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Sistem Internet of Things dan Transmisi Data Menggunakan Aplikasi Telegram pada Sistem Keamanan Sepeda Motor Abdul Kholik; Ibrahim Ibrahim; Reni Rahmadewi
STRING (Satuan Tulisan Riset dan Inovasi Teknologi) Vol 7, No 1 (2022)
Publisher : Universitas Indraprasta PGRI Jakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30998/string.v7i1.13877

Abstract

A motorcycle is a two-wheeled vehicle that is driven by an engine. With a motorcycle, it will be faster and easier to reach our destination. This makes motorcycle users on the road more visible than other vehicles. As a result of a large number of motorcycle vehicles, the crime of motorcycle theft has increased. The main factor underlying the theft of motorcycles is economic factors. Therefore, an IoT-based motorcycle security system was created with the Telegram application. Where the security system uses the Quectel L80 GPS, and fingerprint and can also control the motorbike with the telegram application. The results of testing the command on the motorcycle security system using the telegram application obtained a stable delay time in each experiment. Where the average value of delay in testing the Engine ON and Engine OFF commands is 5.01. While the average value of delay in the fingerprint ADD test is 4.4 seconds and the average delay value in the fingerprint Delete test is 2.3 seconds. In the Quality of Service assessment from the test results using Wireshark, it can be seen that the average results on the network are good because they meet the standardization requirements with an index value of 3.3. Where the average delay value is 170,168865 ms, the average throughput value is 17573,68780-kilo bytes/17k, and the packet loss value is 0%..
Sistem Keamanan Sepeda Motor dengan Teknologi Biometrik Sidik Jari Menggunakan Sensor Fingerprint R305 Muhammad Nur Ikhsan; Ibrahim Ibrahim; Reni Rahmadewi
STRING (Satuan Tulisan Riset dan Inovasi Teknologi) Vol 7, No 2 (2022)
Publisher : Universitas Indraprasta PGRI Jakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30998/string.v7i2.13797

Abstract

Motorcycles are commonly and widely used vehicles in Indonesia. This vehicle is highly popular because of several advantages they have. Some advantages motorcycles have, among others, easeness of operation and a slim shape that makes them easier to park. But at the same time, it increases interest in committing crimes of motorcycle theft. Worse, the standard security system which is factory default is easier to break into. In this research, a tool is designed to resolve the problem by making double protection on a motorcycle using a fingerprint sensor. The fingerprint sensor acts as double protection in the motorcycle starting process. The fingerprint sensor is a component widely used these days because of its accuracy. The result of the fingerprint registration test shows the average value of fingerprint registration delay is 7.46 seconds and 8.18 seconds for the two objects. The results of testing the alarm system if the readings do not match 3 times will be locked for one minute. After being locked for one minute, the system will reset again from the beginning. From the results of the fingerprint test as a starter, it is found that 20 trials are able to read fingerprints well with the status of registered and unregistered fingerprints. Then it can be concluded that the accuracy of the fingerprint sensor is 100% accurate. The last test of the four different hand conditions shows almost the same delay value, with the dry hand fingerprint response faster than the others.
Rancang Bangun Alat Monitoring Arus dan Tegangan Berbasis Mikrokontroler pada Studi Kasus Prototype Gardu Distribusi PLN Rizal Pratama; Yuliarman Saragih; Ibrahim Ibrahim; Ulinnuha Latifa
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Publisher : RELE (Rekayasa Elektrikal dan Energi) : Jurnal Teknik Elektro

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30596/rele.v5i2.13084

Abstract

Abstrak Sistem monitoring arus dan tegangan berbasis mikrokontroler pada studi kasus prototype gardu distribusi PLN. Sistem ini dapat mendeteksi adanya gejala jaringan terputus dengan cara memonitoring arus pada jalur-jalur jaringan distribusi yang masuk kedalam sistem kerja. Sistem ini dilengkapi dengan fitur aplikasi android sebagai Human Main Interface (HMI). Apabila ada jaringan yang arusnya tiba-tiba menghilang maka sistem akan menampilkan message error tersebut pada HMI. Analisis pengujian performa sistem dilakukan dengan berbagai variabel dan parameter yaitu uji perbandingan pembacaan avometer dan sistem, uji keberhasilan pengiriman data sensor, uji keberhasilan notifikasi error dan uji pengaruh provider terhadap kerja sistem. Pada Uji pengukuran arus antara sistem dengan avometer didapat selisih sebesar 0,03A. Pada uji keberhasilan pengiriman data sistem NodeMCU terhadap aplikasi memiliki persentase keberhasilan 100%, begitu juga dengan hasil uji notifikasi error. Pada uji pengaruh provider terhadap kerja sistem memiliki waktu rata-rata untuk Indosat sebesar 3,828s dan Telkomsel sebesar 3,16s.Kata kunci : ACS712, Arduino, Jaringan Distribusi, Monitoring Arus, NodeMCUAbstract A microcontroller-based current and voltage monitoring system in a case study of a prototype PLN distribution substation. This system can detect symptoms of a disconnected network by monitoring the flow of distribution network lines that enter the work system. This system is equipped with an android application feature as a human main interface (HMI). If there is a network whose current suddenly disappears, the system will display the error message on the HMI. Analysis of system performance testing is carried out with various variables and parameters, namely a comparison test of Avometer readings and the system, testing the success of sending sensor data, testing the success of error notifications and testing the influence of the provider on the system's work. In the current measurement test between the system and the avometer, a difference of 0.03A is obtained. In the successful test of sending data the NodeMCU system to the application has a 100% success percentage, as well as the results of the error notification test. In the test of the influence of the provider on the system work, the average time for Indosat is 3.828s and Telkomsel is 3.16s. Keywords : ACS712, Arduino, Current Monitoring, Distribution Network, NodeMCU
Sistem Keamanan Menggunakan Raspberry PI Disertai Motion Detection Berbasis Internet Of Things Donni Angger Basuki; Yuliarman Saragih; Ibrahim Ibrahim
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Publisher : RELE (Rekayasa Elektrikal dan Energi) : Jurnal Teknik Elektro

