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Planar Array Capacitive Imaging Sensor Design Optimization

机译:平面阵列电容成像传感器设计优化

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Electrical capacitance tomography (ECT) is used in many industries as a non-invasive detection and measurement method, which works by finding permittivity changes in a viewing region. This usually consists of sensor electrodes surrounding a region of interest; however, this is not always possible as sometimes the viewing region is only accessible from a single side. In this case, a planar array ECT system can be used where the electrodes are all laid out on a co-planar surface. Initial simulation results indicated some features of sensor design which might aid image reconstructions. Five new electrode configurations were designed which incorporated these features in different ways. The designs were tested on their ability to reproduce a wooden block suspended in air and a water bottle buried in sand. Their performance was judged based on distance/depth detection of the block/water bottle, and the shape of the reconstruction. Singular value decomposition analysis was also performed on each sensor design to show their theoretical ability to reproduce the permittivity of the viewing region. Previously, similar work managed to reliably reconstruct objects at distances of 60 mm from the sensor. But in this paper, with a smaller sensor head, up to 90 mm was achieved with good accuracy. Combining the sensor designs together into a single sensor created the combined sensor, which was able to reconstruct objects with a much greater reliability, and was less susceptible to error or noise. With the right setup, the combined sensor was able to achieve up to 120 mm of depth detection. Also the combined sensor was able to detect a buried water bottle in sand up to 50 mm. Further simulation results on the combined sensor indicated that using up to 100 unique sensor configurations in the combined sensor was beneficial, but after 100 the amount of additional information gained was not significant. The results showed that the sensor head design can be optimized in order to produce improved reconstruction for planar array ECT. This improvement means that planar array ECT could potentially become a viable option for applications, such as landmine detection, particularly finding non-metallic objects, which cannot be picked up with conventional landmine detection techniques, such as metal detectors.
机译:电容层析成像(ECT)在许多行业中都用作非侵入性检测和测量方法,其工作原理是查找观察区域的介电常数变化。这通常由围绕感兴趣区域的传感器电极组成。然而,这并非总是可能的,因为有时只能从单侧访问观看区域。在这种情况下,可以使用平面阵列ECT系统,其中所有电极均布置在同一平面上。初始仿真结果表明传感器设计的某些功能可能有助于图像重建。设计了五种新的电极配置,它们以不同的方式结合了这些功能。对这些设计进行了测试,测试了它们复制悬浮在空中的木块和埋在沙子中的水瓶的能力。根据块/水瓶的距离/深度检测以及重建的形状来判断其性能。还对每个传感器设计进行了奇异值分解分析,以显示其再现视区介电常数的理论能力。以前,类似的工作设法在距传感器60毫米的距离处可靠地重建物体。但是在本文中,使用较小的传感器头,可以达到90 mm的精度。将传感器设计组合到一个传感器中便创建了组合传感器,该组合传感器能够以更高的可靠性重建对象,并且不易受到错误或噪声的影响。通过正确的设置,组合传感器能够实现最大120毫米的深度检测。组合传感器还能够检测出最大50毫米的沙子中的水瓶。对组合传感器的进一步仿真结果表明,在组合传感器中使用多达100种独特的传感器配置是有益的,但是在100种之后获得的附加信息数量并不重要。结果表明,可以对传感器头设计进行优化,以改善平面阵列ECT的重建效果。这种改进意味着,平面阵列ECT可能成为诸如地雷检测等应用的可行选择,特别是发现非金属物体,而这些金属物体无法通过常规地雷检测技术(例如金属探测器)来拾取。

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