Rancang bangun alat Datalogger Voltmeter dengan GPS berbasis mikrokontroler

Sulaiman, Sani Maulana (2020) Rancang bangun alat Datalogger Voltmeter dengan GPS berbasis mikrokontroler. Diploma thesis, UIN Sunan Gunung Djati Bandung.

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Abstract

INDONESIA : Dalam dunia industri penggunaan pipa besi yang tertanam didalam tanah berfungsi menyalurkan minyak, gas, dan air panas. Serangan korosi dapat menyebabkan kerusakan struktur pipa dan menyebabkan kebocoran pipa. Oleh karena itu diperlukan evaluasi pipa secara berkala agar dapat mengantisipasi terjadinya kebocoran pipa. Penelitian ini dilakukan untuk mengevaluasi pipa besi yang tertanam didalam tanah dengan metode DCVG (Direct Current Voltage Gradient) dan CIPS (Current Interval Potential Survey). Pada alat Datalogger Voltmeter dengan GPS, kami membangun menggunakan mikrokontroler Arduino UNO dengan menggunakan LCD 20x4 sebagai fungsi antarmuka untuk menampilkan data, dan mengintrupsikan alat. Data yang diambil pada saat keadaan pipa dialiri arus listrik dan tidak dialiri arus listrik. Kemudian data diolah menjadi sebuah grafik. Data diambil mengunakan alat Datalogger TA dan Datalogger Adhim. Perbandingan pengukuran alat untuk membaca data antara alat Datalogger Adhim dengan Datalogger TA mendapatkan rasio 1 : 4. Dan perbandingan investasi alat Datalogger Adhim dengan Datalogger TA mendapatkan selisih total Rp 2.483.000,- lebih besar alat Datalogger Adhim.Hasil pengukuran potensial interval arus dengan gradien Voltase survey dari alat Datalogger Adhim dengan Datalogger TA mendapatkan hasil yang relatif sama. Metode CIPS mendapatkan data 8 meter (26,67%) pipa tidak terproteksi dengan baik. Dan Metode DCVG Mendapatkan 3 meter (10%) pipa diperkirakan terjadi anomali. Harus segera di lapisi ulang untuk menghindari terjadinya kebocoran pada pipa. ENGLISH : In the industrial world the use of iron pipes embedded in the ground works flows oil, gas, and hot air. Corrosion can cause damage pipe structure and cause pipe leakage. Therefore it is necessary to evaluate the pipe periodically in order to anticipate pipe leaks. This research was conducted to study iron pipes embedded in the ground using the DCVG (Direct Current Voltage Gradient) and CIPS (Current Interval Potential Survey) method. In the Datalogger Voltmeter with GPS, we built it using an Arduino UNO microcontroller by using LCD 20x4 as an interface function for displaying data and integrating the device. The data is taken when the pipe is electrified and not electrified. Then the data is processed into a graph. Data was retrieved using TA Datalogger and Datalogger Adhim tools. Measurement of the measurement tool for reading data between the Datalogger Adhim tool and Datalogger TA obtained a ratio of 1: 4. Comparison of the investment ratio of the Adhim Datalogger tool with Datalogger TA, the total difference is Rp. 2.483. 000, - bigger device Datalogger Adhim. Measurement results of potential intervals of currents with a gradient The voltage survey from the Datalogger Adhim tool with Datalogger TA gets relatively the same results. The CIPS method obtains data for 8 meters (26.67%) of unprotected pipes. And the DCVG method from 3 meters (10%) of pipe anomaly is expected to occur. Must be refilled immediately to avoid leakage in the pipe.

Item Type: Thesis (Diploma)
Uncontrolled Keywords: Korosi;CIPS;DCVG;GPS;Arduino UNO
Subjects: Data Processing, Computer Science
Electricity > Electrodinamics, Electric Current
Applied Physics > Electrical Engineering
Divisions: Fakultas Sains dan Teknologi > Program Studi Fisika
Depositing User: Sani Maulana Sulaiman
Date Deposited: 09 Oct 2020 08:48
Last Modified: 09 Oct 2020 08:48
URI: https://etheses.uinsgd.ac.id/id/eprint/33988

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