Innovative airship design for real-time air quality monitoring using IoT technology

The effect of poor air quality on human health has been linked to both short-term and long-term exposure to air pollutants. One of the most important steps in reducing emissions is accurate identification of these pollutants. This can be achieved by using Internet of Things equipped remotely operate...

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Published inJournal of Applied Engineering Science Vol. 22; no. 4; pp. 727 - 738
Main Authors Sudhir, Jain, Sundaramahalingam, Athimoolam, Sudhagara, Rajan, Muthiya, Solomon, Chethan, K.N., Laxmikant, Keni
Format Journal Article
LanguageEnglish
Published 2024
Online AccessGet full text
ISSN1451-4117
1821-3197
DOI10.5937/jaes0-51157

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Abstract The effect of poor air quality on human health has been linked to both short-term and long-term exposure to air pollutants. One of the most important steps in reducing emissions is accurate identification of these pollutants. This can be achieved by using Internet of Things equipped remotely operated airships that can survey large areas and gather pollution data. The ability of an airship to function at low altitudes for extended periods is the main design requirement of airships. This study describes a methodology for conceptualizing and building a helium-filled blimp for remote measurement of atmospheric pollutants (Carbon monoxide, Carbon dioxide, and Sulphur dioxide), temperature, and pressure. An onboard telemetry system measures the data while the airship is in flight and transmits them in real time to a ground-based station. The experiment showed that remotely operated airships are capable of gathering air data and their quality, enabling environmental scientists and regulatory agencies to better understand the behaviour of air pollutants and take steps to mitigate them.
AbstractList The effect of poor air quality on human health has been linked to both short-term and long-term exposure to air pollutants. One of the most important steps in reducing emissions is accurate identification of these pollutants. This can be achieved by using Internet of Things equipped remotely operated airships that can survey large areas and gather pollution data. The ability of an airship to function at low altitudes for extended periods is the main design requirement of airships. This study describes a methodology for conceptualizing and building a helium-filled blimp for remote measurement of atmospheric pollutants (Carbon monoxide, Carbon dioxide, and Sulphur dioxide), temperature, and pressure. An onboard telemetry system measures the data while the airship is in flight and transmits them in real time to a ground-based station. The experiment showed that remotely operated airships are capable of gathering air data and their quality, enabling environmental scientists and regulatory agencies to better understand the behaviour of air pollutants and take steps to mitigate them.
Author Sudhagara, Rajan
Sundaramahalingam, Athimoolam
Muthiya, Solomon
Laxmikant, Keni
Sudhir, Jain
Chethan, K.N.
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Cites_doi 10.1017/aer.2023.37
10.2514/1.34858
10.2514/1.14796
10.3390/aerospace9010008
10.1016/j.paerosci.2021.100741
10.5194/amt-15-3827-2022
10.2514/6.2008-8853
10.1016/j.paerosci.2009.03.001
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