Phase compensation for space-fed planar microstrip reflect-array

Haoran Zhang, D. Zhao, Hua Li, Bing-Zhong Wang
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引用次数: 1

Abstract

REFLECT-ARRAY is commonly referred to as an array whose reflector is a plane. Similar to parabolic antenna, the reflect-array is typically fed by a horn. Based on the far-field (FF) model, i.e., spherical wave model, the feed horn is assumed to have a fixed phase center so that designers can employ it as the phase reference to estimate the phase of the feed wave incident on the reflect elements and compensate for reflect-array. However, in some configurations, the reflect-array is fed in the Fresnel zone. In such cases, the FF model becomes inappropriate. The paper presents a new method to calculate the compensation phase for reflect-elements. This method utilizes the phase of the incoming wave on the reflector units as the reference to calculate the compensation phase. An array that is feed by a close horn is designed with the proposed method. The numerical results in comparison with the conventional phase center method show that the proposed method performs better.
空间馈电平面微带反射阵列的相位补偿
反射阵列通常被称为反射面为平面的阵列。与抛物面天线类似,反射阵列通常由喇叭馈电。基于远场(FF)模型,即球面波模型,假设馈电喇叭有一个固定的相位中心,设计人员可以将其作为相位参考来估计入射到反射元件上的馈电波的相位,并对反射阵列进行补偿。然而,在某些配置中,反射阵列在菲涅耳区馈电。在这种情况下,FF模型就不合适了。本文提出了一种计算反射元件补偿相位的新方法。该方法利用入射波在反射器单元上的相位作为参考来计算补偿相位。采用该方法设计了一个近角馈源阵列。数值计算结果与传统的相位中心法进行了比较,表明该方法具有更好的性能。
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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