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Optimal sizing of an electrical machine using a magnetic circuit model: application to a hybrid electrical vehicle

机译:使用磁路模型的电机最佳尺寸:应用于混合动力电动车辆

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摘要

Numerous researches about hybrid electrical vehicles (HEVs) deal with topologies, technologies, sizing and control. These aspects allow reducing transportation costs and environmental impacts. This study focuses on the sizing of the electrical machine (EM) of the HEV, taking into account its surroundings: the hybrid system, the driving cycle and an optimal energy management. In this study, the parallel HEV is the study case. In a classical HEV design process, a scaling factor is usually applied on an efficiency map model to fix the standard power of the EM. The efficiency and the maximum torque power are scaled using a linear dependency on the rated maximum power. However, this method has some disadvantages. This study proposes two formulations of a scaling model based on a magnetic circuit model (MCM) with one or ten parameters. Then, the MCM is involved in a multi-objective optimisation process of the HEV. This process is a global sizing process using dynamic programming as an optimal energy management. Optimal sizings of the hybrid vehicle are then proposed for various driving conditions.
机译:关于混合动力电车(HEV)处理拓扑,技术,大小控制和控制的许多研究。这些方面允许降低运输成本和环境影响。本研究重点介绍了HEV的电气机(EM)的尺寸,考虑到其周围环境:混合系统,驾驶循环和最佳能量管理。在这项研究中,并行HEV是研究案例。在经典的HEV设计过程中,缩放因子通常在效率图模型上应用以固定EM的标准功率。使用线性依赖性对额定的最大功率进行缩放效率和最大扭矩功率。但是,这种方法有一些缺点。本研究提出了基于磁路模型(MCM)的两种配方,其中具有一个或十个参数。然后,MCM涉及HEV的多目标优化过程。此过程是使用动态编程作为最佳能量管理的全局调整过程。然后提出了混合动力车辆的最佳施加,用于各种驾驶条件。

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