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Design of a High-Speed Electric Propulsion System for Electric Vehicles

机译:电动汽车高速电推进系统设计

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A novel high-speed electric propulsion system for automotive applications is presented in this paper. It consists of a high-speed ferrite-based permanent magnet synchronous machine with a wide constant-power speed range, which is coupled to the vehicle wheels through a double-stage magnetic gear transmission system. Both the electrical machine and the magnetic gear have been designed based on advanced mechanical and electromagnetic modelling in order to comply with all design targets and constraints. The proposed solution has been evaluated by means of a simulation study, which is performed in MATLAB-Simulink. Particularly, a performance assessment has been carried out by referring to different driving cycles and case studies, namely a conventional low-speed electric propulsion system equipped with a mechanical single-gear transmission system and the proposed high-speed electric propulsion system driven by two different control strategies for comparison purposes.
机译:本文提出了一种用于汽车应用的新型高速电动推进系统。它由具有宽恒定功率范围的高速铁氧体基永磁同步电机组成,该速度范围通过双级磁齿轮传动系统耦合到车轮。电机和磁齿轮都是基于先进的机械和电磁建模设计的,以便遵守所有设计目标和约束。所提出的解决方案通过模拟研究评估,该研究是在Matlab-Simulink中执行的。特别地,通过参考不同的驱动循环和案例研究,已经进行了性能评估,即传统的低速电动推进系统,其配备有机械单齿轮传输系统和由两种不同驱动的提出的高速电动推进系统控制策略进行比较目的。

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