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Lidar change detection (LCD) is one of the most capable techniques for mapping changing terrain through time. It can be applied in billion-dollar decisions to design, build and operate tunnels, bridge...

This study in Malaysia explores the use of sensor-acquired 3D point clouds as the basis for high-quality visualizations for the smart city subsurface. 3D city models are used as the underlying base fo...

The arrival of unmanned aerial vehicles (UAVs or ‘drones’) has democratized the Lidar market forever. Everyday projects can be flown easier and faster, and sensors are getting lighter, more accura...

TLS and SfM photogrammetry have been used for the geodetic surveying and 3D mapping of the Ochtiná Aragonite Cave in Slovakia. This world-famous karst landscape of significant geological, geomorpholo...

The use of UAV-Lidar is being tested in the complex terrain of the Chernobyl Exclusion Zone. The aim of the University of Bristol team is to demonstrate that, in the event of a nuclear incident, it co...

With a total length of 2,789km, the Trans-Sumatra Toll Road Project is one of Indonesia’s National Strategic Projects and the longest toll road project in Southeast Asia. In order to keep the projec...
As governments increasingly rely on high-quality geospatial intelligence to support policy-making, infrastructure planning and risk management, accurate elevation data has become a strategic resource....
As cities and regions push for richer spatial data while keeping flight time and costs under control, airborne mapping systems are under pressure to deliver more with less. Against that backdrop, Leic...
In response to continuously growing demand for high-resolution aerial data, Kavel 10 has expanded its aerial mapping capacity with the acquisition of three UltraCam Osprey 4.2 large-format cameras. Th...
In an investment that underscores the firm’s long-term commitment to innovation and high-quality data delivery for clients nationwide, McKim & Creed continues to strengthen its geospatial capabiliti...
Planet Labs has secured a multi-year agreement with the Swedish Armed Forces to rapidly deliver a suite of satellites, space-based data and situational awareness solutions in support of Sweden’s pea...
Itochu, Wingcopter’s authorized partner in Japan, has signed a Memorandum of Understanding (MOU) with PASCO and YellowScan Japan to accelerate the practical deployment of long-range drone technology...
Remote sensing is a fascinating field that revolves around the acquisition of Earth-related information without direct physical contact. It typically yields either point cloud data or imagery, both of which are subsequently processed within the realm of geographical information systems, playing a pivotal role in the field of cartography.
One of the defining characteristics of remote sensing lies in the differentiation based on the platform and sensor employed. The platforms used for remote sensing can span a wide spectrum, encompassing everything from orbiting satellites to high-flying aircraft, nimble drones, ground-based vehicles like cars, and even seafaring ships. Meanwhile, from a sensor perspective, remote sensing is an expansive domain that includes techniques such as photogrammetry, lidar, and echosounding, each offering unique insights into our planet.
It's worth noting that the transformation of remotely sensed data into comprehensible and valuable products often necessitates a process known as ground truthing, which helps to validate and refine the collected information. This multifaceted field of remote sensing continues to evolve, unlocking new ways to observe and understand our world from a distance.