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Non conducting object detection using low frequency electric field imaging: Possible application to anomaly detection in insulating materials

机译:使用低频电场成像的非导电物体检测:在绝缘材料异常检测中的可能应用

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This paper deals with the detection of non conducting objects by 2D-scanning of electric field variations. The principle relies on the measurement of the perturbations of a low frequency excitation electric field induced by the polarization of the object to be detected. These perturbations are measured thanks to an electric sensor and the excitation field is provided by a pair of electrodes. Finite elements method simulations are shown which illustrate the expected response of the system. The experimental setup is based on a horizontal planar (x-y) scanning table and on a synchronous detector locked at the excitation frequency. Images of the in-phase component of the vertical (z-axis) component of the electric field are obtained for two objects. These resulting images are discussed, allowing to expect further reconstruction of the non conducting objects shapes.
机译:本文涉及通过电场变化的二维扫描检测非导电物体。该原理依赖于对由待检测物体的极化引起的低频激励电场的扰动的测量。这些扰动是通过电传感器测量的,并且激发场由一对电极提供。显示了有限元方法仿真,这些仿真说明了系统的预期响应。实验装置基于水平平面(x-y)扫描台和锁定在激发频率的同步检测器。对于两个对象,获得了电场的垂直(z轴)分量的同相分量的图像。对这些结果图像进行了讨论,从而可以预期对非导电物​​体形状的进一步重建。

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