The global LiDAR Drone Market size
is expected to reach USD 372.5 billion by 2026 according to a new study by
Polaris Market Research. The demand for LiDAR drones is increasing
owing to its ability to collect the data points at a faster rate. Some features
offered by them include time and cost effectiveness, enhanced quality data, and
increased safety. These drones are adopted across diverse applications such as
transportation, forestry, hydrology, mining, and construction among others.
Agriculture sector is increasingly adopting these drones for improving yield
production, crop health management, and improving soil conditions.
Rotary
wing LiDAR drones dominated the global market in 2019. However, the demand for
fixed wing is expected to increase during the forecast period owing to longer
flight autonomy, larger area coverage, and improved output quality. Fixed wing
drones enables improved constant control of the main parameters influencing the
flight. They also offer enhanced aerodynamic performance, greater control of
image quality, and noise elimination
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The LiDAR
Drone Market is characterized by established companies and large giants. Owing
to technological advancements, and greater need to cater to customer
requirements, companies are collaborating in order to strengthen market
presence and gain market share. Broadening of product portfolio is another
trend that is visible in the industry. Some of the major market
participants include Geodetics, Inc., Faro Technology, Trimble Navigation
Limited, SZ DJI Technology Co. Ltd, Velodyne LiDAR, Inc., Phoenix LiDAR Systems,
UMS Skeldar, Teledyne Optech, Riegl Laser Measurement Systems GmbH, YellowScan,
OnyxScan, LiDARUSA, Delair, Sick AG, MicroDrones, Leica Geosystems AG, and 3D
Robotics, Inc.
The range
segment has been divided into is segmented into Short Range, Medium Range, and
Long Range LiDAR Drones. In Feb 2018, Delair, a major provider of commercial
drone launched Delair DT26X LiDAR UAV with RIEGL miniVUX-1DL sensor fully
integrated. The new offering is a long-range fixed wing drone equipped with
LiDAR sensing capabilities and integrated high resolution RGB (red, green,
blue) camera for improved precision and efficiency of surveying and 3D mapping.
Cameras
are a major component of LiDAR drones. They are used for capturing images of
environment or target objects and are generally upgraded with 3D sensing
technology. Efficient 3D cameras are found useful in site-surveying
applications to capture finer details. The 3D cameras used can capture
real-time videos. The 3D cameras are used for mapping and texturing across
diverse applications such as military, aeronautics, space research, earth
surface surveying, agriculture, and construction among others. The
technological advancements in imaging technology would contribute to adoption
of cameras with improved scan quality and response-time in LiDAR drones.
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The
demand for LiDAR drone is increasing from the construction sector. They are
becoming popular among engineers, planners and developers for land mapping and
construction activities. They assist in analysis, and strategic planning of
urban settlements. These are also used for construction progress photography
and topographic survey by construction and land surveying & development
companies. They also find applications in development of large scale projects
such as roads, railroads, canals, energy transportation lines, and piping.
Government and private firms engaged in construction, engineering and mining,
surveying land management and planning are likely to increase the demand of
LiDAR drones in coming years to optimize traffic flow, enhanced route planning
and design, detailed topographic models, and 3D modelling and reconstruction.
North
America emerged as the largest market in 2019 and is expected to maintain its
dominance over the forecast period. Rise in applications of LiDAR drones in
agriculture, mining, defense, and government sectors in the North American
region is the major driver for market growth. Rise in investment in the defense
sector, along with technological advancement in telecommunication industry is
expected to drive the market growth in North America during the forecast
period. Use of high-resolution imaging, and increasing use in environmental
control and pollution by government, and non-government organizations are
expected to raise the market investment.
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