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PENGAMAN GANDA SEPEDA MOTOR DENGAN SISTEM SMART SECURITY darwis Parawiro; andi asni b; Aswadul Fitri Saiful Rahman
Jurnal Teknik Elektro Uniba (JTE UNIBA) Vol. 3 No. 2 (2019): JTE UNIBA (Jurnal Teknik Elektro Uniba)
Publisher : Lembaga Penelitian Universitas Balikpapan

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (571.792 KB)

Abstract

The dual safety system is designed to protect scooter from theft when a motorcycle is placed in place nothing supervision from its owner. There are two types of safety device for scooter, they are electric and nonelectric. One of the most widely used examples of this two safety device is using an electric alarm and a nonelectric using a steering lock. However, in the two examples of safety devices that cannot be relied upon if the Scooter is in a place that is less supervision, it is certain that the owner cannot monitor it. So the purpose of the safety device Arduino-based dual safety device is designed to effectively secure Scooter because it is equipped with GPS that is used to track the location of scooter coordinates without distance being limited.The device is equipped with a GSM module as communication between the owner and the safety device so that the owner can monitor his Scooter remotely, using SMS. If the SMS is sent to the mobile number installed on the GSM module with the appropriate SMS command, the tool will work according to the SMS command.
EVALUASI CITRA KERUSAKAN PADA PANEL DISTRIBUSI LISTRIK TEGANGAN RENDAH BERDASARKAN TERMOGRAFI INFRAMERAH slamet wahyudi; andi asni b; aswadul fitri Saiful Rahman
Jurnal Teknik Elektro Uniba (JTE UNIBA) Vol. 3 No. 2 (2019): JTE UNIBA (Jurnal Teknik Elektro Uniba)
Publisher : Lembaga Penelitian Universitas Balikpapan

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (877.765 KB)

Abstract

The change of electrical energy into heat energy in faults of low voltage electrical distribution panels causes an increase in temperature, this is what makes thermography using an infrared camera become one effective method for detecting it, but it is often found misinterpretation when the thermal image generated from the infrared camera is processed more further and lead to wrong in decision making regarding actions to be taken next.Through this research, the method of operating and taking thermal images using infrared cameras is introduced in accordance with the correct standard operating procedures, so that it is expected when applying standard operating procedures in the field and good validation techniques will minimize the misinterpretation that has an impact on decisions and corrective actions.
PERANCANGAN SISTEM KONTROLER ALAT ELEKTRONIK RUMAH TANGGA BERBASIS MIKROKONTROLER ARDUINO UNO DENGAN PERINTAH SUARA saftiadi .; A Asni B; aswadul fitri saiful rahman
Jurnal Teknik Elektro Uniba (JTE UNIBA) Vol. 3 No. 2 (2019): JTE UNIBA (Jurnal Teknik Elektro Uniba)
Publisher : Lembaga Penelitian Universitas Balikpapan

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (749.701 KB)

Abstract

The operation of electronic equipment in general is still manual or semi-automatic that uses a remote or switch around thetool area. With the development of increasingly sophisticated technology and information science, electronic equipment that is athome we can easily control remotely if we want to do it with a specific purpose and purpose. In daily life, we can apply the conceptof a smart home, which can control electronic equipment in our homes using Voice activation. So it can turn on or turn off electronicdevices inside our homes by using a web server or an android smart phone, with the condition that it is connected with Bluetooth foraccess control. The basis of this system can also be called Voice Activation. In making this tool the author uses the Arduino Unomicrocontroller, using Bluetooth HC-06 / HC-05 module, 4x 330 Ohm resistor, 4x Color LED, jumper cable and Android smartphone.This tool can control the electronic equipment that is in our homes by using an Android smart phone that has the application installed, thecontrol connection uses Bluetooth, as access control
Identifikasi Wajah Dengan Segmentasi Warna Kulit Menggunakan Metode Viola Jones andi asni b; Tamara Octa Dana
Jurnal Teknik Elektro Uniba (JTE UNIBA) Vol. 4 No. 1 (2019): Vol 4 No 1 (2019): JTE UNIBA (Jurnal Teknik Elektro Uniba)
Publisher : Lembaga Penelitian Universitas Balikpapan

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (1045.366 KB) | DOI: 10.36277/jteuniba.v4i1.47

