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underwater robot
Trends
- 1New robot can fly, sail, and swim autonomously●Transformative new robot that can fly, sail, and swim autonomously https:// fed.brid.gy/r/https://www.pops ci.com/techno
A new multipurpose robot has been unveiled that can fly through the air, sail on the water's surface, and swim underwater, all autonomously. Reported by Popular Science, the vehicle combines three modes of travel in a single platform, pointing to potential uses in environmental monitoring, search and rescue, and ocean research. Coverage highlights how unusual it is for one robot to operate across air and water without human control.
- 2Oarfish's Joystick-Like Fins May Inspire Underwater Robots▼The Elusive Oarfish Has Joystick-Like Fins That May Inspire Future Underwater Robots
Scientists studying the oarfish, a rarely seen deep-sea fish, have found that its long, joystick-like pelvic fins may help it maneuver in the water. Researchers say the unusual fin design could inspire a new generation of underwater robots capable of precise movement at depth. The finding adds to growing interest in biomimicry for marine robotics.
- 3Woods Hole Oceanographic Institution Seeks Robotics Software Engineer▼Ocean Career: WHOI Robotics Software Engineer
The Woods Hole Oceanographic Institution is advertising a robotics software engineer position, listed through Ocean Career on EC Magazine. The opening reflects continued demand for engineers who can develop autonomous underwater systems and software for ocean research vehicles. Such roles support WHOI's work in deep-sea exploration, underwater robotics and marine science instrumentation.
- 4Oarfish fins inspire new large underwater robot▼Mysterious oarfish's fins inspire large underwater robot design
Engineers have designed a large underwater robot modelled on the oarfish, a deep-sea creature known for its long ribbon-like body and distinctive fin propulsion. The unusual anatomy of the fish, rarely seen alive, provides a template for efficient movement at depth. The project highlights how deep-sea biology continues to inform robotics, drawing attention from both science and technology audiences.
- 5New robot flies, sails and swims autonomously▼Transformative new robot that can fly, sail, and swim autonomously
A new multi-environment robot has been unveiled that can fly, sail on the surface, and swim underwater, all autonomously without human control. The vehicle, described by Popular Science as transformative, points to a growing trend in robotics toward machines that adapt to air, sea surface, and underwater environments, with potential uses in exploration, monitoring, and research.
- 6
MIT researchers have developed an aquatic robot driven by living muscle tissue, combining engineered materials with biological cells to power underwater movement. The work points to new possibilities for soft robotics and biomedical applications, and is drawing attention for its blend of synthetic and living components.
- 7Remote Subsea Operations Achieved Through USV and Underwater Robotics●Remote Subsea Operations Achieved Through USV & Underwater Robotics
A demonstration of fully remote subsea operations combining an unmanned surface vehicle with underwater robotics has been reported, allowing tasks to be carried out beneath the surface without a crewed vessel on site. The development points to growing interest in robotic systems for offshore inspection and maintenance work, reducing the need to put people at sea.
- 8
A new technical article examines how engineers are tackling the hardest problem in underwater robotics: supplying reliable power to vehicles operating deep below the surface. It outlines the main design hurdles, including energy density limits, pressure resistance, battery safety and endurance, and discusses emerging solutions such as improved battery systems and more efficient power management for subsea robots.