151 Martine Street,
Fall River, MA 02723
T: 508-678-0550
E: [email protected]
W: http://www.iver-auv.com/
CEO/President: Bob Anderson
Engineering Director: Jon Crowell
Number of Employees: 14
The Company
OceanServer Tecnology is the developer of the Iver family of modern, low-cost Autonomous Underwater Vehicles (AUVs). These robust, man-portable systems are ideal for survey, search and rescue, scientific and military applications in near-coastal water. The low, all-inclusive price (including mission planning and post mission analysis software) has enabled many organizations to add this technology into their equipment pool and survey methodology. OceanServer Technology, Inc. is a leading provider of man-portable Autonomous Underwater Vehicles (AUVs) with more than 200 AUVs deployed worldwide.
The Tech
The Iver AUV is designed to be an affordable, commercial vehicle used for general survey and sub-surface security work, and serves as a research platform for autonomy, behavioral and sensor development studies.
(As published in the July/Aug 2014 edition of Marine Technology Reporter - http://www.marinetechnologynews.com/Magazine)
Kongsberg Maritime Ltd announcesd it will add a number of Autonomous Underwater Vehicles (AUV) to its rental pool during 2013/14. The addition of AUV capability will further enhance the existing portfolio of Kongsberg’s rental equipment, which supports customers within the offshore oil and gas, environmental
(Directorate General – European Civil Protection and Humanitarian Aid Operations, DG-ECHO) aimed to join forces to make available a fleet of autonomous underwater vehicles (AUVs), unmanned aerial vehicles (UAVs) and unmanned surface vehicles (USVs) with operational capability to intervene against oil spills
Hydroid, Inc. – a part of Kongsberg Maritime’s autonomous underwater vehicles (AUV) group since its acquisition by Norwegian technology conglomerate Kongsberg Gruppen in 2008 – is a manufacturer of AUVs, including its signature REMUS vehicles. Hydroid founder Christopher von Alt’s knowledge of the intricate
Back in 2017, Ocean Infinity made a novel move; deploying six autonomous underwater vehicles (AUVs), instead of just one, from a single vessel, vastly increasing the ground that could be covered in a single survey. Now the firm is taking the use of remote, robotic systems a significant step further.Back in
Back in 2017, Ocean Infinity made a novel move; deploying six autonomous underwater vehicles (AUVs), instead of just one, from a single vessel, vastly increasing the ground that could be covered in a single survey. Now the firm is taking the use of remote, robotic systems a significant step further.Back in
As subsea power needs evolve, so to must the batteries that provide the power.Operators of autonomous underwater vehicles (AUVs) need longer survey runs, deeper dives, and lighter batteries, which result in lighter units in the water. Remotely operated vehicle (ROV) teams require electric-powered manipulators
OceanServer Technology, Inc. is a manufacturer of man-portable Autonomous Underwater Vehicles (AUVs), with more than 250 AUVs deployed worldwide. The Iver3 AUV is an affordable, COTs vehicle used for general survey, subsurface security work, MCM applications and serves as a research platform for a variety
His explorations have taken on many forms, but pushing the boundaries with new technology has been a consistent driving force, and the use of Autonomous Underwater Vehicles (AUVs) is a logical path in his underwater exploration. His most recent accomplishment was the discovery, exploration, and documentation
wide variety of ocean observation platforms including: shipboard profiling or towed sensor arrays, fixed-depth or vertical profiling moorings, autonomous underwater vehicles and gliders. It also provides environmental data collection and analysis software, environmental and ocean engineering consulting services
1 was built by Sias-Patterson, Inc., a small business in Yorktown, Va., devoted to the design and manufacture of commercial off-the-shelf Autonomous Underwater Vehicles. Northrop Grumman's Electronic Systems and Integrated Systems sectors also contributed to the project. Integrated Systems provided
electronics, transducer arrays and signal processing software and is optimized for the demanding size, weight, power and cost constraints of Autonomous Underwater Vehicles (AUV), Unmanned Surface Vehicles (USV) and high speed towfish platforms. MINSAS uses a subset of Kraken’s award-winning AquaPix INSAS
re- ods of ocean observation. Its ? eet of autonomous platforms search and government needs. But Siddorn is keenly aware — subsea gliders, autonomous underwater vehicles (AUVs) of the growing role industry must play in achieving sustain- and unmanned surface vessels — represents one of the most able ocean
using large remotely operated vehicles (ROVs) and support vessels are costly and inef? cient. This article explores how small, agile autonomous underwater vehicles (AUVs) are transforming ocean monitoring by providing persistent, cost-effective, and environ- mentally responsible solutions. These AUVs
to lead the industry. ment of AUVs within that country’s strong subsea and robot- ics industry. Cellula Robotics Cellula Robotics’ class of autonomous underwater vehicles Deep Trekker (AUVs) includes two distinct types, Envoy and Porter. Envoy Deep Trekker offers a range of remotely operated vehicles is
of hydrographic training solutions, and RTsys, a leader pointed to the National Oceanography solutions, and Universal Sonar Mount in autonomous underwater vehicles, Center’s (NOC) Marine Autonomous Equipment (USME), a specialist in so- formed a partnership to integrate under- Robotic Systems (MARS)
marine sector, the Xsens Sirius can be deployed on surface vessels and sub-sur- face robotics, such as remotely operated vehicles (ROVs) and autonomous underwater vehicles (AUVs) for precise naviga- tion or stabilization, providing them with reliable heading- and roll/pitch data or support bathymetry mapping
