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Design of a Linear Variable Differential Transformer With High Rejection to External Interfering Magnetic Field

机译:高抗外部干扰磁场的线性可变差动变压器的设计

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摘要

The sensitivity of linear variable differential transformer (LVDT) position sensors to external slowly varying magnetic fields represents a critical issue when these sensors are installed close to high-current cables or electrical motors with significant fringe fields. The resulting position error can reach several hundreds of micrometers against a specified uncertainty normally below a few micrometers. In this paper, the design of a LVDT position sensor with high rejection to external constant or slowly varying magnetic fields is addressed by exploiting the finite element method (FEM) simulator FLUX. A shield, isolated from the sensor's magnetic circuit, has been considered to reduce the effect of magnetic fields on the secondary voltages of the LVDT. In addition, a dc current is used in order to polarize the magnetic circuit to reduce the sensitivity of the sensor to external interferences.
机译:当线性可变差动变压器(LVDT)位置传感器安装在大电流电缆或边缘电场较大的电动机附近时,它们对外部缓慢变化的磁场的敏感性就成为一个关键问题。相对于通常低于几微米的指定不确定度,所产生的位置误差可以达到数百微米。在本文中,通过利用有限元方法(FEM)仿真器FLUX解决了对外部恒定或缓慢变化的磁场具有高抑制比的LVDT位置传感器的设计。已经考虑了与传感器磁路隔离的屏蔽层,以减少磁场对LVDT次级电压的影响。另外,使用直流电流以使磁路极化,从而降低传感器对外部干扰的敏感性。

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