用于动力系统仿真和优化的可扩展性能、效率和热模型

Gabriel Domingues, F. Márquez-Fernández, P. Fyhr, A. Reinap, M. Andersson, M. Alaküla
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引用次数: 12

摘要

提出了一种电动传动系统部件性能和热特性的设计和量化方法。该方法旨在根据一组需求找到最佳的组件组合。驾驶循环性能和特定的操作模式,如爬坡和最大车轮速度都被考虑在内。这允许选择电机拓扑结构,相关变速箱的设计和尺寸,以及满足所有工作点(包括过载)的车轮扭矩和速度要求所需的电力电子转换器。利用优化循环中的子系统模型,动力总成组件的尺寸可以根据许多目标进行调整,例如最低成本、尺寸、重量或这些目标的组合,同时仍然满足许多动力总成布局的目标规格。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scalable performance, efficiency and thermal models for electric drive components used in powertrain simulation and optimization
A methodology for designing and scaling the performance and thermal characteristics of electric powertrain components is presented. This methodology is aimed at finding optimum component combinations based on a set of requirements. Both drive-cycle performance and specific operating modes such as curb-climbing and maximum wheel speed are considered. This allows the selection of electrical machine topology, the design and sizing of the related gearbox, as well as the power-electronic converter needed to fulfill the wheel torque and speed requirements for all operating points, including overloading. Utilizing subsystem-models inside an optimization loop, the powertrain components can be sized using a number of goals such as lowest cost, size, weight or combinations of these, while still fulfilling the target specifications for a number of powertrain layouts.
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