天线(收音机)
相(物质)
极高频率
光学
计算机科学
物理
电信
量子力学
作者
Geng‐Bo Wu,Yuan-Song Zeng,Ka Fai Chan,Bao-Jie Chen,Shi‐Wei Qu,Chi Hou Chan
标识
DOI:10.1109/tap.2019.2943432
摘要
This article presents a novel design of filtering reflectarray antenna, an integrated module for the combination of filtering and high-gain radiation performance. The filtering reflectarray consists of two-section metal pixel waveguide elements, which can realize the optimized aperture reflection phase distributions in the operating band f 1 ≤ f ≤ f 2 to yield high-gain radiation. Below the lower cutoff frequency f 1 , the reflection phase distributions drastically deviate from the required ones. Above the upper cutoff frequency f 2 , both the amplitude and phase distributions fail to provide strong coherent radiation. In the reflectarray synthesis process, a multi-frequency phase matching method (PMM) is further developed, in which the phase compensation for each pixel is implemented at three simultaneous in-band frequencies. Meanwhile, the effects of incident angle for elements are also taken into consideration during the reflectarray synthesis. The design of an 11λ× 11λ filtering reflectarray operating from 55 to 65 GHz was conveniently fabricated by 3-D printing technology, followed by metal coating with advantages of rapid prototyping, lightweight, and low cost. Both the simulated and measured results show that the proposed reflectarray can realize high-gain radiation within the desired frequency band but presents effective suppression of out-of-band signals, demonstrating its filtering capability.
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