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Regenerative Braking Control with Gear Downshifting for Energy Efficiency and Motion Stability Improvement of an Electrical-four-wheel-drive Hybrid Vehicle

机译:具有齿轮倒置的再生制动控制,用于节能和电动四轮驱动混合动力车辆的能效和运动稳定性改进

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A regenerative braking control strategy is proposed for an electrical-four-wheel-drive (e-4WD) hybrid vehicle. The e-4WD powertrain consists of an engine, a motor/generator (MG), and an automatic transmission (AT) on the front axle, and two in-wheel motors (IWMs) on the rear axle. Pure regenerative braking with the MG and two IWMs is focused in this article, which is very common in mild braking scenario. Energy efficiency and vehicle motion stability are both considered in the design of the braking control strategy. With quadratic programming (QP)-based control allocation algorithm, downshifting decision of the AT is coordinated with the torque allocation of the MG and two IWMs, achieving high regenerative energy efficiency as well as good vehicle motion dynamics. Co-simulations with Matlab/Simulink® and CarSim® show the effectiveness of the proposed algorithm.
机译:提出了一种用于电气四轮驱动(E-4WD)混合动力车辆的再生制动控制策略。 E-4WD动力系由发动机,电动机/发电机(Mg)和前轴上的自动变速器(AT)和后轴上的两个车载电机(IWM)组成。用MG和两个IWMS的纯再生制动集中在本文中,这在温和制动场景中非常常见。在制动控制策略的设计中考虑了能量效率和车辆运动稳定性。利用二次编程(QP)的控制分配算法,与MG和两个IWM的扭矩分配协调AT的下档决定,实现了高再生能效以及良好的车辆运动动态。使用MATLAB / SIMULINK共同仿真® 和汽车® 显示所提出的算法的有效性。

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