PERBAIKAN GAIN TRANSMITARRAY PADA FREKUENSI 9,8 GHZ

DEWI, MUSTIKA FITRIANA (2020) PERBAIKAN GAIN TRANSMITARRAY PADA FREKUENSI 9,8 GHZ. S1 thesis, Universitas Mercu Buana Jakarta.

[img]
Preview
Text (HAL COVER)
01 COVER.pdf

Download (327kB) | Preview
[img] Text (BAB I)
02 BAB 1.pdf
Restricted to Registered users only

Download (35kB)
[img] Text (BAB II)
03 BAB 2.pdf
Restricted to Registered users only

Download (273kB)
[img] Text (BAB III)
04 BAB 3.pdf
Restricted to Registered users only

Download (160kB)
[img] Text (BAB IV)
05 BAB 4.pdf
Restricted to Registered users only

Download (611kB)
[img] Text (BAB V)
06 BAB 5.pdf
Restricted to Registered users only

Download (49kB)
[img] Text (DAFTAR PUSTAKA)
07 DAFTAR PUSTAKA.pdf
Restricted to Registered users only

Download (98kB)
[img] Text (LAMPIRAN)
08 LAMPIRAN.pdf
Restricted to Registered users only

Download (168kB)

Abstract

In recent years, wireless communication technology developed rapidly compared than before. This is also in line with various innovations that comes up with community needs in accessing fast and efficient communication. This drives the development of devices that support wireless technology, one of them is an antenna. Antenna that can support the development of this technology is the Transmitarray Antenna. This antenna is a high gain antenna and it is suitable for applicating in various applications such as Metropolitan Area Network Communications, Satellite Communications, automotive radars, civil and military radars as well as in remote senseing. In this final project, a transmitarray antenna with an open rectangular loop patch 7x7 element is designed and realized which works at a frequency of 9.8 GHz. These elements are obtained from the calculation of phase conversion, the lowest value of phase 0 is in the position of the center from the whole element, this aims to slow down the phase rate of the transmitted signal wave. The antenna was simulated using Ansoft High Frequency Structure Simulator (HFSS) software simulator Version 15.0. The fabrication process uses the Rogers Duroid 4003C substrate. This result of transmitarray antenna gain is 18.3 dB. Keywords : transmitarray antenna, high gain, transmission factor. Pada beberapa tahun terakhir, teknologi komunikasi wireless mengalami perkembangan yang sangat pesat dibandingkan dengan sebelum-sebelumnya. Hal ini juga diimbangi berbagai inovasi yang terus bermunculan untuk memenuhi kebutuhan masyarakat dalam mengakses komunikasi yang cepat serta efisien. Hal tersebut mendorong perkembangan perangkat pendukung teknologi nirkabel, salah satunya antena. Antena yang dikembangkan untuk menunjang pengembangan teknologi ini adalah Antena Transmitarray. Antena ini memiliki gain tinggi dan hal ini memiliki kecocokan untuk diterapkan pada berbagai aplikasi seperti Metropolitan Area Network Communications, Komunikasi Satelit, automotive radars, radar sipil dan militer juga dalam remote senseing. Pada proyek akhir ini dirancang dan direalisasikan antena transmitarray dengan patch open rectangular loop 7 × 7 elemen yang bekerja pada frekuensi 9,8 GHz. Elemen - elemen ini didapatkan dari hasil perhitungan konversi phasa, phasa terendah bernilai 0 berada pada posisi center elemen keseluruhan, hal ini dimaksudkan untuk memperlambat laju phasa dari gelombang sinyal yang dikirimkan. Proses simulasi dilakukan dilakukan menggunakan simulator software Ansoft High Frequency Structure Simulator (HFSS) Versi 15.0. Proses fabrikasi menggunakan substrat Rogers Duroid 4003C. Antena transmitarray ini menghasilkan gain 18,3 dB. Kata Kunci : antena transmitarray, high gain, faktor transmisi.

Item Type: Thesis (S1)
Call Number CD: FT/ELK. 20 060
Call Number: ST/14/21/047
NIM/NIDN Creators: 41418120010
Uncontrolled Keywords: antena transmitarray, high gain, faktor transmisi.
Subjects: 000 Computer Science, Information and General Works/Ilmu Komputer, Informasi, dan Karya Umum > 000. Computer Science, Information and General Works/Ilmu Komputer, Informasi, dan Karya Umum > 004 Data Processing, Computer Science/Pemrosesan Data, Ilmu Komputer, Teknik Informatika > 004.6 Interfacing and Communications/Tampilan Antar Muka (Interface) dan Jaringan Komunikasi Komputer > 004.65 Computer Communications Networks/Jaringan Komunikasi Komputer
000 Computer Science, Information and General Works/Ilmu Komputer, Informasi, dan Karya Umum > 000. Computer Science, Information and General Works/Ilmu Komputer, Informasi, dan Karya Umum > 005 Computer Programmming, Programs, Data/Pemprograman Komputer, Program, Data > 005.1 Programming/Pemrograman > 005.12 Software System Analysis and Design/Sistem Analisa dan Desain Perangkat Lunak
000 Computer Science, Information and General Works/Ilmu Komputer, Informasi, dan Karya Umum > 000. Computer Science, Information and General Works/Ilmu Komputer, Informasi, dan Karya Umum > 005 Computer Programmming, Programs, Data/Pemprograman Komputer, Program, Data > 005.7 Data in Computer Systems/Data dalam Sistem-sistem Komputer > 005.75 Specific Types of Data Files and Databases/Jenis Spesifik File Data dan Pangakalan Data > 005.754 Network Databases/Pangakalan Data Jaringan
600 Technology/Teknologi > 620 Engineering and Applied Operations/Ilmu Teknik dan operasi Terapan > 621 Applied Physics/Fisika terapan > 621.3 Electrical Engineering, Lighting, Superconductivity, Magnetic Engineering, Applied Optics, Paraphotic Technology, Electronics Communications Engineering, Computers/Teknik Elektro, Pencahayaan, Superkonduktivitas, Teknik Magnetik, Optik Terapan, Tekn
Depositing User: Putra Arsy Anugrah
Date Deposited: 18 Nov 2022 03:35
Last Modified: 05 Apr 2024 04:19
URI: http://repository.mercubuana.ac.id/id/eprint/49932

Actions (login required)

View Item View Item