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Analysis and Optimal Design of Relative Position Detection Sensor for High Speed Maglev Train

机译:高速磁悬浮列车相对位置检测传感器的分析与优化设计

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The relative position detection sensor provides the information about position, speed, direction and magnetic phase for high-speed maglev train, by detecting the varying inductance of coils along the long stator with tooth-slot structure. Actual processing technique can't ensure the identity of two differential coils, which will make the direct current (DC) component of differential voltage drift and reduce the accuracy of sensor. In this paper, the effect of tooth-slot is equivalent to varying relative permeability. The wave distortion of differential voltage is analyzed, and algebraic expression of DC drift is derived. Based on that, some optimized methods are proposed. Experiment proves that they can effectively eliminate DC drift and improve the accuracy of sensor.
机译:相对位置检测传感器通过检测带有齿槽结构的长定子上线圈的变化电感,从而提供有关高速磁悬浮列车的位置,速度,方向和磁相的信息。实际的处理技术不能保证两个差分线圈的同一性,这会使差分电压的直流分量漂移,并降低传感器的精度。在本文中,齿槽的影响等效于变化的相对磁导率。分析了差分电压的波形畸变,推导了直流漂移的代数表达式。在此基础上,提出了一些优化方法。实验证明,它们可以有效消除直流漂移,提高传感器精度。

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