首页> 外文期刊>The imaging science journal >Generalised multi-scale image reconstruction algorithm for electrical capacitance tomography
【24h】

Generalised multi-scale image reconstruction algorithm for electrical capacitance tomography

机译:电容层析成像的广义多尺度图像重建算法

获取原文
获取原文并翻译 | 示例
       

摘要

Successful applications of electrical capacitance tomography (ECT) depend mainly on the precision and speed of the image reconstruction algorithms. In this paper, based on the wavelet multi-scale analysis method, a generalised multi-scale model of considering the inaccuracy of the capacitance data and reconstruction model is proposed, in which the original inverse problem is decomposed into a sequence of inverse problems based on the scale variables and then solved successively from the largest scale to the smallest scale until the solution of the original inverse problem is found. A generalised multi-scale objective functional, which has been developed using the least trimmed squares (LTS) estimation and the M-estimation, is proposed. This objective functional unifies the regularised LTS estimation, the regularised M-estimations, the regularised least squares (LS) estimation, the regularised combinational estimation of the LTS estimation and the M-estimations, the regularised combinational estimation of the LS estimation and the M-estimations into a concise formulation. An efficient solver, which integrates the beneficial advantages of the homotopy algorithm, the harmony search (HS) algorithm that has been developed using the multi-harmony techniques based on the cooperation of solutions, and the particle collision (PC) algorithm, is designed for searching a possible global optimal solution. The proposed algorithm is tested by six typical reconstruction objects using a 12-electrode square sensor. Numerical results show the efficiency and superiority of the proposed algorithm in solving ECT image reconstruction problem. In the cases considered in this paper, good results that show great improvement in the spatial resolution and accuracy are observed. The spatial resolution of the reconstructed images by the proposed algorithm is enhanced and the artefacts in the reconstructed images can be eliminated effectively. Meanwhile, the reconstructed results derived from the noise-contaminated capacitance data indicate that the proposed algorithm is successful in dealing with the inaccurate property in the capacitance data.
机译:电容层析成像(ECT)的成功应用主要取决于图像重建算法的精度和速度。本文基于小波多尺度分析方法,提出了一种考虑电容数据不精确性的广义多尺度模型和重构模型,将原始反问题分解为一系列反问题。尺度变量,然后从最大尺度到最小尺度依次求解,直到找到原始逆问题的解。提出了一种通用的多尺度目标函数,该函数已使用最小修剪平方(LTS)估计和M估计进行了开发。该目标功能统一了正则化LTS估计,正则化M估计,正则化最小二乘(LS)估计,LTS估计和M估计的正则化组合估计,LS估计的正则化组合估计和M-估算成简明的公式。设计了一种有效的求解器,该算法集成了同伦算法,基于解决方案协作的使用多谐和技术开发的和声搜索(HS)算法以及粒子碰撞(PC)算法的有益优势,寻找可能的全局最优解。使用12电极方形传感器,通过六个典型的重建对象对提出的算法进行了测试。数值结果表明了该算法在解决ECT图像重建问题上的有效性和优越性。在本文考虑的情况下,可以观察到良好的结果,这些结果显示出空间分辨率和准确性方面的巨大改进。提出的算法提高了重建图像的空间分辨率,可以有效消除重建图像中的伪像。同时,从被噪声污染的电容数据得到的重构结果表明,所提出的算法成功地处理了电容数据中的不准确特性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号