Inverse scattering for shape and conductivity

W. Chien, C. Chiu
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Abstract

We consider the inverse problem of determining both the shape and the conductivity of a two-dimensional conducting scatterer from a knowledge of the far-field pattern of TM waves by solving the ill posed nonlinear equation. Based on the boundary condition and the measured scattered field, a set of nonlinear integral equations is derived and the imaging problem is reformulated into an optimization problem. Satisfactory reconstructions have been achieved by the genetic algorithm. Numerical results demonstrated that, even when the initial guess is far away from the exact one, good reconstruction has been obtained. Numerical results show that multiple incident directions permit good reconstruction of shape and conductivity.
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形状和电导率的逆散射
我们考虑通过求解病态非线性方程,从TM波的远场方向图的知识来确定二维导电散射体的形状和电导率的反问题。基于边界条件和实测散射场,导出了一组非线性积分方程,将成像问题转化为优化问题。通过遗传算法得到了满意的重建结果。数值结果表明,即使初始猜测与精确猜测相差甚远,也能得到较好的重构结果。数值结果表明,多个入射方向可以很好地重建形状和电导率。
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