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Contact Name
Nurhajar Anugraha
Contact Email
jurnal.teliska@polsri.ac.id
Phone
+6281342233775
Journal Mail Official
jurnal.teliska@polsri.ac.id
Editorial Address
Jl. Srijaya Negara, Bukit Lama, Kec. Ilir Bar. I, Kota Palembang, Sumatera Selatan 30128
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INDONESIA
Jurnal Teliska
ISSN : 20850786     EISSN : 26542765     DOI : -
JURNAL TELISKA adalah Jurnal dengan akses terbuka, jurnal peer-review yang diterbitkan oleh Jurusan Teknik Elektro, Politeknik Negeri Sriwijaya, Indonesia. Teliska diterbitkan dengan frekuensi 3 (tiga) kali dalam setahun dengan jumlah volume yang bervariasi. Artikel dapat berupa hasil penelitian, kajian ilmiah, dan analisis serta pemecahan masalah yang relevan dengan bidang teknik elektro, diantaranya Teknik Telekomunikasi/Komunikasi Nirkabel/Keamanan Jaringan, Teknik Listrik/Sistem Tenaga Listrik dan Teknik Elektronika/Sistem Isyarat Elektronis/Sistem Kendali, Sistem Informasi/Internet of Things/Kecerdasan Buatan. Semua artikel yang dikirimkan harus melaporkan hasil penelitian asli, yang sebelumnya tidak dipublikasikan, eksperimental atau teoritis yang tidak dipublikasikan dan sedang dipertimbangkan untuk dipublikasikan di tempat lain. Publikasi naskah yang diserahkan tunduk pada peer review. Baik aspek umum dan teknis dari makalah yang dikirimkan ditinjau sebelum dipublikasikan. Naskah harus mengikuti gaya jurnal dan dapat ditinjau dan diedit. Sistem pengajuan dan penerbitan online menggunakan Open Journal System (OJS). Pengajuan harus dilakukan secara online melalui situs pengiriman Website TELISKA dengan melakukan Registrasi terlebih dahulu setelah itu Login . Makalah yang diterima akan tersedia secara online.
Articles 7 Documents
Search results for , issue "Vol 17 No III (2024): Teliska November 2024" : 7 Documents clear
ANALISIS PENGARUH INTENSITAS CAHAYA TERHADAP DAYA YANG DIHASILKAN PADA PANEL SURYA 600 Wp Hamzah, R.A. Nur'aini; Annisah, Masayu; Lutfi, Iskandar
JURNAL TELISKA Vol 17 No III (2024): Teliska November 2024
Publisher : Teknik Elektro Polsri

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.5281/zenodo.13308972

Abstract

This research looks at how light intensity affects the power generated by a 640 WP solar panel. Given the reduction in fossil energy production and the global commitment to reduce greenhouse gas emissions, the use of renewable energy has increased. Indonesia has a great opportunity for solar power development as it has a solar energy potential of about 4.5 kilowatt hours per day. This study was conducted at KWT Kemuning Farm from March to July 2024. The measurement results show that there is a significant correlation between light intensity and power generated. The results show that the light intensity is directly proportional to the power generated. The highest light intensity of 156300 Lux at 13:00 WIB produced 127.08 Watts of power, while the lowest light intensity of 26300 Lux at 16:00 WIB only produced 10.01 Watts of power. Power fluctuations were seen throughout the day, with the highest average power peak occurring between 11:00 am and 2:00 pm. This study provides important information on the relationship between light intensity and power generated, which can be used to improve the efficiency of solar panel technology in the future.
IMPLEMENTASI FUZZY LOGIC METODE MAMDANI PADA SISTEM KONTROL PENYIRAM TANAMAN BAWANG MERAH OTOMATIS DI PRABUMULIH Septriani, Dela; Lutfi, Iskandar; Risma, Pola
JURNAL TELISKA Vol 17 No III (2024): Teliska November 2024
Publisher : Teknik Elektro Polsri

