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Teknologi Rancang Bangun Generator Pelindung Lutut Berbasis Biomekanik Untuk Pembangkit Energi Listrik Portable Guna Mendukung Operasional Militer di Lapangan Sugiarta, Andik; Kasiyanto, Kasiyanto; Widiatmoko, Dekki; Syafaat, Mokhammad; Achmad, Afif; Asif, Iqra
Jurnal Bumigora Information Technology (BITe) Vol. 5 No. 2 (2023)
Publisher : Universitas Bumigora

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30812/bite.v5i2.3649

Abstract

Background: In the 5.0 era which depends on electrical energy, innovation is needed to overcome the limitations of batteries in electronic devices. An innovative device has been created that uses knee joint movement to produce renewable energy.Objective: Knee movements are converted into electrical energy through a special gearbox that rotates a generator, converting the energy to a power bank as a storage medium.Methods: This study used an experimental method.Result: This research produces 5.6 Watts of power, providing an eective solution for charging batteries in mobility conditions.Conclusion: By utilizing knee joint movements and biomechanical analysis, this tool can utilize dierences in force, angle and speed of movement to produce the required electricity.
Web-Based Pistol Storage Security Monitoring System Optimization for Database Effectiveness Lukman Nur Rokhim, Ahmad; Syafaat, Mokhammad; Kasiyanto, Kasiyanto; Widiatmoko, Dekki; Sridaryono, Aguk
Jurnal Bumigora Information Technology (BITe) Vol. 6 No. 2 (2024)
Publisher : Universitas Bumigora

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30812/bite.v6i2.4570

Abstract

Background: Gun storage security is an important aspect in supporting operations, but manual monitoring often creates obstacles to the effectiveness and accuracy of gun storage data management. Objective: The purpose of this study is to optimize the gun storage security monitoring system with web-based technology to improve the effectiveness and accuracy of the database. Methods: The method used in this study is the development of a web server-based system that is integrated with real-time monitoring features, automatic notifications, cloud-based data storage to facilitate data access and tracking. Result: The results of this study are the creation of a system that is able to improve the accuracy and responsiveness of gun storage monitoring, as well as improve the efficiency of database management. Conclusion: In conclusion, the implementation of this web-based system has the potential to reduce security risks and significantly increase the effectiveness of monitoring in gun storage.
A Rancang Bangun Sistem Pengendali Lampu Jalan Otomatis Berbasis Sensor Cahaya dan Mikrokontroler Arduino: Pengendali Lampu Jalan Otomatis Wahyu Imam Fauzi Wibisono; Syafaat, Mokhammad; Kasiyanto; Widiatmoko, Dekki; Maulana, Rafi
Electrician : Jurnal Rekayasa dan Teknologi Elektro Vol. 18 No. 3 (2024)
Publisher : Department of Electrical Engineering, Faculty of Engineering, Universitas Lampung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.23960/elc.v18n3.2700

Abstract

Analisis Komparatif Implementasi Robot Line Follower: Studi Literatur Perbandingan Sistem Berbasis Mikrokontroler Arduino dan Sistem Analog Tanpa Mikrokontrole Afifuddin, Afifuddin; Sukamdani, Sukamdani; Syafaat, Mokhammad
Jurnal Elkasista Vol 5 No 2 (2024): Jurnal Elkasista
Publisher : Pustaka Poltekad

