首页> 外文期刊>International Journal of Automotive Technology >OPTIMAL POWER DISTRIBUTION OF FRONT AND REAR MOTORS FOR MINIMIZING ENERGY CONSUMPTION OF 4-WHEEL-DRIVE ELECTRIC VEHICLES
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OPTIMAL POWER DISTRIBUTION OF FRONT AND REAR MOTORS FOR MINIMIZING ENERGY CONSUMPTION OF 4-WHEEL-DRIVE ELECTRIC VEHICLES

机译:使四轮驱动电动汽车的能耗最小化的前轮和后轮马达的最佳功率分配

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摘要

In this paper, the optimal power distribution of the front and rear motors for minimizing energy consumption of a 4WD EV is investigated. An optimal power distribution control is developed based on the mathematical energy consumption model of an EV. The objective function is defined while ignoring time. And, the time effect is applied by considering the objective function for every single driving point which consists of the vehicle driving force and velocity. From the optimization problem, the optimal torque distribution maps of the front and rear motors can be obtained for all vehicle driving force and velocity ranges. These maps can be expressed using a 3-dimensional map. If the vehicle driving force and velocity are determined, the optimal front and rear motor torques can be determined using these maps. These maps can distribute the front and rear motor torques for the entire velocity range. Thus, these maps can perform the optimal power (torque times speed) distribution of the front and rear motors for minimizing the energy consumption of the 4WD EV. The performance of the optimal power distribution is evaluated by comparing the energy consumption to that of simple power distribution control. For obtaining the energy consumption, a vehicle driving simulation is performed. For the simulation, the driving cycle is required, and the NEDC (New European Driving Cycle) is used. From the simulation results, it is found that the energy consumption of simple power distribution is 4.8 % larger than the optimal one. Thus, the optimal power distribution can minimize the 4WD EV energy consumption as the optimization objective function.
机译:在本文中,研究了用于最小化4WD EV能耗的前后电动机的最佳功率分配。基于电动汽车的数学能耗模型,开发了一种最佳的配电控制。在忽略时间的同时定义目标函数。并且,通过考虑由车辆驱动力和速度组成的每个单个驱动点的目标函数来施加时间效果。从优化问题出发,可以在所有车辆驱动力和速度范围内获得前后电动机的最佳扭矩分配图。这些地图可以使用3维地图来表示。如果确定了车辆驱动力和速度,则可以使用这些映射确定最佳的前后电动机扭矩。这些图可以在整个速度范围内分配前后电动机扭矩。因此,这些图可以执行前后电动机的最佳功率(转矩乘以速度)分配,以使4WD EV的能耗降至最低。通过将能耗与简单配电控制的能耗进行比较,可以评估最佳配电的性能。为了获得能量消耗,执行车辆驾驶模拟。对于仿真,需要行驶周期,并使用NEDC(新欧洲行驶周期)。从仿真结果可以看出,简单配电的能耗比最优配电能耗高4.8%。因此,最佳功率分配可以使作为最佳目标函数的4WD EV能耗最小化。

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