1-bit RF-MEMS-reconfigurable elementary cell for very large reflectarray

S. Montori, E. Chiuppesi, L. Marcaccioli, R. V. Gatti, R. Sorrentino
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引用次数: 1

Abstract

This paper presents a reconfigurable MEMS based radiating element for the realization of a beam steering reflectarray. The elementary cell consists of a square patch slotcoupled to a phase shifting circuit with 1-bit phase resolution (0°/180°), operating at 76.5GHz. Reconfigurability is obtained with RF MEMS switches integrated in the elementary cell. The problem of reconfigurability of reflectarray antennas based on RF MEMS technology is addressed within the European FP7 project called ARASCOM. Since thousands of reconfigurable elementary cells are employed, reducing the number of tuneable components is of fundamental importance for the practical realization of the reflectarray. A dramatic reduction of the number of tuneable devices is shown to be achievable without performance degradation by a proper architecture based on 1-bit digital phase shifting. In this paper the elementary cell design and the reflectarray fabrication technology are illustrated in some details showing the feasibility of the proposed approach.
1位rf - mems可重构基本单元用于非常大的反射
本文提出了一种基于微机电系统的可重构辐射元件,用于实现光束导向反射阵。基本单元由一个与相位分辨率为1位(0°/180°)的相移电路耦合的方形贴片缝隙组成,工作频率为76.5GHz。通过在基本单元中集成射频MEMS开关,实现了可重构性。基于射频MEMS技术的反射天线的可重构性问题在欧洲FP7项目ARASCOM中得到了解决。由于使用了数千个可重构的基本单元,因此减少可调谐元件的数量对于反射镜的实际实现至关重要。通过基于1位数字相移的适当架构,可以在不降低性能的情况下实现可调谐器件数量的大幅减少。本文详细介绍了基本单元设计和反射阵列制造技术,说明了该方法的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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