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An electric aircraft commonly referred as piolet less aircraft with the capability to fly and stay
airborne without recuring any human onboard operator providing most cost efficient operation
than equivalent manned system and performing cost efficient critical mission without risking
human life, also referred as Unmanned Aerial Vehicle (UAVs). Unmanned Aerial Vehicle can
be remotely piloted, whereby control commands are provided from a ground base station
through a remote control. The Unmanned Aerial Vehicle are capable of performing the control
operation onboard through autopilot and different sensors such as Camera Module Sensor, RF
sensor. These sensors can be used for the application of fire extinction, border security and area
mapping. Wildfire are common phenomenon that occurs across the globe nowadays, hectors of
forest covers are burned down due to the fire. Effective detection and extinguish is a case of
prior importance for the social ecosystem. Meanwhile social harmony is also been disturbed due
to the intrusion of armies of other countries at the border. The software analysis of controller’s
used in Unmanned Aerial Vehicle with optimum sensors has been done using MATLAB. The
hardware implementation of the same has been carried out as two parts: where the mechanical
structure such as aerofoil, fuselage and wing has been designed and analysed using Solidworks.
Electrical components are arranged as per the applications required. The Electric aircraft has
been tested to achieve 60m height and the dropping mechanism has been tested to establish the
applications required.
Keywords:
Cite Article:
"Electric Aircraft for Border Security and Fire Extinction ", International Journal of Science & Engineering Development Research (www.ijrti.org), ISSN:2455-2631, Vol.8, Issue 6, page no.948 - 959, June-2023, Available :http://www.ijrti.org/papers/IJRTI2306143.pdf
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ISSN:
2456-3315 | IMPACT FACTOR: 8.14 Calculated By Google Scholar| ESTD YEAR: 2016
An International Scholarly Open Access Journal, Peer-Reviewed, Refereed Journal Impact Factor 8.14 Calculate by Google Scholar and Semantic Scholar | AI-Powered Research Tool, Multidisciplinary, Monthly, Multilanguage Journal Indexing in All Major Database & Metadata, Citation Generator