首页> 外文期刊>Complexity >Energy Recovery Strategy Numerical Simulation for Dual Axle Drive Pure Electric Vehicle Based on Motor Loss Model and Big Data Calculation
【24h】

Energy Recovery Strategy Numerical Simulation for Dual Axle Drive Pure Electric Vehicle Based on Motor Loss Model and Big Data Calculation

机译:基于电机损耗模型和大数据计算的双轴驱动纯电动汽车能量回收策略数值模拟

获取原文
           

摘要

Aiming at the braking energy feedback control in the optimal energy recovery of the two-motor dual-axis drive electric vehicle (EV), the efficiency numerical simulation model based on the permanent magnet synchronous motor loss was established. At the same time, under different speed and braking conditions, based on maximum recovery efficiency and data calculation of motor system, the optimization motor braking torque distribution model was established. Thus, the distribution rule of the power optimization for the front and rear electric mechanism was obtained. This paper takes the Economic Commission of Europe (ECE) braking safety regulation as the constraint condition, and finally, a new regenerative braking torque distribution strategy numerical simulation was developed. The simulation model of Simulink and CarSim was established based on the simulation object. The numerical simulation results show that under the proposed strategy, the average utilization efficiency of the motor system is increased by 3.24% compared with the I based braking force distribution strategy. Moreover, it is 9.95% higher than the maximum braking energy recovery strategy of the front axle. Finally, through the driving behavior of the driver obtained from the big data platform, we analyze how the automobile braking force matches with the driver’s driving behavior. It also analyzes how the automobile braking force matches the energy recovery efficiency. The research results in this paper provide a reference for the future calculation of braking force feedback control system based on big data of new energy vehicles. It also provides a reference for the modeling of brake feedback control system.
机译:针对两电机双轴驱动电动汽车的最佳能量回收中的制动能量反馈控制,建立了基于永磁同步电机损耗的效率数值模拟模型。同时,在不同速度和制动条件下,基于最大恢复效率和电动机系统数据计算,建立了优化的电动机制动转矩分配模型。因此,获得了用于前后电动机构的动力最优化的分配规则。本文以欧洲经济委员会(ECE)制动安全法规为约束条件,最后,开发了一种新的再生制动扭矩分配策略数值模拟。基于仿真对象,建立了Simulink和CarSim的仿真模型。数值仿真结果表明,与基于I的制动力分配策略相比,在所提出的策略下,电机系统的平均利用率提高了3.24%。此外,它比前桥的最大制动能量回收策略高9.95%。最后,通过从大数据平台获得的驾驶员的驾驶行为,我们分析了汽车制动力如何与驾驶员的驾驶行为相匹配。它还分析了汽车制动力如何与能量回收效率相匹配。本文研究结果为今后基于新能源汽车大数据的制动力反馈控制系统的计算提供参考。它还为制动反馈控制系统的建模提供参考。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号