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Ultrathin active cloak with balanced loss and gain

机译:超薄主动斗篷,平衡失落和增益

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In this paper, we present the design and realistic implementation of an ultrathin active radio-frequency cloak, capable of significantly suppressing the scattering from electrically large objects beyond the limitations of passive cloaking techniques. The object is coated with a metasurface loaded by a discrete number of lumped circuit elements, which follow a rigorously derived distribution of balanced gain and loss, able to minimize the scattering cross-section of the system. The loss portion is tailored using passive components to absorb the incident wave and avoid back reflections, while the gain portion utilizes active circuitry to automatically generate a synchronized version of the impinging signal on the other side of the cloak, in order to suppress shadow and forward scattering. We derive the required metasurface parameters, including the frequency dispersion of its elements, in order to achieve a given reduction of the total radar cross section of PEC circular cylinders, with special attention to ensure stability of the active system. A design example is provided for a cylinder with a diameter of one wavelength at 1 GHz.
机译:在本文中,我们介绍了超薄有源射频隐身衣的设计和实际实现,该隐身能够显着抑制大型电气物体的散射,而无源隐身技术的局限性除外。该物体涂有由离散数量的集总电路元件加载的超表面,该集总电路元件遵循严格导出的平衡增益和损耗分布,能够使系统的散射截面最小。损耗部分使用无源组件量身定制,以吸收入射波并避免反射,而增益部分则利用有源电路在斗篷的另一侧自动生成撞击信号的同步版本,以抑制阴影和前向散射。我们得出所需的超颖表面参数,包括其元素的频散,以实现给定的PEC圆柱总雷达横截面减小,并特别注意确保主动系统的稳定性。提供了一个圆柱直径为1 GHz的直径的设计示例。

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