微波成像:直接散射问题解决方案的比较

Jan Ciganek, Petr Kadlec, Z. Raida, M. Wiktor
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引用次数: 2

摘要

乳腺癌的检测已成为当今最紧迫的任务之一。与传统的x射线乳房x线摄影相比,微波成像检测乳腺癌有几个优点。如果测试是使用微波成像系统进行的,那么人就不会暴露在高剂量的辐射中;x射线法对放射学上致密的组织不太敏感,等等。散射求解器是微波成像系统的重要组成部分。来自一个在介电常数和导电性方面表现出对比的未知物体的散射必须加以分析。该问题的数值解有几种方法,如积分方程法(IE)、有限差分法(FD)、有限元法(FE)等。本文给出了用IE、FD和FE方法求解散射问题的公式。从适合模拟散射问题的角度对这些方法进行了比较。准确性、计算时间和内存需求是方法比较的标准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microwave imaging: Comparison of direct scattering problem solvers
Breast cancer detection has become one of the most emergent tasks these days. A microwave imaging for the breast cancer detection shows several advantages compared to the conventional X-ray mammography. If the test is carried out using the microwave imaging system a person is not exposed to a high dose of the radiation; the X-ray method is less sensitive to radio-graphically dense tissues, etc. A scattering solver is the most important part of the microwave imaging system. The scattering from an unknown object that exhibits a contrast in electric permittivity and conductivity has to be analyzed. There are several approaches for a numerical solution of the problem, e.g. Integral Equations (IE), Finite Differences (FD), Finite Elements (FE) and other methods.In the paper, the formulation of the scattering problem using IE, FD and FE methods is given. These methods are compared from the viewpoint of their suitability to model a scattering problem. Accuracy, computational time, and memory demands are the criteria for the method comparison.
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