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Downhill Speed Control of In-Wheel Motor During Regenerative Braking

机译:再生制动过程中车轮电机的下坡速度控制

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Recovering kinetic energy in an electric vehicle is important in order to use battery more effective and to extend the vehicle's maximum distance range. In this study, regenerative braking is simulated and implemented on a test bed for a lightweight electric vehicle on the three different downhill that are 3 degrees, 4 degrees and 5 degrees slopes at 30km/h conditions. An in-wheel motor which is generally used in the light electric vehicle is used for the regenerative braking application. Speed of the in-wheel motor is controlled with PID controller during regenerative braking. The in-wheel motor charges batteries and the PID controller maintain speed of the in-wheel motor to reference speed in both simulation study and experimental study. Graphics and outcomes of the simulation and experiment are showed in the results and discussion section.
机译:在电动车辆中恢复动能是重要的,以便使用电池更有效并扩展车辆的最大距离范围。 在该研究中,在三个不同的下坡的轻质电动车辆上模拟并在测试床上模拟并实施了再生制动,该床在30km / h条件下为3度,4℃和5度。 通常用于光电动车辆的轮内电动机用于再生制动施加。 在再生制动期间,使用PID控制器控制轮内电机的速度。 轮内电机电池和PID控制器在模拟研究和实验研究中保持轮内电机的速度以参考速度。 结果和讨论部分显示了模拟和实验的图形和结果。

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