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.5281/zenodo.13308905

Abstract

Shallots (Allium cepa var. ascalonicum) require effective irrigation to grow optimally. This research presents an IoT-based automatic watering system using Mamdani fuzzy logic method as watering control. The system uses two inputs, namely soil moisture and air temperature, and one output in the form of a watering pump. Soil moisture testing was conducted in three conditions: dry (0%-50%), moist (50%-70%), and wet (70%-100%). In addition, the tests also involved air temperature measurements categorized as cold (0°C-20°C), normal (20°C-32°C), and hot (32°C-50°C). The results show that the ideal humidity is between 55% and 58%. If the humidity exceeds 60%, the pump turns off to prevent the soil from getting too wet, and if it drops below 55%, the pump turns on as the soil starts to dry. Air temperature measurements showed consistent fluctuations throughout the day with small differences between the RTD PT-100 and Thermohygro Meter. The highest temperature occurred at 13:00 and the lowest at 18:00. This data is important for environmental management and system operations.
IMPLEMENTASI PLTS OFF-GRID 200 WP DENGAN SISTEM MONITORING BEBAN BERBASIS ARDUINO UNO Anggoro, Muhammad Aji; Amperawan
JURNAL TELISKA Vol 17 No III (2024): Teliska November 2024
Publisher : Teknik Elektro Polsri

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.5281/zenodo.14004912

Abstract

Electrical energy is energy that is very much needed for modern human life today. One of them electrical energy can be generated from solar energy or solar heat. Solar energy is a renewable energy for solar power generation systems that aim to provide renewable energy supplies to households by implementing using an off-grid PLTS system with a capacity of 200 Wp that can function effectively. The implementation of the off-grid PLTS system is carried out by several methods by means of literature, consultation, and observation. Based on the implementation of the 200 WP off-grid PLTS system with arduino uno-based load monitoring for solar panel test results show that solar panels are able to produce voltage and current in accordance with the expected specifications and it is known that energy conversion reaches high efficiency when the weather is in optimal conditions. The PZEM-004T sensor shows accurate and real-time voltage, current, and power measurements. The test results prove that the integration of the PZEM-004T sensor in the Arduino Uno-based load monitoring system for off-grid solar power plants provides significant benefits in terms of measurement accuracy and energy efficiency.
PEMAKAIAN DAYA TERHADAP MOTOR PWH137C PENYIRAMAN TANAMAN BAWANG MERAH OTOMATIS BERBASIS (IOT) DI KWT KEMUNING PRABUMULIH Ari Shandi, Muhammad; Annisah, Masayu; Lutfi, Iskandar
JURNAL TELISKA Vol 17 No III (2024): Teliska November 2024
Publisher : Teknik Elektro Polsri

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.5281/zenodo.14004780

Abstract

This study aims to evaluate the use of the PWH137C motor in an automatic watering system for shallot plants built in KWT Kemuning, Prabumulih, which is operated via the Internet of Things (IoT). This system is designed to improve the efficiency and effectiveness of watering by using Internet of Things (IoT) technology for remote monitoring and control. To ensure proper water distribution to plants, the PWH137C motor was chosen because of its ability to pump water efficiently and stably. This study focuses on analyzing motor performance, implementing soil moisture meters, and creating system control software. The study shows that the Internet of Things (IoT)-based automatic watering system can improve watering efficiency and ensure optimal growth of shallot plants.
PERANCANGAN SISTEM KERJA PENERANGAN JALAN UMUM MENGGUNAKAN TENAGA SOLAR CELL BERBASIS INTERNET OF THINGS Oktavia, Bela; Amperawan
JURNAL TELISKA Vol 17 No III (2024): Teliska November 2024
Publisher : Teknik Elektro Polsri

