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All Journal International Journal of Power Electronics and Drive Systems (IJPEDS) Jurnal Edukasi Elektro INOTEKS : Jurnal Inovasi Ilmu Pengetahuan, Teknologi, dan Seni Dinamik ELKHA : Jurnal Teknik Elektro Journal of Fisheries Resources Utilization Management and Technology Prosiding Seminar Nasional Sains Dan Teknologi Fakultas Teknik UNEJ e-Proceeding Jurnal Teknik Elektro PROtek : Jurnal Ilmiah Teknik Elektro Journal of Electrical Technology UMY JETT (Jurnal Elektro dan Telekomunikasi Terapan) CIRCUIT: Jurnal Ilmiah Pendidikan Teknik Elektro Rang Teknik Journal CYCLOTRON Jurnal ULTIMA Computing Adimas : Jurnal Pengabdian Kepada Masyarakat Jambura Journal of Health Sciences and Research Jurnal Sistem Cerdas Buletin Ilmiah Sarjana Teknik Elektro Jambura Journal of Electrical and Electronics Engineering MOTIVECTION : Journal of Mechanical, Electrical and Industrial Engineering TIN: TERAPAN INFORMATIKA NUSANTARA Academia Open Indonesian Journal of Cultural and Community Development Journal of Computer Networks, Architecture and High Performance Computing Jurasik (Jurnal Riset Sistem Informasi dan Teknik Informatika) Jurnal JEETech Community Empowerment Journal of Electrical Engineering and Computer (JEECOM) J-Eltrik JASEE Journal of Application and Science on Electrical Engineering Jurnal SImetri Rekayasa JEEE-U (Journal of Electrical and Electronic Engineering-UMSIDA) Jurnal Abdimas ADPI Sains dan Teknologi Indonesian Journal of Innovation Studies Jurnal Al Ulum: LPPM Universitas Al Washliyah Medan SinarFe7 Prosiding Seminar Nasional Teknik Elektro, Sistem Informasi, dan Teknik Informatika (SNESTIK) Prosiding Seminar Nasional Teknologi Industri Berkelanjutan PELS (Procedia of Engineering and Life Science) Procedia of Social Sciences and Humanities Media Bina Ilmiah JEECS (Journal of Electrical Engineering and Computer Sciences) Riwayat: Educational Journal of History and Humanities Innovative Technologica: Methodical Research Journal Prosiding Seminar Nasional Rekayasa dan Teknologi (TAU SNAR- TEK) Journal of Social Comunity Services
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Thermal Cooling of Solar Panels: Effectiveness of Copper Pipes in Temperature Regulation Ramadhan, Hanif; Jamaaluddin, Jamaaluddin; Ahfas, Akhmad; Anshory, Izza
MOTIVECTION : Journal of Mechanical, Electrical and Industrial Engineering Vol 7 No 1 (2025): Motivection : Journal of Mechanical, Electrical and Industrial Engineering
Publisher : Indonesian Mechanical Electrical and Industrial Research Society (IMEIRS)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.46574/motivection.v7i1.407

Abstract

This study evaluates the effectiveness of a thermal cooling system utilizing copper pipes in regulating solar panel temperature and enhancing energy efficiency. The system incorporates water-fed copper pipes with an automatic valve mechanism, which controls water flow based on real-time temperature measurements. Experiments were conducted at Universitas Muhammadiyah Sidoarjo using two 100 Wp solar panels, where key parameters such as voltage, current, power output, and surface temperature were monitored. The results demonstrate that the cooling system effectively lowers panel temperature, leading to significant improvements in voltage and power generation. The cooled solar panel achieved a maximum efficiency of 43.7%, compared to only 24.07% without cooling. Additionally, the cooling system stabilized maximum power voltage (VMP) and maximum power output (PMAX), preventing performance degradation due to excessive heat accumulation. These findings confirm that integrating a copper pipe thermal cooling system enhances solar panel efficiency, providing a viable solution for improving photovoltaic energy conversion and ensuring long-term operational stability.
Efficiency Analysis of PV with Composed Peltier as a Coolant Syamsi Dhuha, Ahmad Naajih; Jamaaluddin, Jamaaluddin; Syahrorini, Syamsudduha; Anshory, Izza
Circuit: Jurnal Ilmiah Pendidikan Teknik Elektro Vol 9, No 1 (2025)
Publisher : PTE FTK UIN Ar-Raniry

