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Sliding model control based on estimation of optimal slip ratio for railway wheel slide protection using extremum seeking

机译:基于极值寻道的最优滑移率估计的滑模控制

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It is very important for railway vehicles to have a good braking performance to avoid the phenomenon of idling and skidding, which can be implemented by looking for and keeping an optimal slip ratio. The optimal slip ratio is a value existing in the creep zone of functions between friction coefficient and slip ratio corresponding to the maximum adhesion. Controller based on the sliding mode control needs to be entered an reference slip ratio which can be used to find out the optimal control by the designer and can be tracked by actual slip ratio by the controller. Moreover, as an indispensable factor for calculating slip ratio, vehicle velocity is estimated by the proposed algorithm based on locomotive dynamic model. Then the optimal control ensures the actual slip ratio is equal to or close to the best reference slip ratio generated by extremum seeking algorithm dynamically. According to those functions, the optimal slip ratio changes dynamically once the pavement behavior changes. The simulation result demonstrates that compared with constant reference slip ratios, the proposed dynamical seeking algorithm for optimal reference slip ratio achieves the effect of real-time adjustment for braking torque, which prevents the brake torque from being too large or small and guarantees the braking performance.
机译:对于铁路车辆而言,具有良好的制动性能以避免空转和打滑现象非常重要,这可以通过寻找并保持最佳滑移率来实现。最佳滑移率是在摩擦系数和滑移率之间的函数的蠕变区中存在的与最大附着力相对应的值。基于滑模控制的控制器需要输入参考滑移率,设计者可以使用它来找到最佳控制,并且控制器可以通过实际滑移率对其进行跟踪。此外,作为计算滑移率的必要因素,通过基于机车动力学模型的算法来估计车速。然后,最优控制确保实际滑移率等于或接近由极值搜索算法动态生成的最佳参考滑移率。根据这些功能,一旦路面性能发生变化,最佳滑移率就会动态变化。仿真结果表明,与恒定的参考滑移率相比,本文提出的最优参考滑移率动态寻找算法具有制动力矩实时调整的效果,可以防止制动力矩过大或过小,保证制动性能。 。

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