六相感应电机的容错运行驱动模型

G. Aroquiadassou, A. Mpanda-Mabwe, F. Betin, G. Capolino
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引用次数: 12

摘要

本文介绍了定子开相42V容错六相感应电机(6PIM)的仿真和实验结果。6PIM具有对称的60度位移绕组,允许电动助力转向(EPS)应用的容错模式。一种采用矢量控制的闭环电压源逆变器(VSI)。6PIM模型是根据定子绕组在导体之间的分布和不同槽的几何尺寸推导出来的。通过对额定功率为90W、14V、50Hz、2极的六相鼠笼式感应电机进行仿真和实验研究,验证了系统在故障模式下的性能。本文还提出了利用dqO分量估计退化模式下转矩脉动的方法。
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Six-phase induction machine drive model for fault-tolerant operation
This paper presents the simulation and experimental results of a 42V fault-tolerant six-phase induction machine (6PIM) with opened stator phases. The 6PIM has symmetrical 60 degrees displacement winding allowing fault-tolerant modes for an electric power steering (EPS) application. A Voltage Source Inverter (VSI) in closed-loop using a vector control feeds its. The 6PIM model is derived from the stator winding distribution on a conductor-by-conductor basis and the geometrical dimensions of the different slots. A case study by simulation and experimental tests on a six-phase squirrel-cage induction machine rating 90W, 14V, 50Hz, 2 poles is described and analyzed to validate the system performance in faulted modes. This paper presents also the torque ripple estimation in degraded mode using the dqO components.
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