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Contact Name
Silvia Anggraeni
Contact Email
silvia.anggraeni@upnvj.ac.id
Phone
+6281288053790
Journal Mail Official
silvia.anggraeni@upnvj.ac.id
Editorial Address
Jalan Raya Limo, Limo District, Depok City, Jawa Barat 16515 Indonesia
Location
Kota depok,
Jawa barat
INDONESIA
Indonesian Journal of Electrical Engineering and Electronics
ISSN : -     EISSN : 30324300     DOI : 10.54378
Core Subject : Engineering,
This journal accepts scientific articles in Electrical Engineering and Electronics with the form of basic research articles, clinical research articles, meta-analysis articles, literature reviews, and case reports. Themes included in this journal scientific publications include the following: Electrical Engineering Electronics Telecommunication Engineering Networks Power Instruments Automation Systems Artificial Intelligence
Articles 30 Documents
Prototype Blind Spot Area Object Detection for Dump Truck Vehicles Muhammad Farrel Prambudi; Rivaldo Deanova; Fakhri Ramadito Qair Putra
Indonesian Journal of Electrical Engineering and Electronics Vol. 3 No. 1 (2026): 2. January 2026 Indonesian Journal of Electrical Engineering and Electronics
Publisher : Faculty of Engineering - Universitas Pembangunan Nasional Veteran Jakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.54378/ijeee.v3i1.10357

Abstract

A dump truck is a heavy vehicle designed to transport large quantities of materials. However, the vehicle's large size and unique structure create a significant blind spot area, increasing the risk of accidents. Based on data and opinions of experts, blind spots around dump trucks are often the main cause of accidents, especially those involving pedestrians or small vehicles. In response to this problem, a prototype blind spot detection system has been developed to improve driver awareness and reduce the risk of accidents. The prototype uses an Arduino Uno as a microcontroller, an ultrasonic sensor to detect objects, as well as additional components such as buzzers, LEDs, and LCDs to provide alerts. When an object is detected at a dangerous distance, i.e. between 1 cm and 8 cm, the system will provide an audio-visual warning: the buzzer emits a warning sound, the LED lights up, and the LCD displays the status of "DANGER". The test results prove that this prototype successfully demonstrates the effective ability to detect objects on both sides of the vehicle and distinguish between safe and dangerous zones.
Anti-Theft Security System for Museum Item Display Raden Danuprawira Harris; Aisyah Alhumairo; Angger Saka Bayu Fresto
Indonesian Journal of Electrical Engineering and Electronics Vol. 3 No. 1 (2026): 2. January 2026 Indonesian Journal of Electrical Engineering and Electronics
Publisher : Faculty of Engineering - Universitas Pembangunan Nasional Veteran Jakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.54378/ijeee.v3i1.10358

Abstract

This research aims to design and build a mini prototype of an anti-theft security system for displaying goods using an ESP32 microcontroller, infrared (IR) sensor, buzzer module, and SG90 micro servo. The system is designed to detect lost items through IR sensors, trigger alarms through buzzers, automatically close doors using SG90 servos, and send notifications to Telegram via ESP32. The test results show that the system can function well and be responsive in detecting theft, providing voice alerts, closing doors, and sending real-time notifications.
IoT-Based Air Quality Monitoring System Iman Haranto; Ananda Dwi Satria; Haidar Bagir
Indonesian Journal of Electrical Engineering and Electronics Vol. 3 No. 1 (2026): 2. January 2026 Indonesian Journal of Electrical Engineering and Electronics
Publisher : Faculty of Engineering - Universitas Pembangunan Nasional Veteran Jakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.54378/ijeee.v3i1.10359

Abstract

Public awareness of the dangers of air pollution is still very low due to the lack of available information. Therefore, an IoT-based air quality monitoring system can be a fundamental solution that can be implemented. This research aims to develop an Internet of Things (IoT)-based air quality monitoring system that can detect various types of air pollution in real-time. Testing of the air quality monitoring system shows that it can monitor air quality in real-time with fairly good accuracy, which is expected to help minimize the impact of poor air pollution.
Resonance Frequency Analysis of a Mini Tesla Coil (15V–24V) as a High-Voltage Transmitter Prototype Raihan Fiqri Rhenaputra; Ajie Alvido Akraam; Safira Kania Saraswati
Indonesian Journal of Electrical Engineering and Electronics Vol. 3 No. 1 (2026): 2. January 2026 Indonesian Journal of Electrical Engineering and Electronics
Publisher : Faculty of Engineering - Universitas Pembangunan Nasional Veteran Jakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.54378/ijeee.v3i1.10361

