The Design of Directions and Shot Sound Distance Using Fuzzy Logic Method Based on Raspberry Pi

Authors

  • Rian Arbianto Prayogo Prodi Elkasista
  • Dekki Widiatmoko Jurusan Teknik Elektro Poltekad
  • Budi Harijanto Akademi Militer

DOI:

https://doi.org/10.54317/elka.v2iOktober.203

Keywords:

SS2-V1, Fuzzy Logic, Raspbery Pi 4

Abstract

Abstract - The rise of a shooting incident that occurred in the border areas of the Republic of Indonesia is a big loss for the state in terms of personnel. Technological developments can be used as an alternative in the military world to help the role of soldiers so as to reduce personnel losses. This study aims to create a system for detecting the direction and distance of gunshots. This study uses an experimental method. This gunshot detection system also applies the Fuzzy Logic Method which is applied to the Raspberry Pi 4 and Microphone Max 4466 which is expected to detect the direction and distance of gunshots. This Fuzzy Logic method is used as an inference system or decision maker according to the input given. Fuzzy Logic broadly consists of fuzzification, rule base, and defuzzification. Fuzzification is useful for input normalization, so that the input quantity is in accordance with the fuzzy magnitude, namely the value in the range 0 to 1. After that, enter the rule base where in this step, the input set is compared with the rules or provisions of sound decibels so that it can be classified whether the distance and the direction of the captured sound is in the data range that has been programmed, in this step the signal is analyzed how much decibel sound SS2-V1 is by the MAX 4466 sensor. The conclusion is done by defuzzification, so the final result is that the closest distance to a gunshot at 1 meter is 250 Decibels.

Author Biographies

Dekki Widiatmoko, Jurusan Teknik Elektro Poltekad

Kajur

Budi Harijanto, Akademi Militer

Dosen Jurusan Teknik

Published

2021-10-31