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Proof of Concept Low-Loss Reconfigurable Reflectarray for Beam Steering

机译:用于光束转向的概念低损耗可重构反射阵列

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This paper presents a low-loss reconfigurable reflectarray (RA) design in the X-Band. It has been observed in the literature that the majority of the reconfigurable RAs are operating at the lower frequency bands (less than 5 GHz). This work is based on stretching the string towards the higher frequency bands and observing the performance of reconfigurable RAs in various aspects. An X-Band low-loss, and compact reconfigurable RA is investigated. A varactor loaded aperture coupled element is used to achieve the phase tuning agility. The element is designed by dividing the transmission line (TL) into two parts, and electronically connecting them through a single surface mount Hyper abrupt varactor diode. The proposed element exhibits 265° dynamic phase tuning ability. The element is a square of length 15.6mm (0.6 × λ at 10.5 GHz). A biasing network is also designed to isolate the RF signal from the DC. An equivalent circuit model is verified with the full-wave analysis. A reconfigurable RA of 3 × 3 elements is designed, and its ability to ±45° dynamic beam steering is evaluated for center-fed and offset feeding method. The proposed RA exhibits good potential in electronically steering the beam within ±40° with a scan loss of 4.5 dBi (from broadside), with both feed method (@ 10.5 GHz).
机译:本文提出了一种X波段的低损耗可重构反射阵列(RA)设计。在文献中已经观察到,大多数可重新配置的RA在较低的频段(小于5 GHz)下运行。这项工作基于将字符串向更高的频段拉伸,并在各个方面观察了可重配置RA的性能。研究了X波段低损耗,紧凑的可重配置RA。变容二极管加载的孔径耦合元件用于实现相位调谐敏捷性。通过将传输线(TL)分为两部分,并通过单个表面贴装的超突变变容二极管进行电子连接,可以设计该元件。提出的元件具有265°动态相位调整能力。该元素是一个长度为15.6mm的正方形(在10.5 GHz处为0.6×λ)。还设计了一个偏置网络以将RF信号与DC隔离。通过全波分析验证了等效电路模型。设计了3×3元素的可重配置RA,并针对中心进纸和偏移进纸方法评估了其±45°动态光束转向的能力。两种RA方法(@ 10.5 GHz)下,拟议的RA在将光束电子控制在±40°内时具有良好的潜力,扫描损耗为4.5 dBi(从侧面)。

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