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Electrical-Continuously Variable Transmission System Based on Doubly Fed Flux-Bidirectional Modulation

机译:基于双馈磁通双向调制的电连续变速传动系统

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摘要

A brushless power split system is presented in this paper. The proposed system offers an electric solution for continuously variable transmission (CVT) in hybrid electrical vehicles (HEVs). The key contribution is to use a doubly fed flux-bidirectional-modulation (DF-FBM) machine with two electric ports and two concentric mechanical ports to realize power combination and split in HEV. The torque distribution relationship between two rotors is derived from the mathematical model of the DF-FBM machine and verified by simulation using finite-element method (FEM) and experiment results. This electric CVT system not only integrates the merits of the dual rotor machine and flux modulation machine but also enjoys additional benefits such as high torque density and low-cost partial-scale converter. The operation principle, flux modulation principle, and steady performance of the machine are investigated. Control strategy with dual rotor position feedback is developed. Time stepping FEM is used to analyze the dynamic performance of the proposed system. A prototype is fabricated and the experimental results verify the validity of the mathematical model and simulation results.
机译:本文提出了一种无刷功率分配系统。拟议中的系统为混合动力汽车(HEV)中的无级变速器(CVT)提供了一种电动解决方案。关键的贡献是使用具有两个电端口和两个同心机械端口的双馈磁通双向调制(DF-FBM)机器来实现HEV中的功率组合和分配。从DF-FBM电机的数学模型推导了两个转子之间的转矩分配关系,并通过有限元方法(FEM)和实验结果进行了仿真验证。这种CVT电动系统不仅融合了双转子电机和磁通调制电机的优点,而且还具有高扭矩密度和低成本分刻度转换器等其他优点。研究了电机的工作原理,磁通调制原理和稳定性能。开发了具有双转子位置反馈的控制策略。时间步进有限元法用于分析所提出系统的动态性能。制作了原型,实验结果验证了数学模型和仿真结果的有效性。

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