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Microwave imaging based on two hybrid particle swarm optimization approaches

机译:基于两种混合粒子群优化方法的微波成像

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摘要

In this paper, the solution of the inverse scattering problem for determining the shape and location of perfectly conducting scatterers by making use of electromagnetic scattered fields is presented. 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 one. Then, two evolutionary algorithms are used to solve the inverse scattering problem. To further clarify, our contribution is to test two well-known algorithms in the literature to the problem of microwave imaging. The hybrid approaches combine the standard particle swarm optimization (PSO) with the ideas of the simulated annealing and extremal optimization algorithms, respectively. Both of them are shown to be more efficient than original PSO technique. Reconstruction results by using the two presented schemes are compared with exact shapes of some conducting cylinders; and good agreements with the original shapes are observed.
机译:本文提出了利用电磁散射场确定理想导电散射体的形状和位置的逆散射问题的解决方案。根据边界条件和测得的散射场,导出了一组非线性积分方程,并将成像问题重新公式化为一个优化方程。然后,使用两种进化算法来解决逆散射问题。为了进一步阐明,我们的贡献是测试文献中针对微波成像问题的两种众所周知的算法。混合方法分别将标准粒子群优化(PSO)与模拟退火和极值优化算法的思想相结合。两种方法都比原始的PSO技术更有效。使用两种提出的方​​案的重建结果与某些导电圆柱体的精确形状进行了比较。并观察到与原始形状的良好一致性。

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