An AI pipeline developed by CSAIL researchers enables unique hydrodynamic designs for bodyboard-sized vehicles that glide underwater and could help scientists gather marine data.
Discover how Deep Trekker rigorously tests and evaluates IMU technologies, comparing MEMS and FOG systems to ensure precise underwater navigation for ROVs.
Discover the vital role of underwater positioning in marine science, and how remotely operated vehicles (ROVs) are leading the way in location tracking.
Discover the essential role of underwater positioning, and how remotely operated vehicles are advancing accuracy in underwater inspections and surveys.
This article introduces two sensing products. One enables wireless monitoring of water leaks, while the other allows monitoring of humidity and temperature in critical electronics.
Explore Loyola University's groundbreaking research using Pipe Trekker Crawlers to combat mosquito-borne diseases in sewer systems. Innovative techniques reshaping public health.
Learn how different industries can benefit from Deep Trekker’s proprietary BRIDGE technology that enhances ROV functionality for underwater operations.
Explore how Marine Science benefits from ROV technology to improve environmental monitoring and enhance research efforts for more efficient and precise results.
Commercial divers deliver human touch and problem-solving, while ROVs mitigate safety risks and reduce costs. They are most effective when used collaboratively.
Explore advanced underwater navigation tech with Deep Trekker ROVs. Learn about MEMS and FOG IMU, Dead Reckoning, and USBL integration for precise positioning.