利用复合涡理论设计可重构反射和辐射结构

M. Barbuto, A. Alú, F. Bilotti, A. Toscano
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引用次数: 3

摘要

可重构性是现代通信系统的一个重要特性,它需要实时适应不断变化的环境和不同的运行条件。虽然已经提出了几种调整电磁系统响应的方法,但寻求一种完整而简单的可重构策略仍远未解决。实际上,调整系统响应的可能性通常涉及大量控制线,因此,最终设计的实际实施存在一些关键问题。在这个框架下,我们讨论了利用复合涡旋理论来操纵反射和辐射系统响应的可能性。特别是,通过作用于有限数量的旋钮,即两个叠加涡旋模式的相对振幅和相位,我们表明贴片天线的辐射特性和反射表面的散射模式都可以很容易地控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Designing Reconfigurable Reflective and Radiating Structures by Exploiting Composite Vortex Theory
Reconfigurability is a key property of modern communication systems, which need to adapt in real-time to changing environments and different operative conditions. Although several approaches to tailor the response of an electromagnetic system have been proposed, the quest for a complete and simple reconfigurable strategy is still far to be solved. Indeed, the possibility to tailor the response of the system typically involves a huge number of control lines and, thus, some critical issues for the practical implementation of the final design. In this framework, we discuss here the possibility of exploiting composite vortex theory for manipulating the response of reflective and radiating systems. In particular, by acting on a limited number of knobs, i.e. the relative amplitude and phase of two superimposed vortex modes, we show that both the radiating properties of patch antennas and the scattering pattern of reflective surfaces can be easily controlled.
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