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Desain Simulasi Interface Pistol G2 COMBAT Kal. 9 mm dengan Simulator Pimp My Gun Praditasari, Wibby Aldryani Astuti; Ariateja, Dananjaya; Fatmawati, Uvi Desi; Hutapea, Herwin Melyanus; Tjahjadi, Tjahjadi; Sunardi, Agus; David, Muhammad; Friskilla , Angelita; Dewanata, Pandhu
Jurnal Otomasi Kontrol dan Instrumentasi Vol 15 No 2 (2023): Jurnal Otomasi Kontrol dan Instrumentasi
Publisher : Pusat Teknologi Instrumentasi dan Otomasi (PTIO) - Institut Teknologi Bandung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.5614/joki.2023.15.2.3

Abstract

The development of firearms has been included as an introduction and use at the University of Defense. However, using firearms that are not used freely is a barrier for students to understand the ins and outs of firearms better. Therefore, in this research, firearms are replaced with interface simulation design. One firearm that needs to be designed for interface simulation is the G2 Combat pistol. The reason for using the G2 Combat pistol in making an interface simulation design is because the Indonesian armed forces have widely used it. The interface simulation design uses Pimp My Gun software. The method of designing the G2 Combat pistol interface simulation uses the waterfall method. The waterfall method is considered easy and systematic. After the interface simulation design is carried out, the results are compared with the original item or image, photo, and others. Assessment of the G2 Combat pistol interface simulation design with the original pistol by comparing and finding the level of similarity. The assessment results are 87.61% at imgonline.com and 86.14% at blue2digital.com. With two assessment results close to 100%, the G2 Combat pistol interface simulation design is successful. However, there still needs to be improvements so that the interface simulation design is even better in the future.
RANCANG BANGUN SISTEM SILENT COMMUNICATION MENGGUNAKAN CAHAYA LASER BERBASIS ARDUINO NANO UNTUK MENDUKUNG KOMUNIKASI TAKTIS PADA LINGKUNGAN MILITER Legowo, Danang; Rimbawa, H.A Danang; Hutapea, Herwin Melyanus
Pendas : Jurnal Ilmiah Pendidikan Dasar Vol. 11 No. 03 (2026): Volume 11 No. 03, September 2026 Release
Publisher : Program Studi Pendidikan Guru Sekolah Dasar FKIP Universitas Pasundan

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.23969/jp.v11i03.62128

Abstract

The advancement of military communication technology requires communication systems that are secure, difficult to detect, and resistant to Radio Frequency (RF) jamming. One promising alternative is Optical Wireless Communication (OWC) using laser light, which operates in the optical spectrum and is therefore immune to RF interference. This study aims to design and evaluate a laser-based Silent Communication system using an Arduino Nano for military communication applications. An experimental method was employed through the design, implementation, and testing of a prototype consisting of an Arduino Nano, a laser diode as the transmitter, and a light sensor as the receiver. Data transmission was performed using On-Off Keying (OOK) modulation over a Line-of-Sight (LOS) communication link. Experimental results show that the proposed system maintains a transmission rate of 15 bps. The system achieved a 100% Success Rate with a 0% Bit Error Rate (BER) at transmission distances of 5–200 m. At 300 m and 400 m, the Success Rate decreased to 93% and 86%, with BER values of 6.67% and 13.33%, respectively, due to reduced optical signal intensity. In addition, the system showed no significant performance degradation under RF interference because communication was conducted entirely through the optical spectrum. These results demonstrate that the proposed system was successfully implemented and provides Low Probability of Intercept (LPI) and Low Probability of Detection (LPD) characteristics, making it a promising alternative tactical communication solution for modern military operations.