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PM-RSM sensorless vector control: Zero q-axis flux versus approximate maximum torque per current, with experiments

机译:PM-RSM无传感器矢量控制:零Q轴通量与实验有近似最大扭矩,实验

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This paper presents two control strategies for the sensorless vector control of permanent magnet reluctance synchronous motor (PM-RSM) in a wide speed range: the zero q-axis flux control and an approximate maximum torque per current control. The approximate maximum torque per current control is a novel torque - dq current referencer which is capable to develop maximum available motor toque for an optimal dq current pair below base speed (maximum torque/ampere), but also in flux weakening region (above base speed) where voltage limitations impose constraints on the allowable dq currents. The motion sensorless control of the PM-RSM is obtained via model-based stator flux estimation using the “active flux” concept. Experimental results between 30 rpm and 3000 rpm, at low (25%) rated voltage, validate the two control systems up to a speed equal eight times the machine base speed. Finally, a comparison between the experimental results employing both control systems has been done.
机译:本文为广泛的速度范围内的永磁磁阻同步电动机(PM-RSM)的无传感器矢量控制的两个控制策略:零Q轴通量控制和每个电流控制的近似最大扭矩。每个电流控制的近似最大扭矩是一种新型扭矩 - DQ电流引用,能够为最佳DQ电流对(最大扭矩/安培)的最佳DQ电流对开发最大可用电机脚踏性,而且还在磁通弱化区域(高于基准速度其中电压限制在允许的DQ电流上施加约束。使用“有效通量”概念,通过基于模型的定子通量估计获得PM-RSM的运动传感器控制。实验结果在30 rpm和3000 rpm之间,低(25%)额定电压,验证两个控制系统,直到机器基速八倍的速度等于速度。最后,已经完成了采用控制系统的实验结果之间的比较。

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