Abstract

Abstract - Face detection (face detection) is one of the initial steps that is very important before the face recognition process (face recognition). Face detection is the detection of objects in the form of faces in which there are special features that represent the shape of faces in general. One method of face detection is the Viola Jones method. Viola Jones method is used to detect faces and skin color segmentation, test data processing using Matlab and capture on a Smartphone. The test is carried out at normal light intensity with a predetermined distance and face position. The results of this study indicate the level of accuracy of detection of face image variations in the position of face images facing forward (frontal), sideways left and right 45̊. But it has a weakness of this face detection system that is unable to determine faces in images that have faces that are not upright (tilted) or not frontal (facing sideways) at a 90̊ angle. Face position that is upright / not upright will determine the success of this face detection. The level of identification of the Viola Jones simulation was 100% with 4 images consisting of 3 boys and 1 girl.
Perancangan Prototype Mesin Pembersih kabel transmisi listrik berbasis internet Shintya Adhe Putri; a asni b; aswadul fitri saiful rahman
Jurnal Teknik Elektro Uniba (JTE UNIBA) Vol. 4 No. 1 (2019): Vol 4 No 1 (2019): JTE UNIBA (Jurnal Teknik Elektro Uniba)
Publisher : Lembaga Penelitian Universitas Balikpapan

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (688.621 KB) | DOI: 10.36277/jteuniba.v4i1.48

Abstract

This research on the tittle “ DESIGNING PROTOTYPE CLEANING MACHINE IN INTERNET- BASED ELECTRIC TRANSMISSION CABLE “ this theses to eassly cleaning lines transmission cable from the dirt of lines cable transmission used by Arduino UNO, as a first component, L298N as a Driver Motor Electric fuction to movers motor dynamo. This tools have a cleaning can cleaning at line cable transmission with the mover cutting motor dynamo, that tools cutiing direct clockwise and the opporside.Based on the tool teste of cutting materials made from arcylyric its not efisiens on cutting all the hard dirt concern at transmission cable. While of the materials made from grinda is more efisien in cutting and concern hard dirt at transmission cable .
PERANCANGAN CONTROL SYSTEM PENGISIAN FLUIDA OTOMATIS MENGGUNAKAN SENSOR ULTRASONIC SEBAGAI LEVEL AIR & SENSOR FLOW INDIKASI ALIRAN AIR BERBASIS IOT surya Atmajaya; aswadul fitri saiful rahman; a asni b
Jurnal Teknik Elektro Uniba (JTE UNIBA) Vol. 4 No. 1 (2019): Vol 4 No 1 (2019): JTE UNIBA (Jurnal Teknik Elektro Uniba)
Publisher : Lembaga Penelitian Universitas Balikpapan

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (695.563 KB) | DOI: 10.36277/jteuniba.v4i1.49

Abstract

The technology applied in some small and medium businesses still applies conventional processes so that the effectiveness of production is less than optimal, on the other hand the technology develops rapidly, especially industrial automation, for example conventional activities where an officer has to monitor and record every water level held in reservoir / tank, this activity can be replaced by an electronic system, which automatically carries out monitoring by reading parameters on the sensor. By creating an automatic reservoir fluid filling system and ESP 8266 based fluid level monitoring integrated with internet network and LCD Touchscreen to facilitate the operator in monitoring fluid levels in the reservoir and fluid filling automatically
PERANCANGAN PROTOTYPE ALAT PENDETEKSI KEBOCORAN GAS LPG BERBASIS ARDUINO UNO R3 DENGAN MODUL SIM800L DAN ESP8266 SEBAGAI MEDIA INFORMASI afdal eka kurniawan; Mayda Waruni Kasrani; a asni b
Jurnal Teknik Elektro Uniba (JTE UNIBA) Vol. 4 No. 2 (2020): JTE UNIBA (Jurnal Teknik Elektro Uniba)
Publisher : Lembaga Penelitian Universitas Balikpapan

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36277/jteuniba.v4i2.62

Abstract

Abstract— The LPG (Liquefied Petroleum Gas) gas leak detection and monitoring system is an anticipatory measure for safety from hazards such as gas cylinder explosions. This research aims to build a detection system by integrating MQ-6 sensor, Arduino microcontroller and ESP8266. Data can then be displayed on the Blynk application and notifications will be given via the application and email. The process of sending data using SIM800L module GSM/GPRS is a part that serves to communicate between the main monitors with mobile phone and the module ESP8266E ESP 12E WIFI IOT for data transfer in WIFI network . And this system has fulfilled the rules of the Internet of things, making it easier for the community in its application.
PERANCANGAN ALAT PENGISI BATERAI SELULAR PANEL SURYA MENGGUNAKAN MODUL PENGENDALI TS-MPPT-60 A Asni B; Aswadul Fitri Saiful Rahman; Alif Risky
Jurnal Teknik Elektro Uniba (JTE UNIBA) Vol. 5 No. 1 (2020): JTE UNIBA (Jurnal Teknik Elektro Uniba)
Publisher : Lembaga Penelitian Universitas Balikpapan

