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SEA to deliver KraitArray sonar for Liquid Robotics Wave Glider

by Chief Editor December 17, 2025
written by Chief Editor

The Rise of the Underwater Sentinel: How Uncrewed Systems and Advanced Sonar are Reshaping Maritime Security

A recent multi-million-pound contract awarded to SEA, part of the Cohort plc Group, to supply its KraitArray technology to Liquid Robotics (a Boeing Company) signals a pivotal shift in maritime surveillance. This isn’t just about one deal; it’s a glimpse into a future where uncrewed systems, equipped with sophisticated sensors, are increasingly responsible for safeguarding our oceans. The integration of KraitArray with Liquid Robotics’ Wave Glider USV is accelerating the deployment of persistent, autonomous underwater detection capabilities.

Persistent Surveillance: The New Normal

For decades, naval forces have relied on expensive, crewed vessels for anti-submarine warfare (ASW), intelligence, surveillance, and reconnaissance (ISR), and maritime domain awareness (MDA). However, the increasing complexity of underwater threats – from quiet submarines to autonomous underwater vehicles (AUVs) – demands a more adaptable and cost-effective approach. Uncrewed systems offer precisely that. They can loiter for extended periods, covering vast areas without the logistical burden and risk associated with manned operations.

The KraitArray’s low size, weight, and power (SWaP) characteristics are crucial here. Traditional towed array sonars are bulky and require significant power, limiting their use on smaller platforms. KraitArray’s modular design allows it to be seamlessly integrated into the Wave Glider, creating a highly mobile and discreet surveillance asset. According to a 2023 report by the Center for Strategic and International Studies (CSIS), investment in uncrewed maritime systems is projected to grow by 15% annually over the next decade, driven by this need for persistent surveillance.

Beyond Anti-Submarine Warfare: Expanding Applications

While ASW is a primary driver, the applications of this technology extend far beyond detecting submarines. KraitArray and similar systems are proving invaluable for:

  • Illegal Fishing Detection: Identifying and tracking vessels engaged in illegal, unreported, and unregulated (IUU) fishing.
  • Pipeline and Cable Protection: Monitoring critical underwater infrastructure for damage or tampering.
  • Environmental Monitoring: Collecting data on marine life, pollution levels, and oceanographic conditions.
  • Mine Countermeasures: Locating and identifying underwater mines.

The US Navy, for example, is actively exploring the use of USVs equipped with advanced sonar to augment its existing mine countermeasures capabilities. This reduces the risk to personnel and allows for more thorough coverage of potential minefields.

The Innovation Ecosystem: Collaboration is Key

The partnership between SEA and Liquid Robotics highlights a crucial trend: collaboration. Developing and deploying these complex systems requires expertise in multiple domains – sonar technology, uncrewed vehicle design, data analytics, and communications. Companies are increasingly forming strategic alliances to leverage each other’s strengths and accelerate innovation.

“KraitArray was engineered from the outset to unlock the full potential of agile and uncrewed platforms,” says Paulie McCartan, Head of Undersea Products at SEA. This collaborative spirit is fostering a dynamic ecosystem where rapid prototyping and iterative development are the norm.

The Data Challenge: From Sensing to Understanding

Collecting vast amounts of underwater data is only the first step. The real challenge lies in processing and analyzing that data to extract meaningful insights. Artificial intelligence (AI) and machine learning (ML) are playing an increasingly important role in this process. AI-powered algorithms can automatically identify and classify underwater sounds, detect anomalies, and predict potential threats.

Pro Tip: Edge computing – processing data directly on the USV rather than transmitting it back to shore – is becoming essential for reducing latency and bandwidth requirements. This allows for faster response times and more efficient operations.

Future Trends to Watch

Several key trends are poised to shape the future of underwater sensing and uncrewed maritime systems:

  • Increased Autonomy: USVs will become more autonomous, capable of making decisions and adapting to changing conditions without human intervention.
  • Swarming Technology: Deploying multiple USVs in a coordinated swarm to cover larger areas and enhance detection capabilities.
  • Hybrid Systems: Combining USVs with AUVs to create a layered sensing network. AUVs can dive deeper and collect more detailed data, while USVs provide a surface communications relay.
  • Quantum Sensing: Emerging quantum sensor technologies promise to dramatically improve the sensitivity and accuracy of underwater detection.

The global market for uncrewed maritime systems is expected to reach $9.5 billion by 2028, according to a recent report by Market Research Future. This growth will be fueled by increasing geopolitical tensions, the need to protect critical infrastructure, and the growing demand for environmental monitoring.

FAQ

Q: What is a KraitArray?
A: KraitArray is a compact, high-performance towed array sonar designed for integration with uncrewed surface vehicles (USVs) and other platforms.

