Characterization of Printed Podal Vivaldi Antenna (8–18 GHz) on RT Duroid with Single and Double Cavity

P. Madhav, M. Prasad
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引用次数: 2

Abstract

In today’s modern communication systems, miniaturized and lightweight subsystems covering broad bandwidth are in much demand as they lead to realization of very compact and lightweight systems. A printed podal Vivaldi antenna with single as well as double cavities fed with strip line transmission line and operating from X band to K U band (8–18 GHz) is proposed. The comparison of antenna performance for single cavity and double cavity is also reported. Using double cavity, the miniaturization of antenna is possible as compared to single cavity Vivaldi antenna. The antenna is first designed using conventional theoretical approaches. Later, it is simulated using a 3D EM simulation software, CST Microwave Studio TM . The optimal value for taper length is 6.86455 cm and cavity diameter is 1.582 cm. Finally, the design is physically fabricated using PCB technology for carrying out practical measurement. The antenna’s input impedance characteristic is measured in the form of S-parameter and VSWR using Vector network analyzer. VSWR less than 3:1 is achieved over the band from 8 to 18 GHz. The radiation pattern measurements are carried out in anechoic chamber. The proposed Vivaldi antenna is used for digital data transmission via satellites and for voice/audio transmissions.
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单腔和双腔RT Duroid上印刷Podal Vivaldi天线(8-18 GHz)的特性
在当今的现代通信系统中,覆盖宽带宽的小型化和轻量化子系统的需求很大,因为它们导致了非常紧凑和轻量化的系统的实现。提出了一种采用带线馈电的单腔和双腔印刷波状维瓦尔第天线,工作范围为X波段至K波段(8-18 GHz)。并对单腔和双腔的天线性能进行了比较。与单腔维瓦尔第天线相比,采用双腔天线可以实现天线的小型化。该天线首先采用传统的理论方法设计。随后,使用CST Microwave Studio TM三维电磁仿真软件进行仿真。最佳锥度长度为6.86455 cm,型腔直径为1.582 cm。最后,利用PCB技术对设计进行物理制作,进行实际测量。利用矢量网络分析仪以s参数和驻波比的形式测量了天线的输入阻抗特性。在8 ~ 18 GHz频段内实现了小于3:1的驻波比。辐射方向图测量是在消声室中进行的。所提出的Vivaldi天线用于通过卫星进行数字数据传输和语音/音频传输。
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