to the mous OBNs outperformed ROV-positioned OBNs. PXGEO remote control center and the cloud. In? nity CPT can receive uses hovering autonomous underwater vehicles rather than mission statements and execute them with minimal supervision. ROVs, claiming they are capable of deploying and recover- The
array of prod- ucts and services includes Uncrewed Surface Vessels (USVs) Subsea Europe Services offers advanced solutions, includ- and Autonomous Underwater Vehicles (AUVs). The company ing the integrated Hydrographic Survey System (iHSS) com- provides seamless integration of equipment and data systems
hicles (ROTVs), inspection-class Remotely Operated Vehicles to withstand the most severe ocean conditions, the new DriX (ROVs), as well as Autonomous Underwater Vehicles (AUVs). O-16 has been designed for long-duration operations (up to Its gondola, located below the surface, can further host a wide 30
of small, lethal, expend- In Ukraine, wartime development of weaponized, combat able vehicles, particularly when employed by a resource-poor autonomous underwater vehicles (AUVs) is underway, with actor facing a heavily armed adversary. This has played out two combat-capable AUVs being unveiled in recent
operations. Photo courtesy Argeo • Argeo has developed a recently patented portfolio of electromagnetic source and receiver systems for Autonomous Underwater Vehicles, Underwater Intervention Drones and ROVs. “Argeo Whisper” is an AUV and ROV system developed for localizing and tracking buried pipelines
waters. USEA’s proprietary system for recharging and data transfer – the uLARS – is designed to secure fully automated launch and recovery of autonomous underwater vehicles, and also makes it possible for AUVs to connect to the unmanned vessel without the need for recovery to deck, dur- ing a seabed mapping
the ROV Doc Ricketts, MBARI’s deep-div- ing remotely operated vehicle. The new research vessel will also be capable of deploying a variety of autonomous underwater vehicles (AUVs). Under- pinning this deep-water capability will be Sonardyne’s Ranger 2 Ultra-Short BaseLine (USBL) system, with an HPT 7000 transceiver
acoustic array, King told MATS. It’s already jamming the thruster and rudder, the trial proved the ability to been trialled with traditional autonomous underwater vehicles gather acoustic data. Mark Burnett, Director at Seiche, who (AUVs) or uncrewed surface vessels (USVs), that hosts eight also spoke at
. Our low-power platform enables vertical pro? l- and compact loggers, and a new three-channel optical sensor, ing ? oats, such as Argo, and autonomous underwater vehicles, capable of making multiple ? uorescence and backscatter mea- like ocean gliders, to sample more frequently or extend their surements
autonomous system of Southampton to develop new sea? oor imaging capabil- capability, interoperability and endurance or increasing ity for autonomous underwater vehicles (AUVs), through sustainability by reducing reliance on crewed platforms. the ‘BioCam’ development, as well as collaborating with Sonardyne
include for long-term deep sea monitoring, but also, in es of 11 gas bottles of hydrogen and ? ve bottles of oxygen future, recharging autonomous underwater vehicles (AUVs) and the fuel cell, developed by ZSW, which gives “about 120 and a seabed crawler, using an inductive sea? oor recharging kW
Naval Group announced a partnership with the RAN to deliver three XL- I for 12 conventionally powered submarines intended to AUV (extra large autonomous underwater vehicles) by 2023. replace the Royal Australian Navy (RAN)’s aging ? eet of six Anduril’s focus has been air and force protection systems, but
TECHNOLOGY UPDATES auv advances run the F SULL PECTRUM Modularity, f exibility and intelligence are the buzzwords of some of the next-gen autonomous underwater vehicles (AUVs), but not for all. Some are taking a more industrial mass production approach and/or going for a more f xed payload of ering
company Chairman with im- bution agreement with RTSYS for its mediate effect. Ralph will remain on the Box? sh Research announced that its autonomous underwater vehicles (AUV) board in a non-executive capacity. The next-generation cinematography drone, and passive acoustic monitoring (PAM) announcement
ral mission was at the forefront of the scienti? c and technical Systems Group at the National Oceanography Center, said: credibility of autonomous underwater vehicles, and laid the “Since we ? rst started developing AUVs in the late 80’s and foundations for the innovative global AUV operations and
of services The company designs, manufactures and commercializes to meet your requirements, including: custom product design, two different autonomous underwater vehicles, the Girona engineering and measurement, prototyping and development, 500 and the SPARUS II, both created at the University with a low
to Navies worldwide for more speci? c needs for multiparameter monitoring. acoustic systems tests and training, torpedo ? ring exercises, Autonomous Underwater Vehicles (AUV): Although and acoustic signature measurements. Saab Seaeye www.saabseaeye.com lenging environments on the planet. A wholly owned
, a Texas-based marine robotics provider (known for its searches for the doomed MH370 airliner), which has been deploying Kongsberg Hugin autonomous underwater vehicles (AUV) in its unmanned deepsea survey and data collection work, is now developing a ? eet of 15 hybrid (battery/ Volvo Penta diesel)
technology and environmental sustainability, will initially add 15 bespoke designed marine robots to Ocean In? nity’s current ? eet of autonomous underwater vehicles (AUV). Armada’s ? eet is currently under construction and is expected to be deployable by the end of 2020. Each unmanned surface robot