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30596/rele.v5i2.13081

Abstract

Abstrak Sistem keamanan menggunakan kamera dengan prinsip pendeteksian gerakan berbasis Internet of Things dan mengirimkan notifikasi serta dapat dikendalikan menggunakan smartphone. Sistem akan mengirimkan notifikasi dan capture gambar gerakan ke aplikasi Pushbullet pada android. Sistem alert juga dapat dikendalikan jarak jauh menggunakan aplikasi Detector pada android. Analisis pengujian performa sistem dilakukan dengan berbagai variabel dan parameter yaitu uji pengaruh nilai tresshold, uji keberhasilan pengiriman notifikasi, uji keberhasilan kendali sistem Raspberry pi terhadap kendali aplikasi Detector, uji kecepatan pengiriman notifikasi, dan uji kecepatan respon Raspberry pi terhadap kendali aplikasi Detector. Pada uji nilai tresshold telah didapat dimana nilai yang memiliki ke akuratan pembacaan gerakan paling baik yaitu pada range 2000-2500 dengan persentase read = 100%, loss = 0% dan error = 0%. Pada uji keberhasilan pengiriman notifikasi dan kendali sistem Raspberry pi terhadap kendali aplikasi detector menggunakan provider telkomsel dan indosat memiliki persentase keberhasilan 100%. Pada uji kecepatan pengiriman notifikasi didapat rata-rata waktu untuk penggunaan provider telkomsel sebesar 0,34 sedangkan indosat sebesar 1,149s. Pada uji kecepatan respon Raspberry Pi terhadap kendali aplikasi Detector didapatkan data rata-rata waktu untuk penggunaan provider telkomsel adalah 1,154s sedangkan indosat sebesar 1,827s.Kata kunci : OpenCV, Pengolahan Citra Digital, Motion DetectionAbstract The security system uses a camera with the principle of internet of things-based motion detection and sends notifications and can be controlled using a smartphone. The system will send notifications and capture motion images to the Pushbullet app on android. The alert system can also be controlled remotely using the Detector app on android. System performance test analysis is carried out with various variables and parameters, namely tresshold value influence test, notification delivery success test, raspberry pi system control success test to Detector application control, notification delivery speed test, and raspberry pi response speed test to Detector application control. In the tresshold value test has been obtained where the value that has the best movement reading accuracy is in the range of 2000-2500 with read percentage = 100%, loss = 0% and error = 0%. In the successful test of sending notifications and control of the raspberry pi system to control the detector application using telkomsel and indosat providers have a 100% success percentage. In the test, notification delivery speed was obtained the average time for telkomsel provider usage of 0.34 while indosat amounted to 1,149s. In the test of the response speed of raspberry pi to the control of the Detector application obtained data the average time for the use of telkomsel provider is 1,154s while indosat is 1,827s. Keywords : OpenCV, Digital Image Processing, Motion Detection
PERBAIKAN DAN PEMELIHARAAN JARINGAN FIBER TO THE HOME (FTTH) Ade Febriansyah; Ibrahim Lammada
Power Elektronik : Jurnal Orang Elektro Vol 11, No 1 (2022): POWER ELEKTRONIK
Publisher : Politeknik Harapan Bersama Tegal

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30591/polektro.v11i1.2796

Abstract

Perkembangan teknologi saat ini sangatlah pesat, terutama dibidang telekomunikasi dan informasi. Peningkatan jaringan terus dilakukan terutama pada kapasitas bandwidth agar dapat meningkatkan layanan multimedia. Pilihan terbaik untuk mendukung jaringan komunikasi yang andal adalah fiber optic. Salah satu teknologi fiber optic adalah Fiber To The Home (FTTH). Makalah ini mengusulkan untuk menjelaskan bagaimana cara mengatasi permasalahan dan pemeliharaan pada jaringan Fiber To The Home (FTTH) dari Optical Line Termination (OLT) sampai Optical Network Termination (ONT). Pada makalah ini juga akan menjelaskan bagaimana cara menganalisa nilai daya dan loss daya pada setiap jaringan Fiber To The Home (FTTH).
ANALISIS MONITORING DASHBOARD GANGGUAN LOGIC PADA INDIHOME Dedeh Widia Ningsih; Ibrahim Lammada; Arnisa Stefanie
Power Elektronik : Jurnal Orang Elektro Vol 10, No 2 (2021): POWER ELEKTRONIK
Publisher : Politeknik Harapan Bersama Tegal

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30591/polektro.v10i2.2593

Abstract

Abstract - Analysis of the logic disturbance dashboard monitoring on the WITEL Karawang indihome. Monitoring at indihome is a necessity to support the performance of Telkom Indonesia employees, monitoring is very necessary so that it can monitor using the Ibooster and Embassy applications which are monitored directly by several operators so that it will make monitoring easier and more practical, then the results of this monitoring will be reported directly to indihome technicians. . Through this kind of monitoring, technicians can work more easily to find damage caused by physical or logical problems. After the technician gets a direct report from the operator and if the damage is caused by physical disturbance, the technician will immediately repair the location of the damage, this monitoring dashboard will continuously provide reports from the conditions in place.In this way, the technician can solve problems that arise without waiting for reports from users. and wireless based Internet technician at WITEL Karawang. Easy to maintain stability based on wireless Internet without directly checking equipment.