WARSHIP TECHNOLOGY

Warship Technology delivers in-depth analysis of advanced naval systems, platforms, and integration strategies shaping modern maritime defence capabilities.

Look out for topics such as combat management systems, radar and sensor integration, propulsion advancements, survivability and stealth technologies, and the growing role of autonomy and artificial intelligence in naval operations.

Gain insight into the technologies underpinning next-generation warships, along with the practicalities of design, integration, and lifecycle support within complex naval environments.

HOW CAN WE SUPPORT UNCREWED MARITIME AUTONOMOUS SURFACE SHIP OPERATORS IN THEIR DECISION-MAKING?

Human Factors

By K M Lynch  M S Young D Taunton A P J Robert V A Banks K L Plant

Edition Issue: Human Factors 2024 Publication Year: 2024 Publication Type: Conference Proceeding

Operating Maritime Autonomous Surface Ships from Remote Control Centres introduces new decision-making challenges as operators lose direct proximity to vessels. Using the SWARM methodology and SAW taxonomy, this research identifies critical design principles around system transparency, display design, monitoring and training, offering practical guidance to improve situational awareness, decision quality and remote operational safety

Detail Link: HOW CAN WE SUPPORT UNCREWED MARITIME AUTONOMOUS SURFACE SHIP OPERATORS IN THEIR DECISION-MAKING?

REALIZING LARGER CLICK SURFACES FOR MARITIME USER INTERFACES USING FUNCTION GROUPING

Human Factors

By K Nordby J E Fauske

Edition Issue: Human Factors 2024 Publication Year: 2024 Publication Type: Conference Proceeding

Maritime digital interfaces may meet regulatory button-size requirements, yet usability challenges persist in demanding operating environments. This research introduces a novel interface design that enlarges functional interaction zones and reduces navigation complexity. Evaluated using Fitts’ law, the approach shows potential to improve accuracy, minimise errors and enhance decision-making at sea

Detail Link: REALIZING LARGER CLICK SURFACES FOR MARITIME USER INTERFACES USING FUNCTION GROUPING

OPPORTUNITIES FOR ADVANCED MAN-MACHINE TEAMING ON SHIPS THROUGH HOLONIC HUMAN CYBER-PHYSICAL SYSTEMS

Human Factors

By NC Taylor K Kruger A Bekker

Edition Issue: Human Factors 2024 Publication Year: 2024 Publication Type: Conference Proceeding

Advanced human-machine teaming could transform maritime operations through holonic human cyber-physical systems. By creating digital counterparts for crew, equipment and processes, cooperative autonomous elements enable richer decision support and human-condition monitoring. The concept reveals how smarter collaboration between people and technology may enhance safety, performance and operational effectiveness at sea.

Detail Link: OPPORTUNITIES FOR ADVANCED MAN-MACHINE TEAMING ON SHIPS THROUGH HOLONIC HUMAN CYBER-PHYSICAL SYSTEMS

INTERORGANIZATIONAL SIMULATOR TRAINING FOR AERONAUTICAL AND MARITIME SEARCH AND RESCUE (SAR) PERSONNEL

Human Factors

By O Schliebusch-Jacob T Lübcke

Edition Issue: Human Factors 2024 Publication Year: 2024 Publication Type: Conference Proceeding

AMARIS is pioneering joint maritime and aviation emergency training by connecting previously separate ship and helicopter simulation environments into a shared operational scenario. Combining cross-domain simulation with human factors research, the initiative enhances communication, coordination and decision-making, offering a scalable, cost-effective approach to improving preparedness for complex search and rescue operations

Detail Link: INTERORGANIZATIONAL SIMULATOR TRAINING FOR AERONAUTICAL AND MARITIME SEARCH AND RESCUE (SAR) PERSONNEL

AUTONOMOUS SWATH VESSELS FOR WIND FARM INSPECTIONS: A COMPARATIVE STUDY ON OPERATIONAL EFFICIENCY

Human Factors

By S A Korkmaz S R Turnock D Taunton M Prince M Tinmouth  N Tinmouth

Edition Issue: Human Factors 2024 Publication Year: 2024 Publication Type: Conference Proceeding

Autonomous SWATH vessels could transform offshore wind farm maintenance by combining hybrid fuel cell-battery propulsion with highly stable hull designs optimised for harsh operating environments. Through numerical modelling and Shetland-based case studies, the research demonstrates superior operational availability, stability and ROV deployment performance versus conventional monohulls, supporting safer, more sustainable offshore operations.

Detail Link: AUTONOMOUS SWATH VESSELS FOR WIND FARM INSPECTIONS: A COMPARATIVE STUDY ON OPERATIONAL EFFICIENCY

STRENGTHENING CYBER RESILIENCE AND NAVIGATIONAL SAFETY IN TURKISH STRAITS: DEVELOPMENT AND TESTING OF PREVENTION STRATEGIES IN SIMULATED ENVIRONMENTS

Human Factors

By Y B Kurt E Akyuz R E Kurt

Edition Issue: Human Factors 2024 Publication Year: 2024 Publication Type: Conference Proceeding

Maritime cybersecurity is becoming a strategic imperative as digital dependence grows across critical waterways. Combining bridge simulators, eye-tracking technology and AI-driven risk assessment, this research explores human and technical responses to cyber-attacks in the Turkish Straits. The findings aim to strengthen resilience, improve training and inform future maritime security policy.