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.22373/crc.v9i1.26963

Abstract

Kebutuhan akan energi ramah lingkungan semakin meningkat. Energi matahari menawarkan solusi berkelanjutan yang melimpah. Namun, efisiensi panel surya (PV) sering terhambat oleh panas berlebih. Hal ini dapat menurunkan kinerja konversi daya. Penelitian ini bertujuan untuk meningkatkan efisiensi PV dengan memanfaatkan sistem pendinginan berbasis efek Peltier sebagai solusi inovatif dalam mengatur suhu PV agar tetap stabil dan optimal. Metode yang digunakan dalam penelitian ini adalah eksperimen langsung dengan membandingkan dua kondisi operasional PV, yaitu dengan pendinginan Peltier dan tanpa pendinginan. Data yang dikumpulkan meliputi suhu PV, voltage (Vmp, VOC), arus (Imp), dan daya maksimum (Pmax) untuk setiap kondisi. Sistem pemantauan menggunakan perangkat seperti kamera pencitraan termal dan multimeter panel surya untuk mendapatkan hasil pengukuran yang akurat terkait dengan kinerja PV. Hasil penelitian menunjukkan bahwa sistem pendingin Peltier mampu menurunkan suhu PV secara signifikan, sehingga daya listrik yang dihasilkan oleh PV meningkat. Pada suhu yang lebih rendah, PV dengan pendinginan Peltier menunjukkan efisiensi daya yang lebih tinggi dibandingkan dengan PV tanpa pendinginan. Teknologi ini terbukti ramah lingkungan dan hemat energi, karena tidak memerlukan cairan pendingin atau komponen mekanis yang rumit. Sistem pendingin ini menawarkan alternatif berkelanjutan dalam manajemen suhu PV. Sistem ini dapat diterapkan secara luas untuk meningkatkan efisiensi energi panel surya dan mendukung penggunaan energi terbarukan yang optimal.
Rancang Bangun Jebakan Tikus Berbasis Internet of Things dan Camera ESP32 Mohammad Idris Andriansyah; Jamaaluddin Jamaaluddin; A. Ahfas; Izza Anshory; Dwi Hadidjaja
JASEE Journal of Application and Science on Electrical Engineering Vol. 4 No. 02 (2023): JASEE-September
Publisher : Teknik Elektro - Fakultas Teknik - Universitas Widyagama Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31328/jasee.v4i02.442

Abstract

This research targets rats, which are notorious pests causing food spoilage, disease transmission, and human bites in residential areas, by developing an IoT-based automatic trap. Using ESP32-CAM and IoT technology, the trap ensures effective and safe rat capture with real-time monitoring. The NodeMCU-ESP8266 microcontroller integrates with the Blynk app for seamless control. HCSR-04 Ultrasonic Sensors and 2 Servo Motors detect rats and automate door movement. Employing a research and development approach, the study meticulously assesses sensor, motor, and trap accuracy. Findings highlight the initial Ultrasonic Sensor's proficiency in detecting mice within 16cm, triggering door 1 closure and trapping the mouse. The second Ultrasonic Sensor triggers door 2 to open, releasing the mouse into the electric trap. A Blynk app notification informs users of successful captures. This innovative IoT-based rat trap offers an efficient solution for rodent infestations, potentially enhancing residential environments with scope for further improvements
Temporary Devider as an innovation tool in reducing operational losses of PT PLN (Persero) UP3 Sidoarjo Zaputra, Gaggah; Ayuni, Shazana Dhiya; Anshory, Izza; Falah, Agus Hayatal
Journal of Electrical Engineering and Computer (JEECOM) Vol 7, No 1 (2025)
Publisher : Universitas Nurul Jadid

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33650/jeecom.v7i1.10810

Abstract

Temporary Devider is a new tool that was created in October 2024 by the PT PLN (PERSERO) UP3 SIDOARJO PDKB Team. Temporary Devider was created to help and solve problems with SUTM maintenance work that could not be carried out by the PDKB team due to high risk factors. The results of the study from 5 implementations in the PT PLN (Persero) UP3 Sidoarjo work area, local blackouts by utilizing the Temporary Devider as a new innovation tool with an investment value IDR 4,000,000 can reduce the difference in company losses by 89,376.08 kWh or Rp. 104,263,090 when compared to blacking out one feeder and 16,839.02 kWh or IDR 19,578,227 when compared to per-section outages. The use of Temporary Deviders has been proven to be able to reduce losses due to blackouts which result in Energy Not Supplied.
IMPLEMENTASI MOTOR BLDC 350W UNTUK MENINGKATKAN KECEPATAN PENGGULUNGAN SELANG PEMADAM KEBAKARAN Putra, Mochamad Wildan Karyono; Anshory, Izza; Sulistiyowati, Indah; Saputra, Dwi Hadidjaja Rasjid
Rang Teknik Journal Vol 8, No 2 (2025): Vol. 8 No. 2 Juni 2025
Publisher : Fakultas Teknik Universitas Muhammadiyah Sumatera Barat

