Sustainable smart forest monitoring system for burning forest and deforestation detection

Forests sustain the planet and provide air, soil, climate cycles. These ecosystem services enable economic sectors. Forests are under threat, last decade about 13 million of hectares of forests were deforested. A system to provide monitoring and prevention are needed to sustain the forest but only a...

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Main Authors: Darlis Denny, Sirait Dion Saputra Parulian, Maulana Dimas Bayu
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201819713023
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spelling doaj-331f963ccc914f82a7301cba16a58deb2021-02-02T02:37:04ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011971302310.1051/matecconf/201819713023matecconf_aasec2018_13023Sustainable smart forest monitoring system for burning forest and deforestation detectionDarlis DennySirait Dion Saputra ParulianMaulana Dimas BayuForests sustain the planet and provide air, soil, climate cycles. These ecosystem services enable economic sectors. Forests are under threat, last decade about 13 million of hectares of forests were deforested. A system to provide monitoring and prevention are needed to sustain the forest but only a few countries have implemented a smart forest system alike. By utilizing sensors, minimum wireless system and renewable energy will provide more accurate, real time, efficient energy and easy to maintain compare to the conventional conservation. Our proposed system will consist of low power camera and grid of fire and smoke detectors, humidity and temperature sensors connected each other as a mesh network and each powered by a solar panel and lithium battery processed by microcontroller then send data periodically to the monitoring server and gives precaution information when some case happened. The system use environment disguise and periodically maintain to ensure it works. While precaution information can be shared and access by government or even public, human act are needed to solve it. Thus it could assist the already implemented system and utilize the available resources as possible.https://doi.org/10.1051/matecconf/201819713023
collection DOAJ
language English
format Article
sources DOAJ
author Darlis Denny
Sirait Dion Saputra Parulian
Maulana Dimas Bayu
spellingShingle Darlis Denny
Sirait Dion Saputra Parulian
Maulana Dimas Bayu
Sustainable smart forest monitoring system for burning forest and deforestation detection
MATEC Web of Conferences
author_facet Darlis Denny
Sirait Dion Saputra Parulian
Maulana Dimas Bayu
author_sort Darlis Denny
title Sustainable smart forest monitoring system for burning forest and deforestation detection
title_short Sustainable smart forest monitoring system for burning forest and deforestation detection
title_full Sustainable smart forest monitoring system for burning forest and deforestation detection
title_fullStr Sustainable smart forest monitoring system for burning forest and deforestation detection
title_full_unstemmed Sustainable smart forest monitoring system for burning forest and deforestation detection
title_sort sustainable smart forest monitoring system for burning forest and deforestation detection
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Forests sustain the planet and provide air, soil, climate cycles. These ecosystem services enable economic sectors. Forests are under threat, last decade about 13 million of hectares of forests were deforested. A system to provide monitoring and prevention are needed to sustain the forest but only a few countries have implemented a smart forest system alike. By utilizing sensors, minimum wireless system and renewable energy will provide more accurate, real time, efficient energy and easy to maintain compare to the conventional conservation. Our proposed system will consist of low power camera and grid of fire and smoke detectors, humidity and temperature sensors connected each other as a mesh network and each powered by a solar panel and lithium battery processed by microcontroller then send data periodically to the monitoring server and gives precaution information when some case happened. The system use environment disguise and periodically maintain to ensure it works. While precaution information can be shared and access by government or even public, human act are needed to solve it. Thus it could assist the already implemented system and utilize the available resources as possible.
url https://doi.org/10.1051/matecconf/201819713023
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