非线性反射目标对超短电磁脉冲的散射

S. Koshevaya, V. Grimalsky, E. Moreno, E. Gutierrez
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引用次数: 0

摘要

非线性无线电定位在未来的遥感系统中非常有前途,它被提出用于敏感地确定和识别物体,包括具有不同非线性电磁特性的元素。这是基于非线性加载的导电靶在电磁波散射下产生高次谐波的事实。研究再反射的谐波,可以确定一个非线性对象,也可以获得额外的信息。本文采用以下非线性散射体模型对超短电磁脉冲的散射进行了数值研究:非线性加载振子;二维板。计算提供了确定获得最大有效反射信号所需的电磁探测脉冲持续时间的最佳值的可能性。
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Scattering of ultrashort electromagnetic pulses by nonlinearly reflecting targets
Nonlinear radiolocation is very promising for future remote sensing systems and it has been proposed for sensible determination and recognition of objects, including elements with different nonlinear electromagnetic characteristics. It is based on the fact that generation of higher harmonics occurs under scattering of electromagnetic waves by nonlinearly loaded conducting targets. Investigating re-reflected harmonics, one can determine a nonlinear object, and also obtain additional information. The paper investigates numerically the scattering of ultrashort electromagnetic pulses by the following models of nonlinear scatterers: nonlinearly loaded vibrator; two-dimensional plate. The calculations give the possibility of determining optimal values of electromagnetic probing pulse duration needed to obtain the maximal useful reflected signal.
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