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Solving Inverse Scattering Problems Based on Truncated Cosine Fourier and Cubic B-Spline Expansions

机译:基于截余弦傅里叶和三次B样条展开的反散射问题求解

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In this paper, a comparison between truncated cosine Fourier expansion (TCFE) and cubic B-spline expansion (CBSE) for representation of the unknown scatterer properties in solving inverse scattering problems is presented. In this comparison, the efficiency of both aforementioned expansion techniques is examined for permittivity and conductivity profile reconstruction problems. The study is carried out by converting the reconstruction problem to an optimization one and using the finite difference time domain (FDTD) method as forward electromagnetic (EM) solver and the differential evolution (DE) technique as global optimizer. The main benefit of the expansion representations of the unknown properties is the reduction of the ill-posedness, which is achieved by decreasing the number of unknowns of the inverse problem. The comparison is done under the same conditions of the number of population and optimization iterations. Numerical results related to the reconstruction of one-dimensional (1D) and two-dimensional (2D) scatterers indicate that both expansion methods are reliable tools for inverse scattering applications. It is shown that the use of the CBSE results in faster convergence of the reconstruction process compared to the TCFE. However, the TCFE gives more accurate reconstruction especially in the edges of scatterers. Both expansion techniques are robust against the presence of noise in the measurements.
机译:在本文中,比较了截断余弦傅立叶展开式(TCFE)和三次B样条展开式(CBSE)来表示未知散射体在求解逆散射问题中的表现。在该比较中,针对介电常数和电导率分布重建问题检查了上述两种膨胀技术的效率。通过将重构问题转换为最优化问题,并使用时域有限差分(FDTD)方法作为前向电磁(EM)求解器,并使用差分演化(DE)技术作为全局优化器来进行研究。未知属性的展开表示的主要好处是减少了不适定性,这是通过减少反问题的未知数来实现的。比较是在总体数量和优化迭代次数相同的条件下完成的。与重建一维(1D)和二维(2D)散射体有关的数值结果表明,两种扩展方法都是用于逆散射应用的可靠工具。结果表明,与TCFE相比,使用CBSE可以更快地收敛重建过程。但是,TCFE尤其在散射体的边缘提供了更准确的重构。两种扩展技术都可以抵抗测量中存在的噪声。

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