ANTENA MIKROSTRIP FREKUENSI MILLIMETER WAVE UNTUK APLIKASI 5G

Ningsih, Anggun Susila (2020) ANTENA MIKROSTRIP FREKUENSI MILLIMETER WAVE UNTUK APLIKASI 5G. S2 thesis, Universitas Mercu Buana Jakarta-Menteng.

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Abstract

Pengembangan jaringan seluler generasi kelima (5G) adalah langkah penting untuk merealisasikan tingginya permintaan pasar terhadap komunikasi nirkabel berkecepatan tinggi. Negara – negara di dunia sudah berlomba mencari solusi inovatif yang memungkinkannya 5G diterapkan, salah satu cara yang paling inovatif dan efektif untuk mewujudkan 5G adalah dengan memanfaatkan frekuensi yang sangat tinggi seperti gelombang milimeter (millimeter Wave). Dalam penelitian ini disajikan dua rancangan antena mikrostrip untuk meningkatkan bandwidth. Total kenaikan bandwidth adalah 8,74 %. Desain antena menggunakan pencatu saluran mikrostrip dengan substrat Rogers RT 5880, konstanta dielektrik r = 2,2, tan δ = 0,0009 dan ketebalan 0,79 mm. Ꜫr = 2,2, tan δ = 0,0009 dan ketebalan 0,79 mm. Antena pertama berdimensi 5,85 mm x 7,35 mm memiliki frekuensi center 39 GHz, 50 GHz dan 66 Ghz dengan total bandwidth 13 GHz dan gain 7,8 dB. Antena kedua berdimensi 7,35 mm x 15,85 mm diberikan penambahan stub dan Defected Ground Structure (DGS). Dari hasil simulasi mengggunakan HFSS didapat frekuensi center 36,1 GHz, 41,1 GHz, 45, 3 GHz, 51 GHz dan 57, 5 GHz dengan total bandwidth 9,3 GHz dan gain 9,34 dB (tanpa DGS), dan dengan DGS bandwidthnya meningkat menjadi 13,1 GHz dengan frekuensi center 35,6 GHz, 38,4 GHz, 44,6 GHz, 50,4 GHz, 56,7 GHz, dan 63,8 GHz. Sedangkan hasil pengukuran antena tanpa DGS frekuensi centernya 38,0 GHz, 42,4 GHz, 45 GHz, 48,5 GHz, 51,8 GHz, 62,6 GHz, 65,1 GHz dengan bandwidth 22,7 GHz dan dengan DGS bandwidthnya menjadi 21,6 GHz dengan frekuensi center 31,3 GHz, 35 GHz, 36,8 GHz, 46,4 GHz, 48,1 GHz, 52,3 GHz, 61,8 GHz, dan 63,1 GHz. Kata kunci: Milimeter Wave, Antenna Microstrip, 5G Application The development of the fifth generation cellular network (5G) is an important step to realize the high market demand for high-speed wireless communication. Countries in the world have been racing to find innovative solutions that allow 5G to be applied, one of the most innovative and effective ways to realize 5G is to utilize very high frequencies such as millimeter waves. In this research, two microstrip antenna designs are presented to increase bandwidth. The total bandwidth increase is 8.74%. The antenna design uses a microstrip line feeder with Rogers RT 5880 substrate, dielectric constant r = 2.2, Ꜫr = 2,2, tan δ = 0,0009 dan ketebalan 0,79 mm. tan δ = 0.0009 and thickness 0.79 mm. The first antenna with a dimension of 5.85 mm x 7.35 mm has a center frequency of 39 GHz, 50 GHz and 66 Ghz with a total bandwidth of 13 GHz and a gain of 7.8 dB. The second antenna with dimension 7.35 mm x 15.85 mm is given the addition of stub and Defected Ground Structure (DGS). From the simulation results using HFSS, the center frequency is 36.1 GHz, 41.1 GHz, 45.3 GHz, 51 GHz and 57.5 GHz with a total bandwidth of 9.3 GHz and gain 9.34 dB (without DGS), and with DGS bandwidth increased to 13.1 GHz with center frequencies of 35.6 GHz, 38.4 GHz, 44.6 GHz, 50.4 GHz, 56.7 GHz, and 63.8 GHz. While the antenna measurement results without DGS center frequency are 38.0 GHz, 42.4 GHz, 45 GHz, 48.5 GHz, 51.8 GHz, 62.6 GHz, 65.1 GHz with bandwidth of 22.7 GHz and with DGS bandwidth to 21.6 GHz with center frequencies of 31.3 GHz, 35 GHz, 36.8 GHz, 46.4 GHz, 48.1 GHz, 52.3 GHz, 61.8 GHz and 63.1 GHz. Keywords: Millimeter Wave, Antenna Microstrip, 5G Application

Item Type: Thesis (S2)
Call Number CD: CDT-554-20-006
NIM/NIDN Creators: 55415110023
Uncontrolled Keywords: Milimeter Wave, Antenna Microstrip, 5G Application,
Subjects: 600 Technology/Teknologi > 620 Engineering and Applied Operations/Ilmu Teknik dan operasi Terapan > 621 Applied Physics/Fisika terapan
Divisions: Pascasarjana > Magister Teknik Elektro
Depositing User: MYTHA ALVIANA SARI
Date Deposited: 21 Feb 2022 03:16
Last Modified: 18 Jun 2022 06:02
URI: http://repository.mercubuana.ac.id/id/eprint/56406

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