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首页> 外文期刊>Turkish Journal of Electrical Engineering and Computer Sciences >An integrated approach for the development of an electric vehicle powertrain: design, analysis, and implementation
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An integrated approach for the development of an electric vehicle powertrain: design, analysis, and implementation

机译:电动汽车动力总成开发的集成方法:设计,分析和实施

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An integrated approach for the development of an electric vehicle powertrain: design, analysis, and implementation Authors: ?ZGüR üSTüN, RAMAZAN NEJAT TUNCAY, MERT SAFA M?KüKCü, ?MER C?HAN KIVAN?, GüRKAN TOSUN, CAN G?KCE, MURAT ?AKAN Abstract: Electric motor and power electronic systems are essential elements for the performance and efficiency of electric vehicles (EVs) and hybrid electric vehicles. The inadequacy of the range due to battery limitations is compensated by powertrain solutions and innovative control algorithms. Future targets of electric powertrains are mostly based on weight, space, and efficiency issues. Highly efficient low-volume and light-weight propulsion systems increase the performance of EVs and also enhance their importance as an alternative to internal combustion engine vehicles. In this paper, a detailed propulsion system design study is presented by considering all of the important constraints of the electric powertrain. The design criteria and output, which are opposites of each other, are submitted in terms of their advantages and disadvantages. The tests of all constraints are conducted as a whole and discretely and then the effects of electrical machine and power electronics circuits are presented. Keywords: Brushless DC motor, electric vehicle, hybrid electric vehicle, finite element analysis, computational fluid dynamics, subfractional slot winding, regenerative braking, internal combustion engine Full Text: PDF.
机译:开发电动汽车动力总成的集成方法:设计,分析和实施作者:ZGüRüSTüN,RAMAZAN NEJAT TUNCAY,MERT SAFA M?KüKCü,?MER C?HAN KIVAN?,GüRKANTOSUN,CAN G?KCE,电动机和电力电子系统是电动汽车(EV)和混合电动汽车性能和效率的基本要素。动力总成解决方案和创新的控制算法弥补了由于电池限制而导致的量程不足。电力传动系统的未来目标主要基于重量,空间和效率问题。高效的小体积和轻型推进系统提高了电动汽车的性能,并增强了其作为内燃机车辆替代品的重要性。在本文中,通过考虑电动动力总成的所有重要约束条件,进行了详细的推进系统设计研究。彼此相反的设计标准和输出是根据其优点和缺点提出的。所有约束的测试都作为一个整体进行,并进行离散,然后介绍电机和电力电子电路的影响。关键字:无刷直流电动机,电动汽车,混合动力电动汽车,有限元分析,计算流体力学,次分数槽绕组,再生制动,内燃机全文:PDF。

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