Wen Yintang, Zhang Zhenda, Zhang Yuyan, Sun Dongtao
Institute of Science and Technology, Yanshan University, Qinhuangdao 066004, China.
Key Lab of Measurement Technology and Instrumentation of Hebei Province, Qinhuangdao 066004, China.
Sensors (Basel). 2017 Dec 24;18(1):31. doi: 10.3390/s18010031.
A coplanar electrode array sensor is established for the imaging of composite-material adhesive-layer defect detection. The sensor is based on the capacitive edge effect, which leads to capacitance data being considerably weak and susceptible to environmental noise. The inverse problem of coplanar array electrical capacitance tomography (C-ECT) is ill-conditioning, in which a small error of capacitance data can seriously affect the quality of reconstructed images. In order to achieve a stable image reconstruction process, a redundancy analysis method for capacitance data is proposed. The proposed method is based on contribution rate and anti-interference capability. According to the redundancy analysis, the capacitance data are divided into valid and invalid data. When the image is reconstructed by valid data, the sensitivity matrix needs to be changed accordingly. In order to evaluate the effectiveness of the sensitivity map, singular value decomposition (SVD) is used. Finally, the two-dimensional (2D) and three-dimensional (3D) images are reconstructed by the Tikhonov regularization method. Through comparison of the reconstructed images of raw capacitance data, the stability of the image reconstruction process can be improved, and the quality of reconstructed images is not degraded. As a result, much invalid data are not collected, and the data acquisition time can also be reduced.
建立了一种共面电极阵列传感器用于复合材料粘结层缺陷检测成像。该传感器基于电容边缘效应,这导致电容数据相当微弱且易受环境噪声影响。共面阵列电容层析成像(C-ECT)的逆问题是病态的,其中电容数据的微小误差会严重影响重建图像的质量。为了实现稳定的图像重建过程,提出了一种电容数据冗余分析方法。该方法基于贡献率和抗干扰能力。根据冗余分析,将电容数据分为有效数据和无效数据。当用有效数据重建图像时,灵敏度矩阵需要相应改变。为了评估灵敏度图的有效性,使用奇异值分解(SVD)。最后,通过蒂霍诺夫正则化方法重建二维(2D)和三维(3D)图像。通过比较原始电容数据的重建图像,可以提高图像重建过程的稳定性,且重建图像质量不会下降。结果,无需采集大量无效数据,还可减少数据采集时间。