论文标题

使用多层超材料结构实现电磁波的能量隔离和不对称传播的智能辐射图设计

Intelligent Radome Design Using Multilayer Metamaterial Structures to Realize Energy Isolation and Asymmetric Propagation of Electromagnetic Wave

论文作者

Yuan, Jing, Kong, Xiangkun, Wang, Qi, Wu, Chen

论文摘要

在本文中提出并研究了利用复合材料的超材料结构的智能辐射,该结构可以通过控制销钉二极管的状态来实现电磁(EM)波自动自适应的能量隔离和不对称传播。整个结构主要由宽带极化敏感的极化转换器(PC)和主动频率选择性rasorber(AFSR)在传输模式和吸收模式之间进行切换,该模式用作能量选择表面(ESS)。其中,PC的功能是使EM波不对称地传输,AFSR的目的是使高功率波反射或吸收,这取决于波浪的极化类型。因此,Radome可以实现EM波和电磁屏蔽的不对称传播。考虑到等效电路模型(ECM)和参数研究来解释PC和AFSR的物理工作机制。实验证明了具有7*7个单位细胞的制造结构,并测量结果与模拟结果一致。考虑到自我实施的独特特征,提出的概念具有潜在的应用在电磁隐形和HPEMWS屏蔽中以保护通信设备。

An intelligent radome utilizing composite metamaterial structures is presented and investigated in this article, which can realize energy isolation and asymmetric propagation of electromagnetic (EM) wave self-adaptively by controlling states of PIN diodes. The whole structure mainly consists of a broadband polarization-sensitive polarization converter (PC) and an active frequency selective rasorber (AFSR) switching between a transmission mode and absorption mode which is used as an energy-selective surface (ESS). Among them, the function of the PC is to make the EM waves transmit asymmetrically, and the purpose of AFSR is to make the high-power waves be reflected or absorbed, which depends on the polarization type of the wave. Thus, the radome can realize both asymmetric propagations of EM wave and electromagnetic shielding. The equivalent circuit models (ECM) and parametric studies are considered to explain the physical operating mechanism of PC and AFSR. The fabricated structure with 7*7 unit cells is experimentally demonstrated and the measured results agree with simulated results well. Considering the distinctive characteristic of self-actuation, the presented concept has the potential application in electromagnetic stealth and HPEMWs shielding to protect communication devices.

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