驱动循环特性对电动汽车电机优化的影响

A. Meddour, N. Rizoug, A. Babin
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引用次数: 1

摘要

在规定的条件下,行驶周期可以预测电动汽车的行驶里程,不同的行驶周期会对汽车的性能产生很大的影响。通过评估一款建议的紧凑型电动汽车,本文研究了几种驱动循环类型对电池尺寸和电机优化收敛的影响。利用Matlab和Ansys Electronics进行仿真。采用基于存储系统规模的车辆动力学模型估算了四个行驶周期的能耗,并在此基础上估算了所需的自主性,使用有限元软件Ansys electronics构建了电机模型。其几何参数将使用优化算法确定,同时考虑新的功率和扭矩需求,包括存储系统重量。遗传算法用于优化过程,以尽量减少电机的损失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The influence of driving cycle characteristics on motor optimisation for electric vehicles
Under regulated conditions, a driving cycle forecasts the electric vehicle's range and different driving cycles can substantially impact the vehicle's performance.By evaluating a suggested compact electric car, the impacts of several driving cycle types on battery sizing and motor optimisation convergence are investigated in this article.Matlab and Ansys Electronics are used to conduct the simulations. The energy consumption of four driving cycles is estimated using a vehicle dynamic model to estimate the required autonomy , on which is based on the storage system sizing .The Motor model is constructed using the finite element software Ansys electronics. Its geometrical parameters will be determined using an optimisation algorithm while considering the new power and torque demands, including the storage system weight.The genetic algorithm is used for the optimisation process to minimise the motor's losses.
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