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Control Strategy for an Open-End Winding Induction Motor Drive System for Dual-Power Electric Vehicles

机译:双电动电动车开口绕组电机驱动系统的控制策略

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摘要

This work presents the control strategies for the configuration involving an open-end winding induction motor (OW-IM) fed by dual two-level inverters, which can realize the controllable power sharing between two isolated power sources without using the DC/DC converter. Based on the mathematical model of the OW-IM and the principles of the voltage vector distribution, two rotor flux calculation algorithms, namely the motor loss minimization (MLM) algorithm and the maximum power sharing capability (MPSC) algorithm are proposed and compared, with their selection strategy to select the suitable algorithm depending on the operating condition. The MLM algorithm has the optimal efficiency performance, while the MPSC algorithm can maximize the power sharing capability of the dual inverter while holding the widest operation range of the motor. Based on the dual space vector pulse-width modulation (SVPWM) control scheme, the golden section (GS) search method is introduced to allocate the stator voltage vector to the dual inverter for the power sharing demand, with a flexible iteration number to obtain a stable and efficient computational performance, which fully utilizes the power sharing capability via the voltage vector distribution. Simulation results prove the validity and the advantages of the proposed strategy. This system also lays a foundation for energy management function of the dual-power electric vehicles.
机译:这项工作介绍了由双层逆变器馈送的开口绕组感应电动机(OW-IM)的配置的控制策略,这可以在不使用DC / DC转换器的情况下实现两个隔离电源之间的可控电力共享。基于OW-IM的数学模型以及电压矢量分布的原理,提出了两个转子磁通计计算算法,即电机磁通量最小化(MLM)算法和最大功率共享能力(MPSC)算法,并进行比较它们的选择策略根据操作条件选择合适的算法。 MLM算法具有最佳效率性能,而MPSC算法可以在保持电动机最宽的操作范围的同时最大化双逆变器的功率共享能力。基于双空间矢量脉冲宽度调制(SVPWM)控制方案,引入金截面(GS)搜索方法以将定子电压矢量分配给双逆变器以进行功率共享需求,具有灵活的迭代号以获得a稳定和有效的计算性能,它充分利用了电压矢量分布的功率共享功能。仿真结果证明了拟议策略的有效性和优势。该系统还为双电动电动车的能量管理功能奠定了基础。

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