基于时空调制超表面的角度自适应多普勒斗篷

X. Fang, Minghui Chen, Meng Li, Dazhi Ding
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引用次数: 0

摘要

提出了一种由一对时空调制超表面构成的角度自适应平面多普勒隐身设计。第一个超表面将入射场聚焦在第二个超表面的特定位置,这是为了实现角反射和多普勒频移补偿而设计的。利用基于广义Snell定律的射线追迹方法,引入误差函数,对两个超表面的最佳相位轮廓进行数值推导,使多普勒隐身雷达截面在法线方向中心约60°角范围内尽可能保持稳定。自适应多普勒隐身可以提高被隐身运动物体的不可探测性。
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Angular Self-Adaptive Doppler Cloak Based on Space-Time Modulated Metasurface
A design of angular self-adaptive planar Doppler cloak composed by a pair of space-time modulated metasurfaces is proposed in this paper. The first metasurface focuses the incident field in a specific location on the second metasurface, that is designed for enabling angular reflection and Doppler frequency shift compensation. We make use of ray tracing method based on generalized Snell's law, and introduce an error function for deriving numerically the optimum phase profile of two metasurfaces, leading to keep the radar cross-section of the Doppler cloak as much stable as possible within an angular range of about 60° centered at the normal direction. The self-adaptive Doppler cloak may enhance the undetectability of cloaked moving objects.
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