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31869/rtj.v8i2.5842

Abstract

The effective management of fire hoses is critical for ensuring rapid and efficient response in emergency situations. This study explores the implementation of a 350W Brushless DC (BLDC) motor for improving the speed and efficiency of fire hose retraction systems. The research aims to enhance the performance of fire hose reels by replacing conventional methods with a more advanced motor-driven system. The methodology involves an experimental approach with phases including design, implementation, testing, and data analysis. The system was evaluated under various conditions, including both unloaded and loaded states with water. Results indicate that while the BLDC motor significantly improves retraction speed compared to conventional methods, its performance is affected by additional load, showing the need for further optimization. This research contributes to the development of more efficient fire safety equipment, providing valuable insights into the integration of advanced motor technologies in critical response systems. Keywords: Brushless DC Motor, Fire Hose Retraction, Motor Efficiency, Fire Safety Equipment, Experimental Evaluation, Load Testing
Implementation of Inverter and Modbus RTU RS-485 Communication in Controlling Induction Motor Speed Mas’ud, Ibnu; Anshory, Izza; Jamaaluddin, Jamaaluddin; Wisaksono, Arief
MOTIVECTION : Journal of Mechanical, Electrical and Industrial Engineering Vol 7 No 1 (2025): Motivection : Journal of Mechanical, Electrical and Industrial Engineering
Publisher : Indonesian Mechanical Electrical and Industrial Research Society (IMEIRS)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.46574/motivection.v7i1.451

Abstract

As industrial technology continues to advance, the demand for efficient and automated motor control systems is increasing. Three-phase induction motors are widely used due to their durability and efficiency. However, controlling their speed remains a challenge, especially in small-scale applications without expensive systems. Therefore, a precise, affordable, and easy-to-implement motor control solution is needed. This study discusses the implementation of a three-phase induction motor speed control system using the LS G100 inverter and LS XBM-DR16S PLC through the Modbus RTU RS-485 communication protocol. The system is designed without additional expansion boards to simplify the circuit and reduce costs. The methodology used is an engineering and experimental approach, focusing on the measurement of motor electrical parameters such as actual speed (RPM), frequency, voltage, and current. Test results show that the system is capable of precisely controlling motor speed, with an average RPM accuracy of 99.6%, voltage accuracy of 97.2%, and current accuracy of 91.1%. The system has proven to be reliable and efficient for small to medium-scale industrial automation applications and facilitates real-time troubleshooting and monitoring through integrated data communication.
Efficiency Analysis of PV with Composed Peltier as a Coolant Syamsi Dhuha, Ahmad Naajih; Jamaaluddin, Jamaaluddin; Syahrorini, Syamsudduha; Anshory, Izza
Circuit: Jurnal Ilmiah Pendidikan Teknik Elektro Vol. 9 No. 1 (2025)
Publisher : PTE FTK UIN Ar-Raniry

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.22373/crc.v9i1.26963

Abstract

Kebutuhan akan energi ramah lingkungan semakin meningkat. Energi matahari menawarkan solusi berkelanjutan yang melimpah. Namun, efisiensi panel surya (PV) sering terhambat oleh panas berlebih. Hal ini dapat menurunkan kinerja konversi daya. Penelitian ini bertujuan untuk meningkatkan efisiensi PV dengan memanfaatkan sistem pendinginan berbasis efek Peltier sebagai solusi inovatif dalam mengatur suhu PV agar tetap stabil dan optimal. Metode yang digunakan dalam penelitian ini adalah eksperimen langsung dengan membandingkan dua kondisi operasional PV, yaitu dengan pendinginan Peltier dan tanpa pendinginan. Data yang dikumpulkan meliputi suhu PV, voltage (Vmp, VOC), arus (Imp), dan daya maksimum (Pmax) untuk setiap kondisi. Sistem pemantauan menggunakan perangkat seperti kamera pencitraan termal dan multimeter panel surya untuk mendapatkan hasil pengukuran yang akurat terkait dengan kinerja PV. Hasil penelitian menunjukkan bahwa sistem pendingin Peltier mampu menurunkan suhu PV secara signifikan, sehingga daya listrik yang dihasilkan oleh PV meningkat. Pada suhu yang lebih rendah, PV dengan pendinginan Peltier menunjukkan efisiensi daya yang lebih tinggi dibandingkan dengan PV tanpa pendinginan. Teknologi ini terbukti ramah lingkungan dan hemat energi, karena tidak memerlukan cairan pendingin atau komponen mekanis yang rumit. Sistem pendingin ini menawarkan alternatif berkelanjutan dalam manajemen suhu PV. Sistem ini dapat diterapkan secara luas untuk meningkatkan efisiensi energi panel surya dan mendukung penggunaan energi terbarukan yang optimal.
SISTEM MONITORING GAS DAN SUHU PADA BIOGAS DIGESTER UNTUK MENINGKATKAN KINERJA KOMPOR Febrian, Dharma Ekita Putra; Wisaksono, Arief; Anshory, Izza; Jamaaluddin, Jamaaluddin
Jurnal Al Ulum LPPM Universitas Al Washliyah Medan Vol. 13 No. 2 (2025): Jurnal Al Ulum: LPPM Universitas Al Washliyah Medan
Publisher : UNIVERSITAS AL WASHLIYAH (UNIVA) MEDAN