Detail Link: STRENGTHENING CYBER RESILIENCE AND NAVIGATIONAL SAFETY IN TURKISH STRAITS: DEVELOPMENT AND TESTING OF PREVENTION STRATEGIES IN SIMULATED ENVIRONMENTS

ITERATING DIVERGENT AND CONVERGENT THINKING IN HUMAN-CENTRED DESIGN IN A FUTURISTIC PASSENGER SHIP BRIDGE DESIGN

Human Factors

By Y Man P Björndal E Brorsson J Junkers E Carlson, M Lundh S N MacKinnon

Edition Issue: Human Factors 2024 Publication Year: 2024 Publication Type: Conference Proceeding

Human-centred design is emerging as a critical enabler of next-generation maritime systems. Using divergent and convergent thinking across the design lifecycle, researchers demonstrate how deeper understanding of user needs and human-system interactions can improve safety, functionality and operational effectiveness, offering a practical framework for more resilient maritime innovation overall today.

Detail Link: ITERATING DIVERGENT AND CONVERGENT THINKING IN HUMAN-CENTRED DESIGN IN A FUTURISTIC PASSENGER SHIP BRIDGE DESIGN

A KNOWLEDGE-BASED DECISION SUPPORT SYSTEM FOR SHIP MISSION FEASIBILITY ANALYSIS AND ONBOARD AWARENESS

ICCAS

By A Marchesi

Edition Issue: International Conference on Computer Applications in Shipbuilding 2024 Publication Year: 2024 Publication Type: Conference Proceeding

As maritime systems grow more complex through automation, alternative fuels and advanced mission requirements, understanding vessel-wide impacts of failures becomes increasingly challenging. This research introduces an AI-enabled decision support system that leverages functional architectures to assess mission feasibility, guide recovery actions and enhance situational awareness, offering a powerful tool for safer, more resilient naval operations.

Detail Link: A KNOWLEDGE-BASED DECISION SUPPORT SYSTEM FOR SHIP MISSION FEASIBILITY ANALYSIS AND ONBOARD AWARENESS

FROM VIRTUAL PROTOTYPING TO DIGITAL TWIN

ICCAS

By A Zini M Figari M Martelli D Tozzi

Edition Issue: International Conference on Computer Applications in Shipbuilding 2024 Publication Year: 2024 Publication Type: Conference Proceeding

Digital twins are transforming maritime engineering by connecting virtual ship models with real-world operational data. Drawing on advances in simulation, IoT, AI and cloud technologies, this research traces the evolution from virtual prototyping to lifecycle-wide digital twins, revealing new opportunities to enhance design, training, maintenance, operational performance and long-term asset management.

Detail Link: FROM VIRTUAL PROTOTYPING TO DIGITAL TWIN

THE IMPACT OF INTEGRATED NAVAL PRACTICES ON EMBARKED MISSION PACKAGE OPERATIONS AS DEFINED BY SIMULATED TECHNOLOGIES

ICCAS

By B Ferrier N Millsap G Librandi F Greco

Edition Issue: International Conference on Computer Applications in Shipbuilding 2024 Publication Year: 2024 Publication Type: Conference Proceeding

Predictive motion analysis is advancing the safe deployment of crewed and uncrewed air and sea vehicles at sea. By combining real-time ship motion forecasting, deck-condition sensing and integrated simulation, new approaches improve launch and recovery operations, support autonomous systems, and enable predictive maintenance, enhancing safety, reliability and operational effectiveness.

Detail Link: THE IMPACT OF INTEGRATED NAVAL PRACTICES ON EMBARKED MISSION PACKAGE OPERATIONS AS DEFINED BY SIMULATED TECHNOLOGIES

THE IMPACT OF INTEGRATED NAVAL PRACTICES ON EMBARKED MISSION PACKAGE OPERATIONS AS DEFINED BY SIMULATED TECHNOLOGIES - Copy

ICCAS

By B Ferrier M R Belmont J T Christmas

Edition Issue: International Conference on Computer Applications in Shipbuilding 2024 Publication Year: 2024 Publication Type: Conference Proceeding

Predictive motion analysis is advancing the safe deployment of crewed and uncrewed air and sea vehicles at sea. By combining real-time ship motion forecasting, deck-condition sensing and integrated simulation, new approaches improve launch and recovery operations, support autonomous systems, and enable predictive maintenance, enhancing safety, reliability and operational effectiveness.

Detail Link: THE IMPACT OF INTEGRATED NAVAL PRACTICES ON EMBARKED MISSION PACKAGE OPERATIONS AS DEFINED BY SIMULATED TECHNOLOGIES - Copy

FACILITATING SHIPYARD SPECIALIZATION THROUGH PLM TECHNOLOGY

ICCAS

By C Tulk S Crook N Danese G Goulanian

Edition Issue: International Conference on Computer Applications in Shipbuilding 2024 Publication Year: 2024 Publication Type: Conference Proceeding

Digital collaboration is becoming essential to the future of European shipbuilding. As specialist shipyards increasingly rely on partnerships and subcontracting, interoperable digital twins and shipbuilding-specific lifecycle management technologies are enabling secure information sharing, reducing collaboration risks and strengthening competitiveness in the delivery of complex, innovation-driven maritime programmes.

Detail Link: FACILITATING SHIPYARD SPECIALIZATION THROUGH PLM TECHNOLOGY

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