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首页> 外文期刊>Scientific reports. >Design of Phase Gradient Coding Metasurfaces for Broadband Wave Modulating
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Design of Phase Gradient Coding Metasurfaces for Broadband Wave Modulating

机译:宽带波调制相位梯度编码元件的设计

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摘要

Wave modulating is one of the most interesting applications of metasurfaces. It requires an effective method to design metasurfaces with arbitrary space-variant phase. In this paper, we proposed an optimized design method for arbitrarily modulating wave based on the Genetic Algorithm, which is efficient to optimize designated radiation patterns according to application requirements. In order to verify the availability of the method, wave modulating of single lobe radiation at 10?GHz and broadband 3-lobes radiation at X band are optimized. For wave modulating of single lobe radiation, eight basic codes are chosen to excite the specific phases evenly dispersed from 0 to 2π for smooth phase gradient, and the 8?×?8, 20?×?20 and 40?×?40 arrays of the basic codes are optimized. It proves that the wave modulation accuracy is enhancing with the increase of elements quantity. For wave modulating of 3-lobes radiation, the 20?×?20 arrays are proposed and optimized, and their basic codes are increased to 32 for meeting the broadband requirement. Its broadband wave modulating has been verified by simulation and experiment, and it is shown that the directional 3-lobes radiation patterns keeps nearly stable within the broadband frequency range of 8.7–11.3?GHz.
机译:波调制是Metasurfaces最有趣的应用之一。它需要一种有效的方法来设计具有任意空间变体阶段的元件。在本文中,我们提出了一种基于遗传算法的任意调制波的优化设计方法,其有效地根据应用要求优化指定的辐射模式。为了验证该方法的可用性,优化了10°GHz和宽带3-叶片辐射的单叶辐射的波调制。对于单叶辐射的波调制,选择八个基本代码以激发均匀分散到0到2π的特定相对于平滑相位梯度,8?×8,20?×20和40?×40阵列基本代码进行了优化。它证明了波调制精度随着元素数量的增加而增强。对于3-叶辐射的波调制,提出和优化了20?×20阵列,并且它们的基本代码增加到32,以满足宽带要求。通过仿真和实验验证了其宽带波调制,并显示了定向3-凸起辐射图案在8.7-11.3的宽带频率范围内保持几乎稳定。

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