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首页> 外文期刊>Electric Power Applications, IET >Nine-phase IM for hybridisation of a compact vehicle by parallel TTR architecture
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Nine-phase IM for hybridisation of a compact vehicle by parallel TTR architecture

机译:通过并行TTR架构用于紧凑型汽车混合动力的九相IM

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摘要

This study investigates the usage of a nine-phase induction motor (IM) in internal combustion engine vehicle hybridisation. Aiming to minimise structural changes, the parallel-through-the-road (TTR) hybrid architecture was chosen. First, a real vehicle was experimented on the mobility technology centre Federal University of Minas Gerais (CTM-Universidade Federal de Minas Gerais (UFMG) laboratory) to get its characteristics. After that, this technical information was used to model and simulate on the software advanced vehicle simulator (ADVISOR). The simulated model results were compared with the experimental tests results realised with the vehicle on the tests track and CTM-UFMG. Posteriorly, through a validated vehicle model, a drivetrain powered by a prototype of a nine-phase IM was integrated into the rear axle to do the hybridisation process simulation. To do that some structures modifications were necessary on ADVISOR since this tool does not include the parallel-TTR architecture. Vehicles modelled were simulated using the urban driving dynamometer schedules. Finally, the comparative analyses of simulation results show the improvements in fuel consumption, vehicle efficiency, emission gas, and the nine-phase motor operation in a hybrid TTR.
机译:这项研究调查了九相感应电动机(IM)在内燃机汽车混合动力中的用途。为了最大程度地减少结构更改,选择了并行路(TTR)混合体系结构。首先,在米纳斯吉拉斯州联邦大学移动技术中心(CTM-米纳斯吉拉斯州联邦大学(UFMG)实验室)上试验了一种真实车辆,以了解其特性。之后,该技术信息被用于在软件高级车辆模拟器(ADVISOR)上进行建模和仿真。将模拟的模型结果与车辆在测试轨道和CTM-UFMG上实现的实验测试结果进行比较。之后,通过验证的车辆模型,将由九阶段IM原型驱动的动力传动系统集成到后桥中,以进行混合过程仿真。为此,必须在ADVISOR上进行一些结构修改,因为该工具不包括并行TTR体系结构。使用城市驾驶测功机时间表模拟了建模的车辆。最后,对仿真结果的比较分析表明,混合动力TTR在燃油消耗,车辆效率,废气排放和九相电动机运行方面都有所改善。

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