Title :
A New Forward-Problem Solver Based on a Capacitor-Mesh Model for Electrical Capacitance Tomography
Author :
Mirkowski, Jacek ; Smolik, Waldemar T. ; Yang, M. ; Olszewski, T. ; Szabatin, Roman ; Radomski, Dariusz S. ; Yang, Wuqiang Q.
Author_Institution :
Warsaw Univ. of Technol., Warsaw
fDate :
5/1/2008 12:00:00 AM
Abstract :
An electrical-capacitance-tomography sensor consists of a set of measurement electrodes. It is difficult to calculate the capacitance for a given sensor structure and given permittivity distribution, which is called solving the forward problem, theoretically. Therefore, finite-element methods (FEM) and finite-difference methods are commonly used to solve the forward problem and to generate a sensitivity matrix for image reconstruction. This paper presents a new approach to solving the forward problem based on a capacitor-mesh model. It has been used for iterative image reconstruction using an updated sensitivity matrix according to an estimated image. In this paper, some simulation results are presented and compared with the results obtained using an FEM software package from Ansoft Company, showing that the new approach is promising.
Keywords :
capacitive sensors; finite difference methods; finite element analysis; capacitor-mesh model; electrical-capacitance-tomography sensor; finite-difference methods; finite-element methods; forward problem; forward-problem solver; iterative image reconstruction; sensitivity matrix; Electrical-capacitance tomography (ECT); image reconstruction; sensitivity matrix;
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
DOI :
10.1109/TIM.2007.911610