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Nondestructive Evaluation of Buried Dielectric Cylinders by Asynchronous Particle Swarm Optimization

机译:异步粒子群算法对埋入式电介质缸的无损评估

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This paper presents the study of time domain inverse scattering for a two-dimensional inhomogeneous dielectric cylinder buried in a slab medium via the finite difference time domain (FDTD) method and the asynchronous particle swarm optimization (APSO) method. For the forward scattering part, the FDTD method was employed to calculate the scattered E fields. Base on the scattering fields, these inverse scattering problems were transformed into optimization problems. The APSO method was applied to reconstruct the permittivity of the two-dimensional inhomogeneous dielectric cylinder. In addition, the effects of Gaussian noise on the reconstruction results were investigated. Numerical results show that even when the measured scattered fields were contaminated with Gaussian noise, APSO was able to yield good reconstructed quality.
机译:本文通过时域有限差分(FDTD)法和异步粒子群优化(APSO)法研究了埋入平板介质中的二维非均匀介质圆柱体的时域逆散射问题。对于前向散射部分,采用FDTD方法计算散射的E场。根据散射场,将这些逆散射问题转化为优化问题。应用APSO方法重建二维非均质圆柱体的介电常数。此外,还研究了高斯噪声对重建结果的影响。数值结果表明,即使当所测量的散射场被高斯噪声污染时,APSO仍能够产生良好的重建质量。

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