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Microstrip Array Antenna Design with Directivity Enhancement Using Reflector Surface

机译:微带阵列天线设计具有反射表面的方向性增强

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The goal of this paper is to enhance the Directivity in Microstrip Antenna Array by adding Reflector Surface plane in ground plane. The Microstrip Antenna (MSA) is an antenna that is widely used in microwave waves which has many advantages, however, it represents a low built-in directivity. The suggested antenna array is made by using metamaterial reflecting surface to get the maximum directivity and high gain. In this research, a MSA is designed at 2.1 GHz and maximum directivity and gain are studied. A coaxial probe feeding technique is adopted to feed the antenna array. CST (Computer Simulation Technology) simulation of the suggested single and array antenna shows enhanced the gain, directivity and return loss at the center frequency of 2.1 GHz. At single element antenna, the gain is enhanced from 3.3225 to 6.462db and the directivity from 3.310 to 6.462dbi. Improvement in the performance of the design is achieved by using two elements antenna approach. Further improvement achieved in the work of the design by using four elements antenna approach.
机译:本文的目标是通过在地平面中添加反射器表面平面来提高微带天线阵列的方向性。微带天线(MSA)是广泛应用于微波波的天线,但是它具有许多优点,然而,它代表了较低的内置方向性。建议的天线阵列通过使用超材料反射表面来获得最大的方向性和高增益。在本研究中,MSA设计为2.1 GHz,并研究了最大方向性和增益。采用同轴探针进料技术来馈送天线阵列。 CST(计算机仿真技术)建议单和阵列天线的仿真显示增强了2.1 GHz中心频率的增益,方向性和回波损耗。在单元素天线处,增益从3.3225增加到6.462dB,从3.310到6.462dbi的方向性。通过使用两个元素天线方法实现设计性能的改进。通过使用四个元素天线方法,在设计的工作中实现了进一步的改进。

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