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Spread-Spectrum Selective Camouflaging Based on Time-Modulated Metasurface

机译:基于时间调制的元表面的扩频选择性伪装

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This article presents the concept of spread-spectrum selective camouflaging based on time-modulated metasurface. The spectrum spreading is realized by switching the metasurface between the reflective states of a perfect electric conductor (PEC) mirror and a perfect magnetic conductor (PMC) mirror, using an array of microstrip patches connected to the ground via diode switches, according to a periodic pseudorandom noise sequence. As the spectrum spreading induces a drastic reduction of the power spectral density of the signal, the level of the scattered wave falls below the noise floor of the interrogating radar, and the object covered by the metasurface is hence perfectly camouflaged to a foe radar. Moreover, the object can be detected by a friend radar possessing the spread-spectrum demodulation key corresponding to the metasurface modulation, and this detection is robust to interfering signals. The proposed system is analyzed theoretically and demonstrated by both simulation and experimental results.
机译:本文介绍了基于时间调制的元面的扩频选择性伪装的概念。通过在周期性的情况下,通过通过二极管开关切换完美的电导体(PEC)镜子的反射状态和完美的磁导体(PMC)镜子之间的阵列通过二极管开关来实现光谱扩展。伪随机噪音序列。由于光谱扩展引起信号的功率谱密度的急剧降低,散射波的电平低于询问雷达的噪声底板,并且由元表面覆盖的物体因此完美地伪装到敌人雷达。此外,可以通过具有与元表面调制对应的扩频解调密钥的朋友雷达来检测对象,并且该检测对于干扰信号是鲁棒的。理论上,通过模拟和实验结果进行了理论上分析所提出的系统。

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