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Sistem Informasi Manajemen Energi untuk Meningkatkan Efisiensi dan Ketepatan Pengelolaan Konsumsi Energi di Bandara Daniel Arsa; Yudriqul Aulia; Yogi Perdana
Journal of Information System Research (JOSH) Vol 7 No 3 (2026): April 2026
Publisher : Forum Kerjasama Pendidikan Tinggi (FKPT)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.47065/josh.v7i3.9461

Abstract

Energy consumption recording (electricity, water, and fuel) at Sultan Thaha Airport Jambi currently relies on manual methods using spreadsheets. This process is prone to human error, data fragmentation, and hinders crucial energy efficiency analysis for airport operations. The need for data accuracy is becoming increasingly vital in line with the government's initiatives to tighten budget efficiency and drive digital transformation in public infrastructure. To support energy conservation policies and optimize operational costs, a more transparent and integrated monitoring system is required. This research aims to design and implement a web-based Energy Management Information System to address these challenges. Using the Waterfall development method, the system is built with a modern architecture utilizing React.js for a responsive interface, Express.js as the backend, and PostgreSQL for a scalable database management. Black Box testing results indicate that the system is valid and successfully provides an integrated solution through Dashboard Monitoring, Digital Input Validation, and centralized data reporting. The implementation of this system transforms energy governance from manual to digitally integrated, providing a solid foundation for airport management in making strategic decisions aligned with national budget efficiency and energy sustainability programs.
RANCANG BANGUN SISTEM SMART PARKING BERBASIS IoT DENGAN MONITORING REAL-TIME MENGGUNAKAN ESP32 DAN APLIKASI WEB Erlan Syahputra; Muh Subhan; Yogi Perdana
Jusikom : Jurnal Sistem Komputer Musirawas Vol. 11 No. 1 (2026): Jurnal Sistem Komputer Musirawas JUNI
Publisher : LPPM UNIVERSITAS BINA INSAN

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32767/jusikom.v11i1.3197

Abstract

Limited parking availability and manual parking management often cause various problems, such as inefficient land use, difficulties in finding parking spaces, and increased risks of vehicle loss due to the absence of proper access control. This condition also forces users to spend more time searching for parking, which can increase fuel consumption and carbon emissions. To address these problems, this research designs and develops an Internet of Things (IoT)-based Smart Parking system using ESP32, ultrasonic sensors, RFID, and a web application. The system was developed using the Prototype method, which consists of requirements analysis, system design, implementation, and system testing. The results show that the system is able to detect vehicle presence, manage user access, identify the use of more than one parking slot by the same user, and display real-time parking information through the web application. Based on the testing results, all system functions operate properly, with an average response time of 1.8 seconds and a reliability level of 99.44%. The developed system successfully supports parking management by making it more organized, secure, and efficient