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Journal : TEPIAN

Nodemcu Based Prototype Tool for Noise Detection Florentinus Nino; Azahari; Awang Harsa Kridalaksana
TEPIAN Vol 2 No 2 (2021): June 2021
Publisher : Politeknik Pertanian Negeri Samarinda

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (275.477 KB) | DOI: 10.51967/tepian.v2i2.358

Abstract

Application of Prototype A tool for detecting noise based on NodeMCU is a prototype that can be used to detect sound noise and provide a warning if the sound exceeds the reasonable threshold that humans hear. The function of this system is to detect sound noise using the Analog Sound sensor V2. Then the data from the Analog Sound sensor V2 will be displayed in the form of a Led and if it has passed the threshold that humans hear, it will trigger turning on the buzzer as a warning and send automatically the decibel value, status and also if we want to check how much noise there is, we can type / telegram the sensor . Based on the data analysis carried out, Basically programming for building Prototype Tool for detecting noise based on NodeMCU using the C programming language with the help of Arduino IDE software and monitoring it using LED and Telegram. This research was made in order to facilitate controlling the noise in the environment.
Location Based Service for Important Locations in the Paser Belengkong District Azahari; Tommy Bustomi; Angga Setiawan
TEPIAN Vol 4 No 1 (2023): March 2023
Publisher : Politeknik Pertanian Negeri Samarinda

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (635.292 KB) | DOI: 10.51967/tepian.v4i1.2220

Abstract

Location-based service systems or better known as Location-Based Services (LBS) are information services in the form of geographic information accessed using a smartphone via a mobile network connection for precise mapping. This research focuses on profile information and routes for office locations, places of worship, health, schools, emergency places, markets, sports facilities and infrastructure, companies and ATMs in Paser Belengkong District with location points that utilize the Location Manager Application Programming Interface technology. (API maps) and Location Provider (API Location) from Google. The data collection method used was interviews by asking questions related to important location data in Paser Belengkong District. By way of observation, namely by making direct observations of the villages in Paser Belengkong District. In this research the system development method uses the waterfall and the testing techniques used are Black Box and Beta Testing. The supporting software used is Android Studio, Xampp, Sublime Text, Google Maps and software design using the Unified Modeling Language (UML) modeling system, Use Case Diagrams, Activity Diagrams, Sequence Diagrams and Class Diagrams. Test results by utilizing Location Based Service Technology which combines Geographic Information System, Internet Service
Location Based Service for Important Locations in the Paser Belengkong District Azahari; Tommy Bustomi; Angga Setiawan
TEPIAN Vol. 4 No. 1 (2023): March 2023
Publisher : Politeknik Pertanian Negeri Samarinda

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.51967/tepian.v4i1.2220

Abstract

Location-based service systems or better known as Location-Based Services (LBS) are information services in the form of geographic information accessed using a smartphone via a mobile network connection for precise mapping. This research focuses on profile information and routes for office locations, places of worship, health, schools, emergency places, markets, sports facilities and infrastructure, companies and ATMs in Paser Belengkong District with location points that utilize the Location Manager Application Programming Interface technology. (API maps) and Location Provider (API Location) from Google. The data collection method used was interviews by asking questions related to important location data in Paser Belengkong District. By way of observation, namely by making direct observations of the villages in Paser Belengkong District. In this research the system development method uses the waterfall and the testing techniques used are Black Box and Beta Testing. The supporting software used is Android Studio, Xampp, Sublime Text, Google Maps and software design using the Unified Modeling Language (UML) modeling system, Use Case Diagrams, Activity Diagrams, Sequence Diagrams and Class Diagrams. Test results by utilizing Location Based Service Technology which combines Geographic Information System, Internet Service