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Role of Regenerative Braking in Velocity Trajectory Optimization of Electrified Powertrains over varying Road Grades

机译:再生制动在不同公路等级上电气化动力速度轨迹优化的作用

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Eco-driving via velocity trajectory optimization and regenerative braking can both reduce the energy demand of an electric vehicle (EV). However, eco-driving can save more energy than can be recovered via regenerative braking due to the total roundtrip efficiency of the motor/generator. The optimal velocity trajectory would always avoid braking if the constraints allow. This paper investigates energy optimal velocity profiles for various electric ground vehicles over varying road grades, where the autonomous vehicles can adjust their velocity trajectory. The optimal velocity trajectories, numerically obtained from Dynamic Programming, significantly reduce the total energy demand by the motor compared to a constant cruising operation for the same travel distance and time. The optimized velocity trajectories, thus increase vehicle range without a change in battery size or trip time.
机译:通过速度轨迹优化和再生制动的生态驱动可以降低电动车辆(EV)的能量需求。然而,由于电动机/发电机的总往返效率,生态驾驶可以节省比通过再生制动回收更多的能量。如果约束允许,最佳速度轨迹始终避免制动。本文研究了各种电局的能量最佳速度型材在不同的道路等级上,自主车辆可以调节它们的速度轨迹。与动态编程的数值获得的最佳速度轨迹,与相同的行驶距离和时间的恒定巡航操作相比,电动机的总能量需求显着降低了电动机的总能量需求。优化的速度轨迹,从而增加了车辆范围而不会改变电池尺寸或跳闸时间。

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