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Smart obstacles in time dependent electromagnetic scattering

机译:时变电磁散射中的智能障碍

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Smart (or active) obstacles are obstacles that, when illuminated by an incoming field, react by actuating a policy in order to pursue an assigned goal. The design of smart objects can be improved by the availability of satisfactory mathematical models. We propose the use of models based on optimal control problems to describe the behaviour of smart objects. We restrict our attention to the context of time dependent electromagnetic scattering. In this context, the smart obstacle, in order to pursue its goal, circulates on its boundary a surface electric current density. The optimal control problems associated with these obstacles give a way of characterizing and computing the current densities needed as optimal solutions of the mathematical problems considered. The goal pursued by smart obstacles is one of the following: 1) to be undetectable (i.e. furtivity problem); 2) to appear to have a different shape (i.e. masking problem); 3) to appear in a different location from its actual one (i.e. ghost obstacle problem). We concentrate on furtivity and masking problems in time dependent three dimensional electromagnetic obstacle scattering.
机译:聪明的(或活动的)障碍物是障碍物,当受到入射场的照亮时,它们会通过启动策略以实现指定的目标而做出反应。可用令人满意的数学模型可以改善智能对象的设计。我们建议使用基于最佳控制问题的模型来描述智能对象的行为。我们将注意力集中在与时间有关的电磁散射的上下文中。在这种情况下,智能障碍物为了追求其目标,在其边界上循环表面电流密度。与这些障碍相关的最优控制问题为表征和计算所需电流密度提供了一种方法,可以作为所考虑的数学问题的最优解决方案。聪明的障碍者追求的目标是以下之一:1)不可察觉(即,生产率问题); 2)看起来具有不同的形状(即遮罩问题); 3)出现在与实际位置不同的位置(即重影障碍问题)。我们专注于时间依赖性三维电磁障碍物散射中的掩盖性和掩蔽性问题。

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