cover
Contact Name
Nurhayati
Contact Email
nurhayati@unesa.ac.id
Phone
+6287854127188
Journal Mail Official
inajeee@unesa.ac.id
Editorial Address
Departement of Electrical Engineering Faculty of Engineering Universitas Negeri Surabaya
Location
Kota surabaya,
Jawa timur
INDONESIA
INAJEEE (Indonesian Journal of Electrical and Electronics Engineering)
ISSN : -     EISSN : 26142589     DOI : 10.26740/inajeee
INAJEEE or Indonesian Journal of Electrical and Eletronics Engineering (E-ISSN 2614-2589) is a scientific peer-reviewed journal issued by The Department of Electronics, Faculty of Engineering, Universitas Negeri Surabaya (UNESA). Accepted articles will be published online and the article can be downloaded for free (free of charge). INAJEEE is published periodically (2 issues per volume/year) with 5 articles each time published (10 articles per year). INAJEEE is free (open source) all to access and download. The journal includes developments and research in the field of Electronic Engineering, both theoretical studies, experiments, and applications, including: 1. Electronics Engineering 2. Power system Engineering 3. Telematics 4. Control System Engineering
Articles 5 Documents
Search results for , issue "Vol. 6 No. 2 (2023)" : 5 Documents clear
Creative Thinking in The Development of DHT11 Plug-and-Play Temperature Sensor System Baskoro, Farid; Suprianto, Bambang; Anifah, Lilik; Putra Nurdiansyah, Aristyawan; Rohman, Miftahur
INAJEEE (Indonesian Journal of Electrical and Electronics Engineering) Vol. 6 No. 2 (2023)
Publisher : Department of Electrical Engineering, Faculty of Engineering, Universitas Negeri Surabaya

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26740/inajeee.v6n2.p43-48

Abstract

The emergence of IEEE 1451 is proof that plug-and-play can solve compatibility problems experienced by a variety of different sensors when accessing communication. The plug-and-play system makes it easy for users to innovate, add, remove or replace sensors. The convenience offered by the plug-and-play system requires researchers to be able to think creatively from the aspect of flexibility to implement plug-and-play which is integrated with the DHT11 temperature sensor so that the sensor can be directly connected to the interface. This study shows a plug-and-play process developed by a scanning process to find connected PORTs without having to do configuration, showing a comparison of the DHT11 error value with a comparator that reaches 0.628% in temperature values and 0.428% in humidity values. This study also shows 120 monitoring data of temperature and humidity values for one month obtained from the interface that has been made
Distance Detection in the Sport of Petanque Using the VL53L0X Time-of-flight Rizki Rizaldy, Moch. Fahmy; Anifah, Lilik
INAJEEE (Indonesian Journal of Electrical and Electronics Engineering) Vol. 6 No. 2 (2023)
Publisher : Department of Electrical Engineering, Faculty of Engineering, Universitas Negeri Surabaya

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26740/inajeee.v6n2.p30-38

Abstract

Technology as a means to facilitate human activities is currently being applied in various fields of activity due to its rapid development. The implementation of technology has also penetrated the field of sports as a physical activity and as a solution for human physical health. Sports progress is based on the optimal state of human resources, facilities and management. With technology in the world of sports, more advanced sports are also in harmony with existing technological developments. In other sports, technology has been utilized to support and optimize the course of the sport, for example, in football with VAR and badminton with hawk-eye. Therefore, the sport of petanque, which was first popularized in Indonesia at the Sea Games in Palembang, has the potential to develop various improvements through the use of technology. The urgency faced is at the stage of measuring the distance of the ball to decide on awarding points to the team that is entitled to a Petanque match. The measuring devices and methods used are still conventional and have the potential to produce inaccurate distance values and decisions. The accuracy of the distance measurement results obtained using conventional tools and methods is questionable and raises doubts due to various factors. With the existence of distance measurement technology, it will help the referee's performance as a Petanque match court in making point decisions. The use of the VL53L0X time-of-flight (ToF) sensor has great potential because it has the advantage of good accuracy and is not affected by noise that affects the measurement results. By using the Arduino Uno R3 as a regulatory and process microcontroller and a KY-008 laser to direct and indicate the ToF sensor right at the target object. From the tests carried out, it was found that the maximum accuracy value of the prototype reached 98.45% with a standard deviation of 3.01.
Digital Queue Prototype at West Denpasar Auxiliary Health Center Agus Mahabojana Dwi Prayoga, Kadek; Dika Nugraha, Made; Gunantara, Nyoman
INAJEEE (Indonesian Journal of Electrical and Electronics Engineering) Vol. 6 No. 2 (2023)
Publisher : Department of Electrical Engineering, Faculty of Engineering, Universitas Negeri Surabaya

