Research on Parameter Optimization Design Method for Dual-Motor Coupled Drive System

IF 2.6 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Tonghui Li, Nan Zhang, Xiaoyu Gao, Daqian Pang
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引用次数: 0

Abstract

To improve energy utilization efficiency and extend the driving range of electric vehicles, this paper proposes a Dual-Motor Coupled Drive System (DMCDS) with a simple structure and establishes a dynamic mathematical model to analyze power flow characteristics under different driving modes. Considering the interdependence between the optimization of component sizes and system control in multi-motor drive systems, a two-layer hybrid optimization method is proposed to determine the optimal component sizes, balancing vehicle performance with minimal system energy losses. To evaluate the effectiveness of the proposed optimization design method, extensive simulation analysis was carried out in MATLAB. The results demonstrate that the optimization of motor sizes and gear ratios can enhance the energy efficiency of the drive system. In comparison with prototype scheme before optimization, the high-efficiency region utilization of motors EM_R and EM_S increased by 45% and 48%, respectively. Compared with the prototype and single-motor drive system, the average drive efficiency after optimization increased by 2.5% and 4.2%, respectively, and the energy consumption per 100 km decreased by 3.6% and 6.8%, respectively. These results confirm the efficacy of the proposed optimization design method in achieving an energy-saving effect.
双电机耦合驱动系统参数优化设计方法研究
为了提高电动汽车的能源利用效率,扩大续驶里程,本文提出了一种结构简单的双电机耦合驱动系统(DMCDS),并建立了动态数学模型,分析了不同驱动模式下的功率流特性。考虑到多电机驱动系统中部件尺寸优化与系统控制之间的相互依赖性,提出了一种两层混合优化方法来确定最优部件尺寸,以平衡车辆性能和最小系统能量损失。为了评估所提出的优化设计方法的有效性,在MATLAB中进行了大量的仿真分析。结果表明,优化电机尺寸和传动比可以提高驱动系统的能效。与优化前的原型方案相比,电机EM_R和EM_S的高效区利用率分别提高了45%和48%。与原型机和单电机驱动系统相比,优化后的平均驱动效率分别提高了2.5%和4.2%,百公里能耗分别降低了3.6%和6.8%。这些结果证实了所提出的优化设计方法在实现节能效果方面的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
World Electric Vehicle Journal
World Electric Vehicle Journal Engineering-Automotive Engineering
CiteScore
4.50
自引率
8.70%
发文量
196
审稿时长
8 weeks
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