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Some of the hundreds of locations where you`ll find Micro Pulse LiDAR instruments at work. A rooftop at NASA Goddard Space Flight Center a Himalayan base camp the sky over the Sierra Nevadas the deck of an icebreaker in the fleet of the Korean Polar Research Institute the Port of Newcastle, Australia Bariloche Airport in Argentina.
So, what is the next step for USV technology? Developing larger, longer endurance USVs and taking them beyond shallow waters. OceanAlpha has continued its quest to develop autonomous vessels, integrating them with multibeam sonar, sub-bottom profilers, side scan sonar, CTD, SVP, and LiDAR capabilities for the oceanographic survey community. OceanAlpha’s USVs have been placed with lead users in the markets and have been applied from coastal oceanographic surveying to open sea areas, including the Antarctic...
Many scientific studies have proclaimed the feasibility of using a LIDAR to detect wildfires. As a LIDAR manufacturer with more than a decade of experience, Raymetrics has begun working to turn this scientifically proposed method into a reality using a modified 3D scanning LIDAR.
LDI laser remote sensing technology provides users with the tools to conduct broad and accurate environmental surveys of both water and ground in stressed environmental zones, which makes our products especially suitable for oil spill response operations. The technology is based on the Laser Induced Fluorescence (LIF) and realized by the Fluorescent Lidar Systems – FLS (LiDAR – Light Detection And Ranging).
Aerosol LIDARs can provide visibility measurement, including Slant Visual Range (SVR - visibility up the glide slope), Runway Visual Range (RVR), and Vertical Optical Range (VOR - visibility at the decision point). LIDARs offer remote detection, augmenting current sensors wherever visibility is an issue, including for airports, ports, and oil platforms. Using the same principle, they are also capable of detecting incoming fog.
Unwanted liquid hydrocarbon releases from oil refineries and pipelines, as well as transportation facilities are critical infrastructure integrity/safety and environmental health concerns. Real-time sensing of these releases has to deal with complex natural and anthropogenic targets usually containing a multitude of substances producing overlapping signals. Using Laser Induced Fluorescence (LIF), LDI LiDARs are able to deal with these complex environmental factors and still detect and quantify unwanted releases...
Ocean Visuals Oil in Water Locator (OWL™) System is built on patented Hyper-spectral Laser-Induced Fluorescence (HLIF) LiDAR sensors, capable of detecting hydrocarbons on a molecular level, part-per-million (ppm). OWL™ offers real-time detection, verifica
Accurate profiling of atmospheric temperature and humidity is a prerequisite for many meteorological studies, including nowcasting, model evaluation, and assimilation. Unfortunately, existing instrumentation lacks either the temporal or vertical resolution required for such application. To fill this gap, Raymetrics S.A., a global leader in lidar (lidar detection and ranging) technology, is developing a new state-of-the-art temperature and humidity lidar instrument. Based on the lidar technique the new product can...
The Raman spectroscopy technique has been developed by scientists in the laboratory for remotely detecting specific gases in the atmosphere. Raymetrics has received sufficient industry interest to begin turning this technique into an operational product.
3D scanning LIDARs are now being used by open-pit mines and other heavy industries to track and better understand airborne pollution problems. Since 2011 Raymetrics has been providing remote dust tracking services to industry.
Relative humidity (RH) is a crucial parameter for atmospheric research and Meteorology, as it represents the current state of water vapor and ambient air related to saturation. The interest in the role of RH in the modification of aerosol, precipitation and cloud microphysics, including CCN formation, has recently increased mainly due to the crucial role of aerosol–cloud interactions in climate change. Raymetrics Lidars offer 24/7 monitoring of Atmospheric RH.
Since beginning operations in 2002, Raymetrics core clients has been the atmospheric research community. The company has since maintained close ties with academia over the years in order to continue developing high-innovation products suitable for top quality research.
The Planetary Boundary Layer (PBL) is important for everything from climate to air quality studies. LIDARs with high spatial and temporal resolution can monitor the PBL in a high amount of detail using aerosols as tracers.