A tailored approach for the comprehensive design of a multimode power-split e-CVT powertrain for a full-hybrid electric vehicle

IF 4.5 1区 工程技术 Q1 ENGINEERING, MECHANICAL
Antonella Castellano, Marco Cammalleri
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Abstract

The comprehensive design of a hybrid electric vehicle powertrain with a multimode power-split transmission is complicated by the driveline constructive complexity. The design approaches available in the literature are often based on mere explorative numerical methods mainly focused on the topological structure of the transmission without integrating the sizing of the engine or the electric unit. This paper aims to fill this literature gap by providing a tailored physical-based design procedure that, starting from a blank sheet and knowing only the vehicle parameters and desired performance, leads to the overall definition of the powertrain. The design approach is hierarchical, whereby each phase is decoupled from the others and the designer is made aware of cause-effect relationships at any design stage. Step by step, the power size of engine, battery, and electric machines is defined, and the functional and constructive arrangement of a multimode power-split transmission is synthesised, identifying the best operating range for input-, output-, and compound-split modes. The application on a C-segment full-hybrid electric car, which resulted in different but comparable solutions, proved the effectiveness of the method.
一种针对全混合动力汽车的多模功率分流e-CVT动力系统的综合设计方法
多模功率分路传动的混合动力汽车动力系统的综合设计由于传动系统结构的复杂性而变得复杂。文献中可用的设计方法通常基于单纯的探索性数值方法,主要集中在变速器的拓扑结构上,而没有集成发动机或电气单元的尺寸。本文旨在通过提供一个量身定制的基于物理的设计程序来填补这一文献空白,该程序从一张空白表格开始,只知道车辆参数和期望的性能,从而导致动力总成的整体定义。设计方法是分层的,因此每个阶段都与其他阶段分离,设计师在任何设计阶段都要意识到因果关系。逐步确定了发动机、电池和电机的功率大小,并综合了多模功率分流传动的功能和结构安排,确定了输入、输出和复合分流模式的最佳工作范围。在c级纯混合动力汽车上的应用验证了该方法的有效性,得到了不同但具有可比性的解决方案。
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
Mechanism and Machine Theory
Mechanism and Machine Theory 工程技术-工程:机械
CiteScore
9.90
自引率
23.10%
发文量
450
审稿时长
20 days
期刊介绍: Mechanism and Machine Theory provides a medium of communication between engineers and scientists engaged in research and development within the fields of knowledge embraced by IFToMM, the International Federation for the Promotion of Mechanism and Machine Science, therefore affiliated with IFToMM as its official research journal. The main topics are: Design Theory and Methodology; Haptics and Human-Machine-Interfaces; Robotics, Mechatronics and Micro-Machines; Mechanisms, Mechanical Transmissions and Machines; Kinematics, Dynamics, and Control of Mechanical Systems; Applications to Bioengineering and Molecular Chemistry
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