Effect of Parasitic Patch for the Radiation Characteristics Microstrip Antenna Planar Array with Distribution Edge

Imelda Uli, Vistalina Simanjuntak, A. Kurniawan
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Abstract

— Power Domain Non-Orthogonal Multiple Access (PD-NOMA) is one of the multiple access schemes that increase a channel capacity by focusing on the downlink side. This study stems from the facilitation of various narrow and sharp beams with a high gain and directivity, so the users can maximize each of the sharp beams and have higher power efficiency. The higher the power efficiency is, the higher the throughput will be since it is directly proportional to the increased channel capacity. This study employs an edge weight to design the arrangement of a planar microstrip antenna with the uniformly-spaced N elements (λ/2). The antenna design starts from 1x3 to 1x6, and it will produce a multi-beam pattern with a 5G 2.6-GHz operating frequency. Each patch is separated by λ /2 employing a parasitic and a non-parasitic patch, with the value of S 11 amounting to below -20 dB. There is a novelty in this study in that it is found out that the characteristic of the number of the main lobes for the antenna’s even number is N+1, and the characteristic of the number of the main lobes for the antenna’s odd number is N. With the multi-beam characteristics that are narrow and sharp, the gain and directivity values are getting higher. Furthermore, the parasitic patches or no parasitic patches only affect the side lobe and do not significantly affect the main lobe. 
寄生贴片对带分布边微带天线平面阵列辐射特性的影响
功率域非正交多址(PD-NOMA)是一种多址方案,通过关注下行链路来增加信道容量。本研究源于对各种具有高增益和指向性的窄锐波束的简化,从而使用户可以最大限度地利用每个锐波束,并具有更高的功率效率。功率效率越高,吞吐量就越高,因为它与增加的信道容量成正比。本研究采用边权法设计了均匀间隔N元(λ/2)的平面微带天线的布置。天线设计从1x3到1x6开始,将产生5G 2.6 ghz工作频率的多波束方向图。每个贴片由λ /2隔开,采用寄生和非寄生贴片,s11值小于-20 dB。本研究的新颖之处在于,发现天线的偶数主瓣数特征为N+1,天线的奇数主瓣数特征为N,多波束特征窄而锐利,增益和指向性值越来越高。此外,寄生斑块或无寄生斑块仅影响副瓣,对主瓣影响不显著。
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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