Abstract

This study aims to analyze the resonance frequency of the Tesla Coil module based on experiments and theoretical calculations, and provide recommendations for improving the resonance design. The theoretical resonance frequency is calculated at 130.1 kHz, while experimental measurements show a deviation of 5–10%, caused by component tolerance, passive losses, and parasitic effects. Power transfer efficiency increases with input voltage, reaching 82% at 24 V. Analysis using a Quality Factor (Q) of 21.6 and a primary-secondary inductance ratio of 13.6:1 shows good resonance performance but can still be improved. Recommendations for improvement include selecting components with lower tolerances, adjusting capacitance and inductance values, and optimizing PCB design to reduce parasitic effects. The results of this study are expected to be a reference in the development of more efficient and accurate Tesla Coil modules.
The Passive Optical Network (PON) Technologies in FTTH Implementation: English Dzikri Daud; Virgiandra Ariansyach Putra; Taqi Mundzir Burhanudin; Ahmad Bura Jilana; Ayu Mika Sherila
Indonesian Journal of Electrical Engineering and Electronics Vol. 3 No. 1 (2026): 2. January 2026 Indonesian Journal of Electrical Engineering and Electronics
Publisher : Faculty of Engineering - Universitas Pembangunan Nasional Veteran Jakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.54378/ijeee.v3i1.11576

Abstract

The development of high-speed internet service needs encourages the implementation of fiber optic-based network technology, especially Fiber To The Home (FTTH). Passive Optical Network (PON) technology is the main foundation in providing this service, with various variants such as EPON, GPON, XG-PON, and NG-PON2. This study comprehensively discusses the technical characteristics, performance, and implementation challenges of each of these technologies. The results of the analysis show that GPON is still the main choice because of its efficiency and support for existing infrastructure, while XG-PON and NG-PON2 offer higher capacity but face challenges in terms of cost and technical complexity. Performance evaluation based on parameters such as Power Link Budget, Signal-to-Noise Ratio (SNR), and Bit Error Rate (BER) shows that XG-PON has better network performance than GPON, while NG-PON2 excels in capacity and service flexibility with TWDM technology. This study provides insight into selecting the right PON technology based on capacity needs, geographic conditions, and resource constraints, and encourages the development of sustainable FTTH infrastructure in the digital era. Keywords: FTTH, GPON, XG-PON, NG-PON2, TWDM, PON, Power Link Budget
Design and Construction of a Safe Viewing Distance Detection Tool for Laptop Screens Using the HC-SR04 Ultrasonic Sensor Afriansyah Putra; Liemalasintasari; Muhamad Mirza Alfarisi
Indonesian Journal of Electrical Engineering and Electronics Vol. 3 No. 2 (2026): 1. August 2026 Indonesian Journal of Electrical Engineering and Electronics
Publisher : Faculty of Engineering - Universitas Pembangunan Nasional Veteran Jakarta

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Abstract

Prolonged laptop use with an excessively close viewing distance can cause eye discomfort, such as dry eyes and visual strain, commonly experienced by students. This article presents the design and development of a laptop monitor safe-distance detection device to assist users in maintaining an appropriate viewing distance. The system utilizes an Arduino Uno R3 microcontroller and an HC-SR04 ultrasonic sensor to measure the distance between the user and the laptop monitor. The measured distance is classified into three conditions: danger, warning, and safe, based on predefined thresholds. Distance information and system status are provided through traffic light LEDs, an LCD with an I2C module, and a buzzer as an alert. Test results indicate that the system is able to detect distance changes accurately and generate appropriate output responses. The device is expected to improve user awareness of proper viewing distance during laptop use.
An ESP32-BASED Automatic Cat Feeding System with Adaptive Scheduling and Precise Portion Control via Real-Time Weight Monitoring Rubio Azza Arafah; Tiara Evidia Wati; Achmad Ikhlas Tsaqif
Indonesian Journal of Electrical Engineering and Electronics Vol. 3 No. 2 (2026): 1. August 2026 Indonesian Journal of Electrical Engineering and Electronics
Publisher : Faculty of Engineering - Universitas Pembangunan Nasional Veteran Jakarta

