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Research on Control Strategies of an Open-End Winding Permanent Magnet Synchronous Driving Motor (OW-PMSM)-Equipped Dual Inverter with a Switchable Winding Mode for Electric Vehicles

机译:电动汽车用开放式绕组永磁同步驱动电动机(OW-PMSM)的双绕组可切换模式的控制策略研究

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An open-end winding permanent magnet synchronous motor (PMSM) has a larger range of speed regulation than normal PMSM with the same DC voltage, and the control method is more flexible. It can also manage energy distribution between two power sources without a DC/DC converter. This paper aims at an electric vehicle equipped with OW-PMSM drive system with dual power sources and dual inverters; based on analyzing the external characteristics of each winding mode, we propose a winding mode switching strategy whose torque saturation judgmental algorithm, which is insensitive to motor’s parameters, could automatically realize upswitching of the winding mode. The proposed multi-level current hysteresis modulation algorithm could set the major power source and switch it at any time in independent mode, which accomplishes energy distribution between two power sources; its two control methods, low switching frequency method and high power difference method, could achieve different energy distribution effects. Simulation results confirm the validity and effectiveness of the winding mode switching strategy and current modulation method. They also show that an electric vehicle under the proposed control methods has better efficiency than one equipped with a traditional OW-PMSM drive system under traditional control.
机译:与直流电压相同的普通PMSM相比,开放式绕组永磁同步电动机(PMSM)的调速范围更大,控制方法更加灵活。它也可以在没有DC / DC转换器的情况下管理两个电源之间的能量分配。本文针对的是电动汽车,该电动汽车配备了具有双电源和双逆变器的OW-PMSM驱动系统。在分析每种绕组模式的外部特性的基础上,我们提出了一种绕组模式切换策略,该策略的转矩饱和判断算法对电机参数不敏感,可以自动实现绕组模式的上切换。提出的多级电流滞回调制算法可以设置主电源并随时以独立模式切换,从而实现了两个电源之间的能量分配。它的两种控制方法,低开关频率法和高功率差法,可以达到不同的能量分配效果。仿真结果验证了绕组模式切换策略和电流调制方法的有效性。他们还表明,采用提出的控制方法的电动汽车比配备有传统控制的传统OW-PMSM驱动系统的电动汽车具有更高的效率。

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