Q: What is a Wave Glider?
A: A Wave Glider is an uncrewed surface vehicle (USV) developed by Liquid Robotics (a Boeing Company) that uses wave energy for propulsion and solar power for onboard systems.

Q: What are the benefits of using uncrewed systems for maritime surveillance?
A: Uncrewed systems offer persistent surveillance, reduced risk to personnel, lower operating costs, and increased flexibility.

Q: What are the challenges of underwater sensing?
A: Challenges include limited bandwidth, harsh environmental conditions, and the need for sophisticated data processing and analysis.

Did you know? The ocean covers over 70% of the Earth’s surface, yet remains largely unexplored. Uncrewed systems are helping to unlock the secrets of the deep.

To learn more about the latest advancements in maritime security and uncrewed systems, explore our articles on autonomous underwater vehicles and naval technology. Share your thoughts on the future of maritime surveillance in the comments below!

December 17, 2025 0 comments
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Business

Bedrock Ocean dredges up $25M to map the seafloor with robots

by Chief Editor June 10, 2025
written by Chief Editor

Mapping the Unseen: The Future of Ocean Exploration & Autonomous Underwater Vehicles

The ocean, covering over 70% of our planet, remains largely uncharted. We know more about the surface of the moon than the depths of our own seas. But a revolution is brewing, powered by advancements in robotics and fueled by the need to understand and protect our oceans. This is the story of how autonomous underwater vehicles (AUVs) are poised to reshape ocean mapping, and what the future holds for this vital field.

The Seabed’s Secrets: Why Mapping Matters

Why is it so crucial to map the ocean floor? The reasons are multifaceted. Detailed seafloor maps are essential for:

  • Offshore Energy: Planning and constructing offshore wind farms and oil and gas infrastructure.
  • Environmental Assessment: Monitoring marine habitats and assessing the impact of human activities.
  • National Security: Supporting naval operations and underwater infrastructure protection.
  • Scientific Research: Understanding climate change, marine geology, and biodiversity.

The existing methods, using large ships with powerful sonar, are often expensive, slow, and can disrupt marine life. This is where the new generation of AUVs come in.

Enter the AUVs: A New Era of Ocean Exploration

Companies like Bedrock Ocean are pioneering the use of AUVs. These underwater robots are designed to operate independently, using sonar and magnetic sensors to create high-resolution maps of the ocean floor.

Did you know? Some AUVs can operate for extended periods, up to 12 hours, on a single charge, covering vast areas of the seabed efficiently.

Here’s how they’re changing the game:

  • Cost-Effectiveness: AUVs can be significantly less expensive to deploy and operate compared to traditional survey ships.
  • Speed: They can map large areas much faster.
  • Reduced Environmental Impact: AUVs use less powerful sonar, potentially minimizing harm to marine life. Their operational methods are less disruptive, improving the sustainability of projects.

The Technology Behind the Transformation

AUVs are sophisticated pieces of technology, incorporating several key components:

  • Sonar Systems: Used to generate sound waves and measure the time it takes for them to return. This information creates detailed topographic maps of the seafloor.
  • Magnetic Sensors: These sensors help to provide additional data about the composition of the seabed.
  • Autonomous Navigation: Using a combination of inertial navigation systems (INS) and GPS (when surfaced) to maintain position.
  • Data Processing and Transmission: Onboard processing reduces the amount of data that needs to be transmitted, and data is often sent to a ship or satellite via Wi-Fi or Starlink.

Pro Tip: As technology advances, AUVs are expected to become even more sophisticated, with improved battery life, advanced sensor capabilities, and enhanced autonomy.

Applications and Future Trends

The applications for AUV technology are rapidly expanding. Beyond the examples mentioned earlier, consider these emerging trends:

  • Deep-Sea Mining: AUVs can assist in the mapping and exploration of mineral-rich areas on the ocean floor, which is vital to understanding the environmental impact.
  • Coastal Monitoring: AUVs can monitor coastal erosion, track pollution, and assist with environmental restoration efforts.
  • Archaeological Surveys: Mapping underwater historical sites, uncovering shipwrecks, and preserving cultural heritage.

The market for ocean mapping technology is projected to grow significantly in the coming years. Driven by the increasing need for ocean data, this sector will likely see more investment, innovation, and new applications emerge.

Addressing the Challenges

Despite the promise of AUVs, there are still challenges to overcome. Accuracy is a key concern; AUVs currently can’t match the sub-meter precision of ship-based surveys, especially in deeper water. Another is the ability to handle extreme conditions, such as high pressure, strong currents, and limited visibility.

