The Global LiDAR Market size is estimated at USD 2.57 trillion in 2024, and is expected to reach USD 6.38 trillion by 2029, growing at a CAGR of 19.93% during the forecast period (2024-2029).
One of the primary factors augmenting the LiDAR market growth is the increasing use of LiDAR systems in UAVs, the use of LiDAR in engineering and construction applications, the use of LiDAR in geographical information systems (GIS) applications, the emergence of 4D LiDAR, and the loosening of regulations surrounding the use of commercial drones in various applications. The market's expansion is being held back by safety concerns around UAVs and autonomous vehicles, as well as the accessibility of affordable and lightweight photogrammetry devices.
The LiDAR Market is fragmented due to many large and small players churning the competition in the market. Through product and technology launches, strategic partnerships, acquisitions, expansion, and collaboration, these players try to gain a competitive edge in the market. Key players in the market are Sick AG, Teledyne Optech, Quanergy Systems Inc., Velodyne LiDAR, 3D Laser Mapping Ltd, Denso Corporation, etc.
In June 2022, the new Leica Chiroptera-5 bathymetric LiDAR sensor offers a 40% higher point density, a 20% improvement in water depth penetration, and better topographic sensitivity to produce more precise hydrographic maps. This most recent mapping technology improves the sensor's topographic sensitivity, point density, and depth penetration compared to earlier generations. The new technology provides high-resolution LiDAR data to assist various applications, including nautical charting, coastal infrastructure design, environmental monitoring, and risk assessments for landslides and erosion.
In May 2022, Optical Phased Array (OPA) technology from Quanergy Systems Inc., LiDAR sensors, and smart 3D solutions supplier successfully detected objects at a distance of 250 meters. This advances the path towards the productization of its S3 Series LiDAR, a true solid-state sensor using an industry-first, scalable CMOS silicon manufacturing process created for cost-effective, mass-market production by increasing the range demonstrated earlier in the year by 2.5 times what was demonstrated in 2021.
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