
The USGS Hawaiian Volcano Observatory has released a new map…
Sixteen wavelengths in an open excavation Researchers from Aarhus University…
The Open Geospatial Consortium (OGC) is excited to announce the…
The following is the full-length Q&A with Reality Capture Network…
R-CON 2026, the annual conference produced by Reality Capture Network…
Building the terrain from archival records BlackMill Games has released…
Point cloud to TIN workflows are essential for transforming lidar…
Indian heritage preservation is evolving rapidly as geospatial technologies transform…
UAV vs terrestrial lidar is an ongoing question in forest…
Editor’s Note: Autonomous navigation lidar is enabling machines to understand…
Using high-resolution drone-based lidar, researchers uncovered the layout of a…
Editor’s Note: The Klamath River lidar project is capturing one…
Editor’s Note: Lidar is helping researchers better understand landslides along…
Commercial UAV Expo Announces Second Keynote: Two Skies, One Conversation…
Advanced airborne lidar is transforming gold rush mapping in Victoria,…
CyArk has launched the America 250 Tapestry Collection, a digital…
For Vivid Sydney’s Creative Technology After Dark, lidar scanning was…
The Liberty Bell Digital Twin Project recently created the first…

SALT LAKE CITY, UT – USA, September 9, 2026 – Organizers of Geo Week, the premier conference and trade show for geospatial and mapping professionals, have announced their Strategic Partnerships for 2027, comprised of Event Partners, Industry Partners, and Supporting Partners. Each partnership plays a pivotal role in bolstering the event’s success and bringing together…
For decades, lidar has been extraordinarily good at answering one question: where is it in three-dimensional space? A pulse of laser light leaves a sensor, strikes a surface and returns. Measure the time between those events precisely enough and the result is an accurate three-dimensional representation of terrain, vegetation, buildings and infrastructure. But today, researchers…
Sixteen wavelengths in an open excavation Researchers from Aarhus University and Moesgaard Museum have developed a multispectral imaging rig that uncovers hidden stratification directly inside active excavation trenches. The prototype illuminates vertical soil sections using sixteen distinct narrow-band light-emitting diode wavelengths, sweeping sequentially from near-ultraviolet through visible bands to near-infrared. Rather than relying on broadband…