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.54317/elka.v5i2.685

Abstract

This study presents a comparative analysis of line follower robot implementation by examining two primary system approaches: Arduino microcontroller-based systems and analog systems without microcontrollers. Employing a qualitative descriptive method through literature review, this research synthesizes scholarly publications from reputable databases spanning 2018 to 2025. The analysis emphasizes key technical aspects, including sensor configurations, control algorithms (notably PID), power efficiency, as well as each system’s operational stability and adaptability. The findings reveal that Arduino-based systems excel in programming flexibility, multi-sensor integration, and ease of algorithmic modification. Nevertheless, these systems face challenges regarding power consumption and processing latency. Conversely, analog systems offer rapid response and high energy efficiency but lack flexibility in adapting to changing operational environments. This study establishes a conceptual framework for selecting line follower robot systems tailored to specific application requirements, whether for industrial, educational, or research purposes. The implications serve as strategic insights for the development of precise, efficient, and contextually appropriate robotic systems.
PROTOTYPE SISTEM TATA GUDANG OTOMATIS PADA GUDANG KAPORLAP DI SATUAN BEKANG TNI AD BERBASIS PLC Duwila, Muhamad Risal; Syafaat, Mokhammad; Kasiyanto, Kasiyanto; Irwansyah, Achmad Afif
Jurnal Informatika dan Teknik Elektro Terapan Vol. 12 No. 3 (2024)
Publisher : Universitas Lampung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.23960/jitet.v12i3.4604

Abstract

Logistik dalam konteks militer memegang peranan penting dalam keberhasilan operasi militer. Dalam kaitan ini, manajemen gudang sebagai pusat distribusi perbekalan dan peralatan mempunyai posisi yang strategis. Artikel ini mengusulkan solusi integratif yang menggabungkan otomatisasi dan pengawasan manusia dalam manajemen gudang logistik militer. Dengan memanfaatkan teknologi otomasi, sensor jarak, dan penggunaan Programmable Logic Controller (PLC), prototipe sistem gudang otomatis telah dikembangkan dan diuji. Teknologi ini memungkinkan pengelolaan penyimpanan, pemeliharaan, dan pengumpulan persediaan yang lebih efisien, sekaligus meminimalkan risiko interaksi langsung antara personel dan bahan berbahaya. Integrasi konveyor juga membantu proses penyimpanan dan pengiriman. Hasil pengujian menunjukkan tingkat keberhasilan yang menjanjikan, antara lain tingkat deteksi sensor jarak sekitar 95%, kinerja program PLC sesuai dengan rencana, dan tingkat keberhasilan pengiriman beban hampir 99%. Hal ini menunjukkan bahwa integrasi teknologi otomasi dengan pengawasan manusia dapat meningkatkan efisiensi dan keselamatan dalam pengelolaan logistik militer. Dengan menerapkan solusi ini, logistik militer diharapkan memperoleh manfaat yang signifikan dalam hal efisiensi, kesiapan operasional, dan keselamatan personel. Penggunaan teknologi otomasi terintegrasi dengan pengawasan menciptakan lingkungan gudang yang mudah beradaptasi, aman, dan efisien, yang mampu mendukung keberhasilan dalam berbagai operasi militer dan non-militer.
Sistem Kontrol Portable Fuel Transfers Pump Berbasis Android Untuk Efektifitas Pengisian BBM Helikopter Penerbad Imam Fauzi, Wahyu; Syafaat, Mokhammad; Widiatmoko, Dekky
Nucleus Journal Vol. 2 No. 1 (2023): May
Publisher : Universitas Darul Ulum

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32492/nucleus.v2i1.2105

Abstract

The Army Aviation Operations Task is carried out in remote areas that still have minimal airport services, the process related to refueling for aviation helicopters is an obstacle to the implementation of the main tasks of aviation. So a tool is needed to make the process more effective. In this study, a method is used to obtain data for quantitative research to prove the hypothesis. The method is known as the Development Life Cycle Waterfall Diagram and experimental research. Currently still using a hand pump, therefore a portable tool is needed and uses an electric pump. specifically for fuel controlled by Arduino and an Android application as an input for a filling command and can store filling data. In this case, the tool system uses supporting components, namely batteries, Bluetooth hc 05, 5v relays, and flow sensors. With the research of portable pump tools, the process can be more efficient than hand pumps. When refueling a helicopter, simply by inputting the filling value from the Android application, the filling is running and the filling data is stored in the Android file.