Reader Question: “What advancements are necessary to get the most out of these technologies?”

Future innovations will focus on improving navigation accuracy, developing more robust and energy-efficient AUVs, and creating advanced data analysis and visualization tools.

Frequently Asked Questions (FAQ)

  1. How deep can AUVs go? AUVs are capable of operating at various depths, some designed to explore the deepest parts of the ocean.
  2. How do AUVs navigate? AUVs primarily use inertial navigation systems (INS), along with sonar and other sensors, and GPS when they surface.
  3. What kind of data do AUVs collect? AUVs collect a variety of data including bathymetry (depth), water column data, and sonar reflectivity.
  4. Are AUVs environmentally friendly? Compared to traditional methods, AUVs can be more environmentally friendly due to less noise pollution and reduced fuel consumption.

The ocean’s mysteries are vast, but with advanced technologies, we are becoming more equipped to decipher the secrets of the deep. These autonomous vehicles offer a look into the future of how we explore, understand, and preserve our oceans.

Ready to dive deeper? Share your thoughts and questions in the comments below. What aspects of ocean exploration are you most interested in? Explore more about this subject with our other articles, like this one about the impact of climate change on our oceans, and subscribe to our newsletter for the latest updates.

June 10, 2025 0 comments
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News

Barcelona AFC’s Path to Clinching the UEFA Triplete: Dreams and Strategies

by Chief Editor February 14, 2025
written by Chief Editor

The Barça Dream of a Ten-Year Triumphant Return

Former FC Barcelona star Rivaldo has expressed optimism about the club’s potential to achieve a long-sought-after triplete of LaLiga, the Champions League, and the Copa del Rey. Reflecting on the team’s current state, Rivaldo acknowledges the challenges ahead but believes in the squad’s capability to overcome them. With Barcelona in a promising form, Rivaldo sees this as a pivotal moment to turn dreams into reality.

Raphinha: Catalina of Change for Barcelona

Raphinha’s stellar performance has been pivotal for Barcelona. Leading with 39 goal contributions across 35 games, his exceptional playstyle and leadership qualities have sparked comparisons to Rivaldo himself. Being seen as a Balón de Oro contender mirrors Rivaldo’s accolades in 1999. His ability to adapt and thrive under pressure makes him an invaluable asset as Barcelona aim for glory.

A Brazilian dynamo, Raphinha’s offensive prowess and personal resilience echo Rivaldo’s own journey. His role in the team has seen him become a figure of stability, especially noted for his transformation from a fluctuating presence in the previous season to a steadfast captain this year.

The Search for a Lewandowski Backup

Despite Cristiano Ronaldo’s remarkable form, the demanding nature of modern football necessitates a reliable alternative. Rivaldo suggests that securing a backup striker is essential. With injuries and fatigue inevitable over a strenuous season, having a seasoned ‘9’ like Lewandowski’s accompaniment can exquisitely balance the squad’s needs and expectations.

Glimpses of Guardiola’s Return

The possibility of Pep Guardiola reigniting his passion at Barcelona intrigues many. Should Guardiola depart Manchester City, Rivaldo envisions a conceivable return to the club where his coaching legacy began. This potential reunion with the Camp Nou signifies not only a strategic move but also a revival of the iconic bond between Guardiola and Barcelona’s loyal fans.

Yet, considering the success Bayern Munich currently enjoys under his compatriot Hansi Flick, a transition back to Catalonia might need further contemplation. Both tactically and emotionally, Guardiola’s reunion with Barcelona ensures strategic advancements, though it remains speculation for now.

Embracing Challenges: The Vinicius Phenomenon

The Liverpool-born Brazilian, Vinicius Jr., stands as a testament to resilience in the face of adversity. After a controversial display by Manchester City’s fans, Vinicius’ response on the field served as a declaration of defiance. Rivaldo connects with this narrative, recalling his own use of motivation through external pressures.

Frequently Asked Questions

Can Barcelona realistically achieve a triplete again?

Given their current performance and key players like Raphinha and Lewandowski, it is a viable goal if strategic reinforcements are made.

Would Rivaldo recommend signing a backup striker for Barcelona?

Yes, having a reliable second-striker would be crucial, considering the rigorous demands of modern football.

Is Pep Guardiola likely to return to Barcelona?

While logically feasible, this depends on Guardiola’s decision post-2023 and Bayern Munich’s performance.

How does Vinicius Jr. handle pressure and criticism?

Similar to Rivaldo’s approach, Vinicius Jr. uses criticism as fuel to elevate his game.

Want more insights into the world of football and potential future trends? Explore more articles or subscribe to our newsletter to stay updated!

February 14, 2025 0 comments
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