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26740/inajeee.v6n2.p39-42

Abstract

In the growing era of digitalization, the use of technology is a solution to improve the efficiency of health services. Health centers often face the problem of long and irregular queues. A promising solution is the use of an Arduino Uno-based digital queue. This system allows patients to register electronically through a counter or mobile app. After registration, the patient is given a queue number which is displayed on the LCD screen. The advantage of this system is that it reduces patient waiting time, improves service efficiency, and helps medical staff manage queues better. This research aims to create an Arduino Uno-based digital queuing system at the Dauh Puri Sub-Community Health Center in West Denpasar. This tool consists of Arduino Uno, thermal printer, LCD display, speaker, and wireless push button at the counter. Testing shows that all devices are well integrated, providing timely responses. In conclusion, the Arduino Uno-based digital queue can improve efficiency and patient satisfaction at the health center.
Development of A Surveillance And Remote Control System Based On ESP-Now For The ATSV Prototype (Autonomous Tourism Surface Vessel) Fikri Firmansyah; Diptya Widayaka, Parama
INAJEEE (Indonesian Journal of Electrical and Electronics Engineering) Vol. 6 No. 2 (2023)
Publisher : Department of Electrical Engineering, Faculty of Engineering, Universitas Negeri Surabaya

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26740/inajeee.v8n2.p49-55

Abstract

Indonesia, as an archipelagic country, has great potential in the marine tourism sector. One of the efforts to develop maritime technology is through the National Unmanned Fast Boat Contest (KKCTBN), which aims to encourage innovation in unmanned ship manufacturing. This research aims to design and implement a GPS surveillance system and remote steering control on the Autonomous Tourism Surface Vessel (ATSV) prototype by utilizing ESP-NOW wireless communication technology. The system uses an ESP32 microcontroller, a NEO-6M GPS sensor, and a joystick module as part of the hardware, as well as ESP-NOW as a communication protocol to overcome the limitations of internet connectivity in the ocean area. Ship position data is sent in real-time to Thingspeak servers for remote monitoring. The test results show that the system can transmit GPS data with good accuracy and control the ship's direction responsively at a distance of up to 50 meters using an external antenna. Tests also show that the system can function well in various communication conditions and is reliable in monitoring and controlling ATSV vessels in real-time. This system is expected to contribute to innovation in the maritime world, especially in the context of developing unmanned ships that compete in the KKCTBN. Keywords: Autonomous Tourism Surface Vessel (ATSV), KKCTBN, ESP-NOW, GPS surveillance, steering control, Thingspeak, ESP32, NEO-6M GPS sensor
Implementation of Mobile Network-Based Unmanned Aerial Vehicle (UAV) Telemetry for Ground Control Station (GCS) Monitoring Maharani, Hastaria Willis; zuhrie, M. Syarieffuddien
INAJEEE (Indonesian Journal of Electrical and Electronics Engineering) Vol. 6 No. 2 (2023)
Publisher : Department of Electrical Engineering, Faculty of Engineering, Universitas Negeri Surabaya

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26740/inajeee.v8n2.p56-62

Abstract

This research focuses on cellular network-based Unmanned Aerial Vehicle (UAV) telemetry used to monitor the Ground Control Station (GCS) in the Long Endurance Low Altitude (LELA) division of the Indonesian Flying Robot Contest (KRTI). This research aims to implement a cellular network telemetry work system which then the value of the Received Strength Signal Indicator (RSSI) on the Unmanned Aerial Vehicle (UAV) is compared during aerial and land conditions, Pixhawk and RaspberryPi3 as a microcontroller of the Unmanned Aerial Vehicle (UAV). The Received Strength Signal Indicator (RSSI) test shows the signal strength received in an aerial state as far as 500 meters and an altitude of 100 meters from the surface is -61 dBm and the Unmanned Aerial Vehicle (UAV) in the land shows the Received Strength Signal Indicator (RSSI) results of -39 dBm. (RSSI) of -39 dBm. The Received Strength Signal Indicator (RSSI) value during aerial and land conditions shows that the signal is classified as very good for receiving and sending data. The conclusion of this research is that cellular network telemetry is effectively used in a long range and is expected to facilitate sending and receiving data for all types of Unmanned Aerial Vehicles (UAV). Keywords: Unmanned Aerial Vehicle (UAV), Received Strength Signal Indicator (RSSI), Ground Control Station (GCS), Telemetry.

Page 1 of 1 | Total Record : 5