Perancangan Dan Pembuatan Sistem Radio Direction Finder Untuk Frekuensi 2 Meter Band

Abdurrabbi, Haidhir (2019) Perancangan Dan Pembuatan Sistem Radio Direction Finder Untuk Frekuensi 2 Meter Band. Skripsi thesis, Institut Teknologi Nasional Malang.

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Abstract

Perancangan Dan Pembuatan Sistem Radio Direction Finder Untuk Frekuensi 2 Meter Band Haidhir Abdurrabbi Kartiko Ardi Widodo F. Yudi Limpraptono haidhirabdurrabbi@gmail.com ABSTRAK abstrak - Radio Direction Finder (RDF) adalah alat yang berfungsi mencari dan menentukan arah sinyal pemancar. Dalam aplikasi telekomunikasi di masyarakat sangat popular menggunakan band frekuensi 2 meter untuk berbagai keperluan, sehingga dilakukan perancangan dan pembuatan radio direction finder dengan band frekuensi 2 meter band berkisar dari 144 – 173 MHz. Dalam pembuatan alat radio pendeteksi arah sinyal pemancar ini dibuat dengan cara sederhana yaitu dengan memodifikasi radio pemancar dan penerima portabel Handy Transceiver yang dikontrol secara otomatis oleh Arduino UNO, sebagai antena penerima menggunakan 4 buah antena yagi dimana masingmasing menggunakan 3 elemen. Keempat antena yagi memiliki parameter yang hampir sama baik dari vswr, gain, dan pola radiasi yang telah diukur melalui VSWR (Voltage Standing Wave Ratio), VNA (Vector Network Analyzer), dan Spectrum Analyzer, keempat antena yagi tersebut diletakkan masing-masing tegak lurus pada arah 90° untuk dijadikan refrensi pencarian sinyal terkuat. Radio pendeteksi arah sinyal pemancar digunakan secara manual, yaitu dengan cara menseting frekuensi sesuai frekuensi pemancar yang akan dicari, kemudian antena akan menerima gelombang electromagnetic dari sebuah pemancar melalui masing-masing antena dimana arah sinyal pemancar dapat disimpulkan berada pada posisi diantara kedua antena yang memiliki penerimaan sinyal tertinggi dan hal ini dapat dilihat pada layar LCD ( Liquid Crystal Display ). Kata Kunci— radio direction finder, arduino uno, perancangan antena yagi dan pembuatan radio direction finder. Planning and Making Radio Direction Finder System for Frequency 2 Meter Band Haidhir Abdurrabbi Kartiko Ardi Widodo F. Yudi Limpraptono haidhirabdurrabbi@gmail.com ABSTRACT Abstract – Radio Direction Finder (RDF) is a tool that serves to locate and determine the direction of the transmitter signal. People usually use 2 meters frequency band for various purposes, so that the design and manufacture of direction finder radio with 2 meter band ranges frequency from 144 – 173 MHz. In the radio device signal was simply installed by modifying the radio transmitter and portable receiver of the Handy Transceiver (HT) that is controlled automatically by Arduino UNO. It is a receiver antenna that uses 4 Yagi antennas that each uses 3 element. The for Yagi antennas are nearly as good parameters as VSWR, gain, and radiation patterns that have been measured through VSWR (Voltage Standing Wave Ratio), VNA (Vector Network Analyzer), and Spectrum Analyzer. These four Yagi antennas are installed in 90° direction for the strongest signal search reference. The radio detector signal direction of the transmitter is used manually, by setting the frequency of the transmitter frequency to be searched, the antenna will receive an electromagnetic wave from a transmitter through each antenna, that the direction of the transmitter signal can be concluded in the position between the two antennas that have the highest signal reception. The result wilil be show on the LCD (Lyquid Crystal Display) screen. Keywords— radio direction finder, arduino UNO, yagi antennas design and making radio direction finder system

Item Type: Thesis (Skripsi)
Additional Information: Haidhir Abdurrabbi (1512706)
Uncontrolled Keywords: radio direction finder, arduino UNO, yagi antennas design and making radio direction finder system
Subjects: Engineering > Electrical Engineering
Divisions: Fakultas Teknologi Industri > Teknik Elektro S1 > Teknik Elektro S1(Skripsi)
Depositing User: Ms Nunuk Yuli
Date Deposited: 08 Oct 2019 06:44
Last Modified: 08 Oct 2019 06:44
URI: http://eprints.itn.ac.id/id/eprint/4363

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