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.5281/zenodo.14347618

Abstract

This research discusses the design of a public street lighting system utilizing a 50 Wp solar cell, an 18 Ah battery at 12V, an ESP32 microcontroller, an LDR sensor, an INA219 sensor, and the Blynk platform for monitoring. The system is designed to provide an efficient and eco-friendly lighting solution by harnessing renewable energy from solar panels. The main components of the system include a solar panel that converts solar energy into electricity and stores it in the battery for nighttime use. An LDR (Light Dependent Resistor) sensor is used to detect ambient light intensity, allowing the system to automatically turn on the lights at night and turn them off during the day. The INA219 sensor functions to measure the voltage and current flowing from the solar panel to the battery and from the battery to the light, ensuring efficient energy management. The ESP32 microcontroller serves as the brain of the system, integrating data from the LDR and INA219 sensors to control light operations and send data to the Blynk platform. Blynk is used as a remote monitoring system.
SISTEM PENGERING SEPATU DAN PEMBUNUH BAKTERI Wijaya, Ary
JURNAL TELISKA Vol 17 No III (2024): Teliska November 2024
Publisher : Teknik Elektro Polsri

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.5281/zenodo.14004890

Abstract

Sepatu merupakan termasuk kebutuhan sehari-hari yang sangat penting pada saat beraktifitas diluar ruangan. Sepatu yang lembab atau basah dapat menjadi tempat berkembangnya bakteri dan jamur yang dapat menyebabkan bau tidak sedap bahkan sampai menyebabkan infeksi pada kaki. Pengeringan dibawah matahari seringkali terkendala akan cuaca, sehingga tidak efektif dalam proses pengeringannya. Pengembangan alat pengering sepatu ini merupakan solusi yang tepat, dengan dilengkapi sensor suhu dan kelembaban DHT22 alat dapat mendeteksi kondisi sepatu secara otomatis, pemanas elektrik dan kipas dimanfaatkan sebagai pemanas didalam kotak pengering dan mengatur hawa panas dan sirkulasi udara panas didalam kotak pengering. Dilengkapi dengan aplikasi mobile blynk berbasis IoT menjadikan alat pengering lebih mudah dalam penggunaannya. UV-C digunakan sebagai pembunuh bakteri sepatu dan pengharum untuk membuat sepatu selalu wangi. Dalam proses pengeringannya suhu diatur pada setpoint 50oC yang memungkinkan mengeringkan sepatu kets selama 100menit dan sepatu kulit selama 60 menit. Lama proses pengeringan tergantung pada seberapa besar kelembaban sepatu yang terdeteksi oleh sensor. Dengan adanya alat pengering sepatu otomatis dapat memberikan alternatif dan kemudahan dalam mengeringkan sepatu lebih cepat.
APLIKASI VIDEO KONFERENSI BERBASIS WEB DENGAN FITUR FACE RECOGNITION UNTUK VERIFIKASI IDENTITAS PESERTA Fathurrahman; Muniar, Andi Yulia; Abdul Kadir Parewe, Andi Maulidinnawati; Angriawan, Randy; Yusa Wardhani, Dyah Utari Yusa Wardhani
JURNAL TELISKA Vol 17 No III (2024): Teliska November 2024
Publisher : Teknik Elektro Polsri

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.5281/zenodo.14241599

Abstract

This research aims to develop a website-based application that makes it possible to automatically verify the identity of participants in video conferences using facial recognition technology. This application was created to make the participant identification process easier compared to conventional methods which often take longer. The process of creating this application includes several stages, namely literature study to understand relevant technology, user interface design, application design, implementation of the face recognition feature, and application testing using black box and questionnaire methods. Based on the results of this research, the results obtained show that this application is able to verify participant identity automatically through its facial recognition feature and shortens the time for verifying participants. This was obtained through tests that have been carried out with various scenarios to ensure its performance. Testing was carried out with several participants and different conditions, such as the use of face masks and filters, low video quality, and inappropriate participant faces.

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