Natural disaster mitigation system with an IoT based TTGO T-Call V1.3 ESP32 wireless module microcontroller / Muhammad Fareez Asyraf Istas Fahrurrazi

The Natural Disaster Mitigation System project employs the TTGO T-CALL V1.3 ESP32 WIRELESS MODULE MICROCONTROLLER to develop an advanced monitoring system addressing deficiencies in Malaysia's current disaster monitoring infrastructure. Real-time environmental data is collected and transmitted...

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Main Author: Fahrurrazi, Muhammad Fareez Asyraf Istas
Format: Student Project
Language:English
Published: 2024
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/99768/1/99768.pdf
https://ir.uitm.edu.my/id/eprint/99768/
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spelling my.uitm.ir.997682024-12-17T17:55:26Z https://ir.uitm.edu.my/id/eprint/99768/ Natural disaster mitigation system with an IoT based TTGO T-Call V1.3 ESP32 wireless module microcontroller / Muhammad Fareez Asyraf Istas Fahrurrazi Fahrurrazi, Muhammad Fareez Asyraf Istas Wireless communication systems. Mobile communication systems. Access control Microelectromechanical systems The Natural Disaster Mitigation System project employs the TTGO T-CALL V1.3 ESP32 WIRELESS MODULE MICROCONTROLLER to develop an advanced monitoring system addressing deficiencies in Malaysia's current disaster monitoring infrastructure. Real-time environmental data is collected and transmitted to an HTTP server for analysis through the integration of sensors like accelerometers and ultrasonic devices The project utilizes the ESP32-WROVER-B microcontroller and incorporates the LAMP (Linux, Apache, MySQL, PHP) stack for comprehensive monitoring and response capabilities. The prototype system involves input and output components, including sensors, LEDs, buzzers, and an LCD display, with software specifications using Arduino IDE. The methodology entails gathering sensor data, evaluating it with a decision-making algorithm, triggering alarms, activating output devices, and transmitting data to the server via HTTP protocols. The expected outcomes include continuous monitoring, accurate anomaly detection, and timely alerts based on predefined thresholds, all facilitated by the robust data management capabilities of the LAMP 2024 Student Project NonPeerReviewed text en https://ir.uitm.edu.my/id/eprint/99768/1/99768.pdf Natural disaster mitigation system with an IoT based TTGO T-Call V1.3 ESP32 wireless module microcontroller / Muhammad Fareez Asyraf Istas Fahrurrazi. (2024) [Student Project] (Unpublished)
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Wireless communication systems. Mobile communication systems. Access control
Microelectromechanical systems
spellingShingle Wireless communication systems. Mobile communication systems. Access control
Microelectromechanical systems
Fahrurrazi, Muhammad Fareez Asyraf Istas
Natural disaster mitigation system with an IoT based TTGO T-Call V1.3 ESP32 wireless module microcontroller / Muhammad Fareez Asyraf Istas Fahrurrazi
description The Natural Disaster Mitigation System project employs the TTGO T-CALL V1.3 ESP32 WIRELESS MODULE MICROCONTROLLER to develop an advanced monitoring system addressing deficiencies in Malaysia's current disaster monitoring infrastructure. Real-time environmental data is collected and transmitted to an HTTP server for analysis through the integration of sensors like accelerometers and ultrasonic devices The project utilizes the ESP32-WROVER-B microcontroller and incorporates the LAMP (Linux, Apache, MySQL, PHP) stack for comprehensive monitoring and response capabilities. The prototype system involves input and output components, including sensors, LEDs, buzzers, and an LCD display, with software specifications using Arduino IDE. The methodology entails gathering sensor data, evaluating it with a decision-making algorithm, triggering alarms, activating output devices, and transmitting data to the server via HTTP protocols. The expected outcomes include continuous monitoring, accurate anomaly detection, and timely alerts based on predefined thresholds, all facilitated by the robust data management capabilities of the LAMP
format Student Project
author Fahrurrazi, Muhammad Fareez Asyraf Istas
author_facet Fahrurrazi, Muhammad Fareez Asyraf Istas
author_sort Fahrurrazi, Muhammad Fareez Asyraf Istas
title Natural disaster mitigation system with an IoT based TTGO T-Call V1.3 ESP32 wireless module microcontroller / Muhammad Fareez Asyraf Istas Fahrurrazi
title_short Natural disaster mitigation system with an IoT based TTGO T-Call V1.3 ESP32 wireless module microcontroller / Muhammad Fareez Asyraf Istas Fahrurrazi
title_full Natural disaster mitigation system with an IoT based TTGO T-Call V1.3 ESP32 wireless module microcontroller / Muhammad Fareez Asyraf Istas Fahrurrazi
title_fullStr Natural disaster mitigation system with an IoT based TTGO T-Call V1.3 ESP32 wireless module microcontroller / Muhammad Fareez Asyraf Istas Fahrurrazi
title_full_unstemmed Natural disaster mitigation system with an IoT based TTGO T-Call V1.3 ESP32 wireless module microcontroller / Muhammad Fareez Asyraf Istas Fahrurrazi
title_sort natural disaster mitigation system with an iot based ttgo t-call v1.3 esp32 wireless module microcontroller / muhammad fareez asyraf istas fahrurrazi
publishDate 2024
url https://ir.uitm.edu.my/id/eprint/99768/1/99768.pdf
https://ir.uitm.edu.my/id/eprint/99768/
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score 13.222552