首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Vehicle stability control with regenerative braking and electronic brake force distribution for a four-wheel drive hybrid electric vehicle
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Vehicle stability control with regenerative braking and electronic brake force distribution for a four-wheel drive hybrid electric vehicle

机译:具有四轮驱动混合动力电动汽车再生制动和电子制动力分配的车辆稳定性控制

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摘要

Vehicle stability control for a four-wheel drive (4WD) hybrid electric vehicle is investigated using the regenerative braking of the rear motor and electrohydraulic brake (EHB). A fuzzy-rule-based control algorithm is proposed, which generates the direct yaw moment to compensate for the errors of the sideslip angle and yaw rate. Performance of the stability control logic is evaluated for J-turn and single-lane change. It is found from the simulation results that the regenerative braking of the rear motor is able to provide improved stability compared with the vehicle performance without any control. It is found that better performance can be achieved by applying the regenerative braking plus the EHB control. In addition, the optimal distribution ratio of the EHB force is presented to minimize the EHB power consumption. The simulation results show that the required torque level by the optimal EHB distribution ratio control is much lower than that of the fixed distribution ratio, while providing almost the same control performance. It is expected that the vehicle stability control algorithm suggested in this study is able to offer improved vehicle stability.
机译:使用后部电动机的再生制动和电液制动(EHB),研究了四轮驱动(4WD)混合动力电动汽车的车辆稳定性控制。提出了一种基于模糊规则的控制算法,该算法产生直接的横摆力矩,以补偿侧滑角和横摆率的误差。评估稳定性控制逻辑的性能以实现J形转弯和单车道变化。从仿真结果发现,与无任何控制的车辆性能相比,后部电动机的再生制动能够提供更高的稳定性。发现通过应用再生制动和EHB控制可以实现更好的性能。另外,提出了EHB力的最佳分配比例以最小化EHB功耗。仿真结果表明,最佳EHB分配比率控制所需的扭矩水平远低于固定分配比率所需的扭矩水平,同时提供了几乎相同的控制性能。可以预期,这项研究中提出的车辆稳定性控制算法能够提供改善的车辆稳定性。

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