
A new lidar system developed by researchers at the University…
As consolidation reshapes the industry, the future of lidar and…
Voyant Photonics Introduces Industry’s First Fully Solid-State 4D FMCW LiDAR,…
IM Motors Automotive Vision with 3D Lidar The IM Motors…
David S. Hall Announces Cam-Lidar Technology For Drone Defense Revolutionary…
Advances In LiDAR And Radar Accelerate Driving Autonomy – Forbes…
This article was written in collaboration with Iain Clarke, Senior…
Lidar News is hosting a free expert panel webinar on…
Volkswagen autonomous shuttles are moving closer to real-world deployment thanks…
The General Robotics Lab at Duke University has introduced WildFusion,…
Rethinking Lidar at the Human Scale Sony’s recent announcement of…
OxTS launches WayFinder and LiDAR Boost for GNSS-denied localisation FOR…
Mark Rober, a former NASA engineer and renowned science communicator,…
SBG Systems Introduces New GNSS Receiver Variants for Navsight, Apogee…
Mercedes-Benz Partners with Hesai Lidar Hesai Technology, a Shanghai-based leader…
SBG Systems unveils the new Ellipse: a leap in performance…
Big Machine Autonomy: A Growing Industry Big machine autonomy is…
News From the Moon Today’s post about Navigation Doppler Lidar…

Point cloud to TIN workflows are essential for transforming lidar data into terrain models used in surveying and civil engineering. Mach9’s latest release brings surface generation, editing, quality assurance, and LandXML export into a single workflow, reducing software handoffs and helping teams move more efficiently from point cloud to engineering-ready deliverables. Surveyors and engineers routinely…
A stopped vehicle inside a tunnel, a worker entering an equipment path, debris in a rail corridor, bridge movement after a flood, and slope movement during heavy rainfall all share the same monitoring problem: the information is most valuable when it can be measured, interpreted, and acted on quickly. Real-time LiDAR monitoring uses three-dimensional measurements…
Indian heritage preservation is evolving rapidly as geospatial technologies transform how historical sites are documented, analyzed, and restored. From photogrammetry and lidar to advanced imaging techniques, conservation professionals can now create highly accurate digital records without disturbing fragile structures. These tools not only improve restoration planning but also preserve permanent digital archives of monuments threatened…