This solution will reduce reliance on physical human presence and the use of video, sensors, Artificial Intelligence (AI) and machine learning in these in-cage vehicles will reduce the level of decision making for the human operator. This vehicle developed in the project will deploy on a periodic basis to perform inspections through various trophic levels. With a total project value of over $6.2 million, the Ocean Supercluster will provide $3 million with the balance coming from project partners. to create the new remote aquaculture monitoring solution. In Project Sentry, Deep Trekker will work with partner Visual Defence Inc. This new monitoring solution will enable the determination of where holes or tears in net cages have occurred using artificial intelligence, determine the position and volume of deceased fish in the cage, record photographs and video clips, as well as log the position and depth of in-cage issues for further assessment, all without operator intervention. This Ontario-led project is developing a new remote aquaculture monitoring solution using in-cage remote operated and autonomous vehicle technology.Ī key in sustainable open ocean aquaculture is the inspection and maintenance of quality net cages to minimize the risk of collapse, fish escapes, and ensure fish and ecosystem health over time. Today, Canada’s Ocean Supercluster announced five new projects with a total value of nearly $29 million, including Project Sentry. View map (small view and expanded view)ĭeep Trekker’s first mission planning release is a significant component of future fully autonomous missions.One of five Ocean Supercluster projects announced today In review users can conduct several useful tasks In addition to the information provided on the handheld controller during use, pilots can then save their missions to view at a later date, making analysis and review convenient. The ease in which operators can interact with their waypoints allows for quick organization and straightforward use. Modified with the joystick cursor control, users can conveniently interact with their waypoints in a variety of ways right from their handheld controller Clear and precise graphics illustrate the ROV throughout the site, enhancing the pilot’s ability to navigate in a straightforward manner.Ĭonsisting of latitudinal and longitudinal points, waypoints provide pilots with crucial mission planning information. With the entire mission mapped out on their screen, users can ensure thorough inspections with an accurate planning tool.įinally, operators can clearly understand the position of their ROV within the inspection site by utilizing their on-screen waypoint map. In addition to plotting waypoints on the handheld controller map, users can see the path between points.įurthermore, the use of mission planning allows pilots to visualize the size of their inspection site. In addition to being a crucial step towards autonomy, mission planning makes vehicle navigation convenient and straightforward.ĭeep Trekker’s mission planning software provides users with a useful tool to enhance their navigation and operation. Mission planning is an incredibly important feature for ROV pilots.
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