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A computational technique based on a real-coded genetic algorithm for microwave imaging purposes

机译:基于实数编码遗传算法的微波成像计算技术

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摘要

A computational approach based on a genetic algorithm is proposed for the solution of a nonlinear inverse scattering problem for short-range microwave imaging applications. Starting from an integral-equation formulation, the aim is to derive locations, shapes, and distributions of the dielectric parameters of cylindrical scatterers. Simultaneously, the approach also provides the distributions of the internal total electric field. After discretization, the problem is recast as a nonlinear optimization problem. The paper exploits the application of a real-coded genetic algorithm in order to minimize a suitable functional. The reconstruction of strong scatterers with a resolution beyond the Rayleigh criterion is shown, and computational aspects are discussed. Comparisons with results obtained by using approximated formulations and a binary-coded genetic algorithm are also provided. Finally, a hybrid version of the approach (based on the combined strategy of the genetic algorithm and a conjugate gradient method) is presented and preliminarily tested.
机译:针对短程微波成像应用中的非线性逆散射问题,提出了一种基于遗传算法的计算方法。从积分方程公式出发,目的是得出圆柱状散射体介电参数的位置,形状和分布。同时,该方法还提供了内部总电场的分布。离散化后,该问题被重铸为非线性优化问题。本文利用实数编码遗传算法的应用以最小化合适的功能。显示了分辨率超过瑞利准则的强散射体的重建,并讨论了计算方面。还提供了与使用近似公式和二进制编码遗传算法获得的结果的比较。最后,提出并初步测试了该方法的混合版本(基于遗传算法和共轭梯度方法的组合策略)。

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