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A Model-Based Mass Estimation and Optimal Braking Force Distribution Algorithm of Tractor and Semi-Trailer Combination

机译:拖拉机和半拖车组合的基于模型的质量估计和最优制动力分配算法

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Taking a good longitudinal braking performance on flat and level road of tractor and semi-trailer combination as a target, in order to achieve an ideal braking force distribution among axles, while the vehicle deceleration is just depend on the driver's intention, not affected by the variation of semi-trailer mass, the paper proposes a model based vehicle mass identification and braking force distribution strategy. The strategy identifies the driver's braking intention via braking pedal, estimates semi-trailer's mass during the building process of braking pressure in brake chamber, distributes braking force among axles by using the estimated mass. And a double closed-loop regulation of the vehicle deceleration and utilization adhesion coefficient of each axle is presented, in order to eliminate the bad effect of mass estimation error, and enhance the robustness of the whole algorithm. A simulation is conducted by utilizing MATLAB/Simulink and TruckSim. The simulation result shows that: the algorithm can eliminate the effect on vehicle deceleration caused by the variation of semi-trailer mass; while an optimal braking force distribution is achieved among axles, thus braking performance is guaranteed.
机译:在拖拉机和半拖车组合的平面和水平道路上进行良好的纵向制动性能,以实现轴之间的理想制动力分布,而车辆减速则仅取决于驾驶员的意图,而不受影响本文提出了半拖车质量的变化,提出了一种基于模型的车辆质量识别和制动力分布策略。该策略通过制动踏板识别驾驶员的制动意图,估计在制动室制动压力的建筑过程中的半拖车质量,通过使用估计的质量在轴之间分布制动力。呈现了每个轴的车辆减速和利用粘合系数的双闭环调节,以消除质量估计误差的不良效果,并增强整个算法的鲁棒性。利用MATLAB / SIMULINK和Trucksim进行模拟。仿真结果表明:算法可以消除由半拖车质量的变化引起的车辆减速的影响;虽然在轴之间实现了最佳制动力分布,但是保证了制动性能。

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