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.47662/alulum.v13i2.869

Abstract

This research aims to design an Internet of Things (IoT)-based monitoring system capable of monitoring the gas and temperature in a biogas digester to improve the operational efficiency of a biogas-fueled stove. The system utilizes a DS18B20 sensor to ensure the fermentation temperature remains optimal and an MQ-4 sensor to detect methane levels. The data collected by the sensors is processed using an ESP32 microcontroller and displayed directly through the Blynk application. This technology is designed to improve stove performance and biogas production and maximize its use as an environmentally friendly renewable energy. Test results show that the system is effective in monitoring parameter changes with a high degree of accuracy, enabling a more optimized fermentation process and efficient use of biogas. The system provides real-time information regarding digester condition and stove performance, thus supporting the improvement of biogas-based energy efficiency. In addition, this technology contributes to the development of sustainable solutions that benefit both households and the industrial sector.
Analisa Rugi Daya, Drop Tegangan dan Perbaikan pada Sistem Distribusi Penyulang Keboansikep PT PLN (Persero) UP3 Sidoarjo Pradana, Fendy Steyo; Jamaaluddin, Jamaaluddin; Anshory, Izza; Ayuni, Shazana Dhiya
Riwayat: Educational Journal of History and Humanities Vol 8, No 3 (2025): July, Social Studies, Educational Research and Humanities Research.
Publisher : Universitas Syiah Kuala

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24815/jr.v8i3.48788

Abstract

Abstract:This research analyzes the technical and economic performance improvements of the 20 kV Keboansikep feeder network using ETAP 21.0.1 simulation software. The study addresses the problem of high power losses and voltage drops in the existing system, which reduce network efficiency and electricity supply quality. Data collection involved field measurements of feeder load, conductor specifications, transformer capacity, and network configuration, followed by modeling and simulation in ETAP. Two improvement scenarios were evaluated: Option 1, upgrading conductor cross-sectional area to 240 mm, and Option 2, adding a new feeder line to distribute the load more evenly. Simulation results show that in the existing condition, total power loss reached 246.11 kW with a maximum voltage drop of 3.8%. Option 1 reduced power loss to 153.08 kW and voltage drop to 2.5%, while Option 2 achieved the best performance with power loss of only 65.99 kW and voltage drop of 1.2%. From an economic perspective, Option 1 generated annual energy cost savings of approximately IDR 896 million, while Option 2 saved around IDR 1.73 billion annually. Although Option 2 requires higher investment, it offers greater long-term benefits in terms of energy efficiency, voltage stability, and operational reliability. The findings provide practical insights for electricity distribution companies in selecting cost-effective and technically sound solutions to minimize network losses and enhance service quality.
Utilization of a Pressure Sensor as a Pressure Regulator in an Autoclave Machine for Medical Equipment Sterilization and IoT-Based Monitoring Saickoni, Mohammad; Falah, Agus Hayatal; Anshory, Izza; Wisaksono, Arief
Journal of Electrical Engineering and Computer (JEECOM) Vol 7, No 2 (2025)
Publisher : Universitas Nurul Jadid