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Abstract

Irregular manual feeding may negatively affect animal health. This study develops an automatic feeding system based on ESP32 with adaptive scheduling and precise portion control using real-time weight monitoring. The system integrates RTC DS3231, HX711 load cell, and a servo motor as the actuator. Weight data serve as feedback to ensure target portion accuracy. Testing indicates that the system reliably dispenses feed on time and in the correct amount. This system provides an effective and reliable solution for automated and precise animal feeding.
Designing An ESP32-based Automated Fish Pond Security System Using Multi-Sensors Raka Adryan Naufal; Naufal Akmal Oesman; Irfan Rizki Arip
Indonesian Journal of Electrical Engineering and Electronics Vol. 3 No. 2 (2026): 1. August 2026 Indonesian Journal of Electrical Engineering and Electronics
Publisher : Faculty of Engineering - Universitas Pembangunan Nasional Veteran Jakarta

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Abstract

Fish pond security is a major concern for farmers, given the prevalence of theft cases that cause economic losses. Conventional security systems that rely on manual surveillance are considered ineffective and inefficient, especially at night or when the location is unattended. This study aims to design and build an automatic fish pond security system that can accurately detect intrusions and provide real-time early warnings. This system uses an ESP32 microcontroller as a control center connected to three main types of sensors to detect the presence of suspicious objects. As a double security feature, this system not only activates an audible alarm (buzzer) at the scene to provide a shock effect, but also sends warning notifications directly to the user's device via the Telegram application. This method allows pond owners to monitor security conditions remotely. Test results show that the system is capable of detecting disturbances, sounding alarms, and sending Telegram notification messages with a high success rate, thus offering a more responsive and modern security solution.
Smart Monitoring of Single-Phase Electricity Based on Internet of Things (IoT) Amilzan Fadlan Radiansyah; Nico Setyo Triwibowo; Oktogius
Indonesian Journal of Electrical Engineering and Electronics Vol. 3 No. 2 (2026): 1. August 2026 Indonesian Journal of Electrical Engineering and Electronics
Publisher : Faculty of Engineering - Universitas Pembangunan Nasional Veteran Jakarta

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Abstract

Voltage instability and unmonitored power consumption in single-phase electrical installations are the main causes of electronic equipment damage and energy inefficiency in households. Conventional monitoring methods are often limited and do not provide real-time information for preventive actions. Therefore, this study designs a "Smart Monitoring of Single-Phase Electricity Based on Internet of Things (IoT)" system to measure electrical parameters and provide early warnings. This system utilizes the ESP32 microcontroller as the main control center due to its advantages in Wi-Fi connectivity. The PZEM-004T sensor is used to measure voltage, current, power, and energy precisely. Measurement data is displayed on a 1.3-inch OLED screen and transmitted wirelessly to a mobile application for remote monitoring. As a substitute for automatic circuit breaker protection, this system focuses on early detection; the system will send instant notifications to the user if anomalies are detected, such as current surges or unstable voltage. This design aims to improve energy efficiency and electrical safety awareness by allowing users to monitor power usage and respond to potential issues quickly.
Design of an Arduino Uno-Based Automatic Bird Repellent System for Rice Fields Using Radar Technology Rania Aisyka; Jamil Abdul Anas; Mohammad Rayhan Baras
Indonesian Journal of Electrical Engineering and Electronics Vol. 3 No. 2 (2026): 1. August 2026 Indonesian Journal of Electrical Engineering and Electronics
Publisher : Faculty of Engineering - Universitas Pembangunan Nasional Veteran Jakarta

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Abstract

Bird pest attacks in rice fields often cause a decline in harvest yields, causing losses for farmers. To overcome this problem, an Arduino Uno-based automatic bird repellent system with radar features that capable of monitoring repelling pests independently. This device integrating two HC-SR04 ultrasonic sensors for distance detection, three servo motors as mechanical drives, and a buzzer to produce sound effects. All of these components are controlled by an Arduino Uno microcontroller that processes sensor data to trigger an instant repellent mechanism when an object is detected. The implementation results prove that the system is capable of detecting bird movements in real-time and providing a quick response through a combination of servo movements and alarm sounds. This innovation offers an effective, efficient, and economical plant protection solution for farmers.

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