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Single Layer Reflectarray With Circular Rings and Open-Circuited Stubs for Wideband Operation

机译:具有圆环和开路短截线的单层反射阵列,用于宽带操作

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摘要

The design of a single-layer reflectarray, which employs a new phasing element in the form of a fixed-size circular ring and a variable-length open-circuited stub, is presented. The array is developed on a thin substrate supported by a thick foam material. Investigations are performed to obtain a linear reflection phase as a function of the stub's length when the element operates in a unit cell. This goal is achieved by a suitable choice of the ring's radius and width and the stub's width. In order to validate the simulated element's reflection phase behavior, a waveguide simulator is manufactured to perform experimental tests. The phasing element offering best linear phase characteristics is used to design an $X$-band offset fed 13$,times,$ 13 element reflectarray pointing at 20 $^{circ}$ from the broadside direction. Full-wave simulations performed using CST Microwave Studio show desired radiation characteristics of the designed array antenna. The simulated performance is confirmed by experimental tests performed on the fabricated reflectarray prototype showing a 17.8% 3-dB gain drop bandwidth.
机译:提出了单层反射阵列的设计,该阵列采用了固定大小的圆环和可变长度的开路短截线形式的新型定相元件。该阵列在由厚泡沫材料支撑的薄基板上显影。当单元在晶胞中工作时,要进行研究以获得与短截线长度有关的线性反射相位。通过适当选择环的半径和宽度以及短截线的宽度可以实现此目标。为了验证模拟元素的反射相位行为,制造了一个波导模拟器来进行实验测试。提供最佳线性相位特性的定相元件用于设计$ X $的带偏移量,馈入的13 $,x,13元素反射阵列从宽边方向指向20。使用CST Microwave Studio执行的全波仿真显示了设计的阵列天线的所需辐射特性。仿真性能已通过对制造的反射阵列原型进行的实验测试得到证实,显示出17.8%的3 dB增益下降带宽。

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