U.S. Navy Demonstrates USV Refueling At Sea Using Robotic Towed Connector
The U.S. Navy’s NAWCWD has successfully demonstrated USV refueling at sea using a Robotic Towed Connector, advancing autonomous surface vessel operations.
The U.S. Navy’s NAWCWD has successfully demonstrated USV refueling at sea using a Robotic Towed Connector, advancing autonomous surface vessel operations.
Maritime Tactical Systems, Inc. (MARTAC) announced a manufacturing partnership with Intrepid Powerboats, a Florida-based premium boatbuilder. The collaboration gives MARTAC the ability to scale production
Maritime Tactical Systems, Inc. (MARTAC) announced that its T38 Devil Ray unmanned surface vessel (USV) has completed a record-setting 8-day, completely autonomous mission off the
MARTAC signed a tripartite memorandum of understanding (MoU) with NCSIST and Confucian for co-development and manufacturing cooperation of MARTAC’s Unmanned Surface Vehicle (USV) systems in
American special forces trained with drone boats in Subic Bay during recent exercises with the Philippines, bringing what the U.S. Department of Defense previously described
The new Autonomous Launch & Recovery System (ALARS) allows medium-sized USV to deploy and recover smaller USV, facilitating unmanned swarming missions. Martac press release On
The U.S. has provided the Philippine Navy with a number of unmanned surface vehicles (USV) through foreign military financing to help defend Manila’s exclusive economic
MARTAC is set to manufacture hundreds of SUSVs (Smart USVs) in 2025 including the new Devil Ray T18, an easily transportable, stealthy System based on the high-performance Devil Ray architecture as part of their turnkey maritime security solution.
New maritime attack drone by MARTAC: The MUSKIE M18 is an attritable, low-cost USV with outstanding speed and payload capacity that provides an asymmetric advantage in modern naval engagements.
The Royal Australian Navy (RAN) wrapped up exercise Autonomous Warrior 2022 (AW22) on May 27th after nearly two weeks of experimentation with unmanned systems.