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A filtering waveguide aperture antenna based on all-resonator structures

机译:一种基于全谐振腔结构的滤波波导孔径天线

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摘要

In recent years, there has been a large amount of attention focused on the design of filtering antennas to reduce the front-end size of modern wireless communication systems. Although numerous design approaches are presented in the literature, they are usually applicable to a certain microwave circuit structure. Additionally, their implementations demand extra matching circuits or a structure which leads to an increase in the filtering antenna size. In this paper, the design of a 3rd-order filtering antenna operating at the X-band frequencies is presented utilizing the coupling matrix approach. It is based on 3rd order coupled-resonators filter without employing any extra structure. For the physical configuration, three inline coupled rectangular waveguide cavity resonators operating at TE_(101) mode are employed. The output of the last resonator is coupled to free space via a rectangular aperture. The dimensions of the aperture are manipulated to control the radiation quality factor (Q_r). To validate the simulated results, the design has been fabricated using the Computer Numerical Control technique. Excellent agreement between the simulation and measurement results has been obtained. The fractional bandwidth (FBW) is more than 10 when the reflection coefficient S_(11) = -20 dB. The gain response is very flat (7.54 ±0.2 dBi) from 9.5 to 10.5 GHz. The proposed filtering antenna is compact and low profile which may be of interest in radar applications.
机译:近年来,人们非常关注滤波天线的设计,以减小现代无线通信系统的前端尺寸。尽管文献中提出了许多设计方法,但它们通常适用于某种微波电路结构。此外,它们的实现需要额外的匹配电路或结构,这会导致滤波天线尺寸的增加。该文采用耦合矩阵方法设计了一种工作在X波段频率的三阶滤波天线。它基于三阶耦合谐振器滤波器,没有采用任何额外的结构。对于物理配置,采用了三个工作在TE_(101)模式下的直插耦合矩形波导腔谐振器。最后一个谐振器的输出通过矩形孔耦合到自由空间。操纵孔径的尺寸以控制辐射品质因数 (Q_r)。为了验证仿真结果,使用计算机数控技术制造了设计。仿真结果与测量结果非常吻合。当反射系数 S_(11) = -20 dB 时,分数带宽 (FBW) 大于 10%。增益响应在9.5至10.5 GHz范围内非常平坦(7.54 ±0.2 dBi)。所提出的滤波天线结构紧凑,外形扁平,在雷达应用中可能很有意义。

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