,提出了一种基于最优滑动比的整体滑动模式防滑控制的保护方法。首先,建立了重载机车的动态模型,并且设计了滑动模式观察者,用于观察重拖车机车的实时粘合系数。具有滑动模式的极值寻求算法用于监控和搜索滑移比的最佳区域。然后,将PID化合物对照组合以削弱滑动模式极值探索的振荡。最后,设计具有新的达到法律的整体滑动模式控制器,以确保不同轨道表面上运行的机车的滑移比率在最佳值,这使得轮毂和轨道之间的粘合性最大化。仿真结果还验证了基于车辆防滑牵引系统中的最佳滑动比率的整体滑动模式可变结构控制方法的可行性和有效性。

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