Rancang Bangun Sistem Transmisi Data Pada Buoyweather Tipe II dengan Radio Frekuensi dan TCP/IP

Rizqi, Muhammad Fathur (2018) Rancang Bangun Sistem Transmisi Data Pada Buoyweather Tipe II dengan Radio Frekuensi dan TCP/IP. Undergraduate thesis, Institut Teknologi Sepuluh Nopember.

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Abstract

Buoyweather merupakan sebuah alat yang mengapung di laut dan biasa digunakan untuk memonitoring cuaca maritim. Pada sistem monitoring pada buoyweather transmisi data merukapakan hal yang penting dikarenakan berfungsi untuk melakukan pengiriman data hasil pembacaan sensor dari menuju website, sehingga perlu dipastikan sistem transmisi data sesuai dan memiliki performa yang bagus, oleh karena itu sistem transmisi data yang digunakan perlu dilakukan analisa lebih lanjut. Uji performa transmisi data pada buoyweather menuju ground station yang menggunakan 3DR Telemetry 433 MHz dengan berbagai variasi bentuk antena dilakukan identifikasi jarak maksimal transmisi data dan pada ground station menuju web server mengguakan TCP/IP dengan menilai aspek Quality of Service (QOS) berupa nilai delay, jitter, packet loss, dan throughput yang dibandingkan dengan standar ITU-T G.114. Hasil pengujian transmsi data pada radio frekuensi menunjukkan jarak maksimal 1000 meter dengan jarak efeketif 800 meter pada transmisi ke ground station dengan reflektor 90o. Hasil analisa TCP/IP mendapati data rata loss 1.83%, rata-rata delay sebesar 157.33 ms dan jitter sebesar 31.43 ms yang secara keseluruhan tergolong baik menurut standar ITU-T G.114.
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Buoyweather is a device that floats in the sea and is used to monitor maritime weather. In the monitoring system on buoyweather data transmission is important because it serves to transmit data from the sensor readings to the website, so it is necessary to ensure the data transmission system is appropriate and has a good performance, therefore the data transmission system used needs to be further analysis . Data transmission performance test on buoyweather to ground station using 3DR Telemetry 433 MHz with various variation of antenna shape is done to identify the maximum distance of data transmission and at ground station to web server using TCP / IP by assessing Quality of Service (QOS) aspect in the form of delay value, jitter, packet loss, and throughput compared to ITU-T G.114 standards. Results of data transmision test on the radio frequency shows a maximum distance of 1000 meters with an effective distance of 800 meters on the transmission to ground station with reflector 90o. The result of TCP / IP analysis found the data loss 1.83%, the average delay of 157.33 ms and the jitter of 31.43 ms which as a whole is good by ITU-T G.114

Item Type: Thesis (Undergraduate)
Additional Information: RSF 004.6 Riz r-1 3100018077098
Uncontrolled Keywords: transmisi data, buoyweather, radio frekuensi, TCP/IP
Subjects: Q Science > QC Physics > QC271 Temperature measurements
Divisions: Faculty of Industrial Technology > Physics Engineering > 30201-(S1) Undergraduate Thesis
Depositing User: Rizqi Muhammad Fathur
Date Deposited: 28 Feb 2019 08:24
Last Modified: 07 Dec 2020 06:04
URI: http://repository.its.ac.id/id/eprint/57636

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