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33650/jeecom.v7i2.12222

Abstract

An autoclave is a sterilization device that operates using high-pressure steam to eliminate microorganisms. However, in conventional systems, pressure regulation is still performed manually, which can lead to inconsistencies in the sterilization process and reduced effectiveness. This study developed an automatic pressure control system based on a digital pressure sensor, controlled by an Arduino Uno microcontroller and equipped with an ESP8266 module for real-time monitoring via the Internet of Things (IoT). The system also utilizes a MAX6675 temperature sensor, a solenoid valve as a pressure actuator, and an LCD as a local interface. Testing was conducted at three pressure settings (10, 15, and 25 psi) for a duration of 15 minutes. The results showed that the system was able to maintain pressure with a fluctuation tolerance of ±0.3 psi and successfully transmitted temperature and pressure data to a cloud dashboard in real-time. This system is considered effective in improving the efficiency, accuracy, and safety of the sterilization process, and has the potential to be implemented in medical and laboratory facilities.
Co-Authors A. Ahfas Abdul Halim Abdullah Mubarak 'Aafi Abror, M. Achmad Fatchur Rochman, Achmad Fatchur Ade Efiyan Adi Prasetyo Adi Prasetyo Adi Prasetyo Agus Hayatal Falah Ahmad Ahfas Ahmad Fudholi Akhmad Ahfas Al Amien, Mochammad Sandi Ali Imron Aliffudin, Muchammad Amar Rasuli Arga Rachmanda Putra Arief Rachman Yunanto Arief Wicaksono, Arief Arief Wisaksono Ariel Fadilah, Mokhamad Aristi Dian Purnama Fitri Aufi, Nizarruddien Al Ayu, Shazana Dyah Ayuni , Shazana Dhiya Azmi , Muhammad Zum’an A’rasy Fahruddin Bayu Sukma Sejati Bima Setya Kusumaraga Bimo Agressianto Budi, Mohamad Istiyo Cecep Kusmana Charizuddin, Muhammad Charizuddin, Muhammad DA, Shazana DARMANSYAH . Desyandri Desyandri Donny Wiraputra Drajad Kuncoro Aji Drajad Kuncoro Aji Dwi Hadidja Dwi Hadidjaja Dwi Irawan Dwi Iswahyudi, Dwi Efendi, Muhammad Taufik Nur Eko Agus Suprayitno Emy Rosnawati Emy Rosnawati Fachrudin, A’rasy Fahruddin, A’rasy Fakhrudin, A’rasy Fakhrudin, A’rasy Febrian, Dharma Ekita Putra Firmansyah, Fikri Alam Galih R, Sayid Hafidz Maulana Ichsan Hariska Ade Pratama Hariswanda, Yuswono Hayatal Falah, Agus Herry Boesono Hindarto Husen, Mohamad Sadam Ilham Ramadhana Chofananda Imam Fahmi Udin Ma'ruf Indah Sulistiyowati Indah Sulistyowati Indah Sulistyowati Indah Sulistyowati Indah Sulistyowati, Indah Iswahyudi, Dwi Jamaaludddin, Jamaaluddin Jamaaluddin Jamaaludin Jamaluddin Jamaluddin KHOIRI Laksono Hadi, Moch. Faizal Lukman , Lukman Lukman Hudi M, M. Syahrul Mahardika, Joar Yahdi Mardiyono Marzuki, Taufik Mas’ud, Ibnu Maulana Ichsan, Hafidz Mohammad Idris Andriansyah Mokhamad Ariel Fadilah Muh Arul Romadhon Muhamad Hafiz Servo Fadillansyah Muhamad Husaini Muhammad Alamsyah Muhammad Drajad Kuncoro Aji Muhammad Masduki Zakaria Muhammad Syaiful Azis Muhammad Ulum Pasca Yoghaswara Pasca Yoghaswara Pradana, Fendy Steyo Prantasi Harmi Tjahjanti Prasetiyo Budi Megantoro Pratama, Yoga Tri Pratama, Yunardhika Wahyu Prayoga, Dimas Dwi prayogo, rio Putra, Arga Rachmanda Putra, Mochamad Wildan Karyono Putra, Wijaya Al Hadad Sudjono R.S, Dwi Hadidjaja Ramadhan, Hanif Rasjid Saputra, Dwi Hadidjaja Ribangun Bamban Jakaria Rio Prayogo Rohman, Rizky Habibur Romadhoni, Sahrul Rosyidah, Izzah Saickoni, Mohammad saputro, galib asbie Septi Budi Sartika Septiyan, Moch. Dani Shazana Dhina Ayuni Shazana Dhiya Ayuni Shobah, Moh. Nurus Sholihuddin Ayyubi Syahrorini, Syamsudduha Syamsi Dhuha, Ahmad Naajih Taufik Marzuki Tsalits, Askhaarina Aulia Wicaksono, Arief Tri Wijaya Al Hadad Sudjono Putra Yoghaswara, Pasca Zaputra, Gaggah Zuhri , Muhamad Saifudin