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Fringe effect of electrical capacitance and resistance tomography sensors

机译:电容和电阻层析成像传感器的边缘效应

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Because of the 'soft-field' nature, all electrical tomography sensors suffer from electric field distortion, i.e. the fringe effect. In electrical resistance tomography (ERT) sensors, small pin electrodes are commonly used. It is well known that the pin electrodes result in severe electric field distortion or the fringe effect, and the sensing region of such an ERT sensor spreads out of the pin electrode plane to a large volume. This is also true for electrical capacitance tomography (ECT) sensors, even though it is less severe because of larger electrodes and grounded end guards used. However, when the length of electrodes in an ECT sensor without guards is reduced to almost the same dimension as those in an ERT sensor, the fringe effect is equally obvious. To investigate the fringe effect of ERT and ECT sensors with and without guards, simulations were carried out with different length of electrodes and the results are compared with the corresponding 2D simulation. It is concluded that ECT and ERT sensors with longer electrodes have less fringe effect. Because grounded end guards are effective in reducing the fringe effect of ECT sensors, we propose to apply grounded guards in ERT sensors and integrate ECT and ERT sensors together. Simulation results reveal that ERT sensors with grounded guards have less fringe effect. While commonly current excitation is used with ERT sensors, we propose voltage excitation instead to apply the grounded guards. The feasibility of this approach has been verified by experiment. Finally, a common structure for reducing the fringe effect is proposed for ECT and ERT sensors for the first time to simplify the sensor structure and reduce the mutual interference in ECT/ERT dual-modality measurements.
机译:由于具有``软场''性质,因此所有电子断层扫描传感器均会遭受电场畸变(即边缘效应)的影响。在电阻层析成像(ERT)传感器中,通常使用小引脚电极。众所周知,针状电极导致严重的电场畸变或边缘效应,并且这种ERT传感器的感测区域从针状电极平面扩展到大体积。即使对于电容层析成像(ECT)传感器来说也是如此,尽管由于使用了较大的电极和接地的端防护装置而使它的强度降低了。但是,当无保护装置的ECT传感器中的电极长度减小到与ERT传感器中的电极几乎相同的尺寸时,条纹效果同样明显。为了研究带有和不带有保护装置的ERT和ECT传感器的边缘效应,对不同长度的电极进行了仿真,并将结果与​​相应的2D仿真进行了比较。结论是电极较长的ECT和ERT传感器的条纹效应较小。因为接地的端部保护罩可有效减少ECT传感器的边缘效应,所以我们建议在ERT传感器中应用接地的保护罩,并将ECT和ERT传感器集成在一起。仿真结果表明,带有接地保护罩的ERT传感器的边缘效应较小。虽然通常将电流激励与ERT传感器一起使用,但我们建议使用电压激励代替接地保护装置。实验证明了该方法的可行性。最后,首次提出了一种用于减少ECT和ERT传感器条纹效应的通用结构,以简化传感器结构并减少ECT / ERT双模态测量中的相互干扰。

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