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36277/jteuniba.v5i1.87

Abstract

Modul Pengatur pengisian baterai memiliki peranan penting dalam mengendalikan energi listrik yang dihasilkan oleh panel surya dalam panel surya sebagai sumber energi listrik. Pengontrol MPPT (Maximum Power Point Tracking) merupakan salah satu jenis pengontrol yang memililki keunggulan dalam melakukan pengontrolan terhadap tegangan dan arus yang dihasilkan panel surya. Pada proses perancangan sistem panel surya sebagai charger seluler dengan memanfaatkan kemampuan TS-MPPT-60 sebagai controller, diperoleh hasil pengujian yang cukup efisien. Hasil pengujian rata-rata yang hasilkan dengan menggunakan panel surya dan TS-MPPT-60 terjadi peningkatan nilai arus yang diterima arus TS-MPPT-60 dari panel surya meningkat dengan nilai peningkatan hingga 40% -67,5% untuk dapat digunakan sebagai baterai aki yang digunakan baterai penyimpanan energi listrik yang dihasilkan panel surya. Pengujian dilakukan pada proses pengisian baterai HP dan nilai tegangan dan arus yang diperoleh cukup stabil. Arus yang mengalir pada proses pengisian baterai HP pada kisaran 0.82 A - 1 A untuk penggunaan kabel asli. Jenis kabel dan jenis HP merupakan faktor utama dalam proses pengisian baterai Hp.
PERANCANGAN SISTEM PENGENDALIAN KECERAHAN LAMPU UTAMA PADA MOBIL BERBASIS ARDUINO UNO Mayda Waruni Kasrani; A. Asni B; Agi Setia Putra
Jurnal Teknik Elektro Uniba (JTE UNIBA) Vol. 5 No. 1 (2020): JTE UNIBA (Jurnal Teknik Elektro Uniba)
Publisher : Lembaga Penelitian Universitas Balikpapan

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36277/jteuniba.v5i1.88

Abstract

Intisari— Pada penelitian ini di lakukan perancangan sebuah sistem pengendali kecerahan lampu utama pada mobil berbasis Arduino Uno. Tujuan dari sistem ini adalah membuat dan merancang sistem otomatisasi yang dapat mengendalikan kecerahan lampu utama pada mobil berdasarkan parameter keadaan di sekitar yang di lalui kendaraan tersebut. Dengan sistem ini diharapkan dapat lebih mengoptimalkan penggunaan daya pada baterai mobil. Dengan alasan tersebut maka di gunakanlah metode Fuzzy Logic untuk pengambilan keputusan. Penggunaan metode ini karena solusi dari kondisi-kondisi yang terjadi dalam berkendara dapat di parameterkan menggunakan metode Fuzzy. Masukan dari metode ini adalah tingkat kecerahan cahaya yang di baca oleh sensor BH1750 dan jarak kendaraan lain yang berada di depannya di baca oleh sensor HCSR04. Parameter jarak dan kecerahan cahaya tersebutlah yang di gunakan peneulis sebagai penentu fuzzy rule dari sistem ini. Dimana hasil pembacaan kedua sensor tersebut akan mempengaruhi nilai PWM Out dari Arduino tersebut. Dan perubahan nilai PWM tersebut akan berpengaruh terhadap tingkat kecerahan lampu utama mobil tersebut. Hasil dari dari pengontrolan kecerahan cahaya ini cukup efektif dalam menjaga efisiensi tegangan. Pada kondisi Low-Beam tegangan rata-rata 1,6 Volt, Pada kondisi Med-Beam 4,9 Volt, dan pada kondisi High-Beam 8,6 Volt.
PERANCANGAN SISTEM MONITORING JUMLAH SLOT KOSONG PADA GEDUNG PARKIR 3 LANTAI BERBASIS MIKROKONTROLLER A Asni B; Mayda Waruni Kasrani; Achmad Adi Prayitno
Jurnal Teknik Elektro Uniba (JTE UNIBA) Vol. 5 No. 2 (2021): JTE UNIBA (Jurnal Teknik Elektro Uniba)
Publisher : Lembaga Penelitian Universitas Balikpapan

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36277/jteuniba.v5i2.101

Abstract

Increased use of cars that are not balanced with the provision of adequate parking areas and many drivers who park in any place. The existing parking system only utilizes the parking area and the parking attendant who controls it. Motorists also have to find a place that is free of parking officers or drivers do not pay attention to the parking area, the vehicle owner will look for must get out if you do not get a parking space. To overcome this, make a parking system by using a microcontroller system that facilitates vehicle users to understand the number and arrange  an empty parking space. The  design of  this parking system discusses the available parking system which will be notified via LCD (Liquid Crystal Display) and LED (Light Emitting Diode) at the entrance of the parking lot, and also so that it can be used for the total vehicles in the parking lot with LED indicators ( Light Emitting Diode).  This  design  uses  the  Arduino  Nano  as  a  processor  to process data. The servo that translates the bar will be driven. When the parking lot is full, the LCD (Liquid Crystal Display) gives information that there is no vacant land, so the parking user goes up to the next floor. From the Arduino test results, Nano can adjust the circuit well, and Ultrasonic sensors can connect vehicles in each parking area, and the servo bars can be opened and closed again.