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Maximum-Torque-per-Ampere Control of Interior Permanent Magnet Synchronous Machine Applied for Hybrid Electric Vehicles

机译:用于混合电动车辆的内部永磁同步机的最大扭矩控制

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Permanent magnet synchronous machines are known as a good candidate for hybrid electric vehicles (HEV) due to their unique merits. According to the characteristic that d,q-axis inductances are not equal in interior permanent magnet synchronous motors (IPMSM), this paper introduces a maximum-torque-per-ampere (MTPA) control scheme, which can get a larger torque output under certain current condition. A relationship about the minimum d, q-axis currents required under certain torque output is derived by the maximum principle. In same capacity, relative to i_d=0 control, this method can significantly improve the low-speed torque and dynamic performance of the system. Moreover, the inductance saturation effect is considered, and an approximate algorithm for engineering applications is presented and applied to engineering practice. Finally, Experimental results verify the effectiveness and engineering practicability of the proposed approach.
机译:永磁同步机由于其独特的优点而被称为混合动力电动车辆(HEV)的良好候选者。根据D,Q轴电感不等于内部永磁同步电动机(IPMSM)的特性,本文介绍了最大扭矩 - 每安培(MTPA)控制方案,可以在某些情况下获得更大的扭矩输出现在的状况。关于某些扭矩输出所需的最小D,Q轴电流的关系是通过最大原理导出的。相对于I_D = 0控制,该方法可以显着提高系统的低速扭矩和动态性能。此外,考虑了电感饱和效应,并且呈现了一种近似的工程应用算法和应用于工程实践。最后,实验结果验证了所提出的方法的有效性和工程实用性。

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