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A position error compensation way for sensorless linear motor drive using high frequency injection

机译:无传感器线性电机高频注入驱动的位置误差补偿方法

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This paper presents a method of improving sensorless control based on the high frequency injection(HFI)for linear motor. The d- and q-axis incremental self- and mutual-inductance are determined by finite element analysis. The estimated mover position error caused by the cross-coupling magnetic saturation between the d- and q-axis is quantitatively analyzed. The error caused by filters in a HFI system is analyzed based upon filter group delay theory. A simple-to-design on-line compensation method is proposed based upon filters and cross-coupling magnetic saturation in a HFI system, which minimizes the position error. Finally, the simulation and experiment show a significant improvement in the accuracy of the mover position estimation.
机译:本文提出了一种基于高频注入(HFI)的直线电机无传感器控制的改进方法。通过有限元分析确定d轴和q轴增量自感和互感。定量分析了由d轴和q轴之间的交叉耦合磁饱和引起的估计动子位置误差。基于滤波器群时延理论,分析了HFI系统中由滤波器引起的误差。提出了一种基于滤波器和HFI系统中磁饱和交叉耦合的设计简单的在线补偿方法,该方法使位置误差最小。最后,仿真和实验表明动子位置估计的精度有了显着提高。

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