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Field-programmable beam reconfiguring based on digitally-controlled coding metasurface

机译:基于数控编码超表面的现场可编程光束重构

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Digital phase shifters have been applied in traditional phased array antennas to realize beam steering. However, the phase shifter deals with the phase of the induced current; hence, it has to be in the path of each element of the antenna array, making the phased array antennas very expensive. Metamaterials and/or metasurfaces enable the direct modulation of electromagnetic waves by designing subwavelength structures, which opens a new way to control the beam scanning. Here, we present a direct digital mechanism to control the scattered electromagnetic waves using coding metasurface, in which each unit cell loads a pin diode to produce binary coding states of "1" and "0". Through data lines, the instant communications are established between the coding metasurface and the internal memory of field-programmable gate arrays (FPGA). Thus, we realize the digital modulation of electromagnetic waves, from which we present the field-programmable reflective antenna with good measurement performance. The proposed mechanism and functional device have great application potential in new-concept radar and communication systems.
机译:数字移相器已应用于传统相控阵天线中,以实现波束控制。然而,移相器处理感应电流的相位。因此,它必须位于天线阵列每个元件的路径中,从而使相控阵天线非常昂贵。超材料和/或超表面可以通过设计亚波长结构实现电磁波的直接调制,这为控制束扫描开辟了新途径。在这里,我们提出了一种直接数字机制,使用编码超表面来控制散射的电磁波,其中每个单位单元加载一个pin二极管以产生“ 1”和“ 0”的二进制编码状态。通过数据线,可以在编码超表面与现场可编程门阵列(FPGA)的内部存储器之间建立即时通信。因此,我们实现了电磁波的数字调制,从中我们提出了具有良好测量性能的现场可编程反射天线。所提出的机构和功能装置在新概念雷达和通信系统中具有巨大的应用潜力。

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