Power & Sustainability explores the future of sustainable energy within the maritime sector, providing our members with insights and discussion on emerging technologies, practical solutions and policy developments.
You can expect topics such as renewable energy innovations, energy efficiency strategies and alternative fuels.
AI-driven localization technology is transforming fire response aboard ro-ro vessels. Using computer vision, deep-learning models, and infrastructure-free smartphone deployment, the system enables rapid responder tracking, fire verification, and coordination. Improved situational awareness and accurate indoor positioning could significantly accelerate early suppression, enhancing safety, reducing escalation risks, and strengthening shipboard resilience.
Ship design is being reimagined through modular engineering and Model-Based Systems Engineering. By shifting from Engineering-to-Order to Configuration-to-Order approaches, the methodology enables reusable pre-approved modules, digital collaboration, and faster classification processes. Integrating performance, efficiency, and environmental analyses on a shared platform promises more sustainable streamlined vessel development at scale globally.
FORAN’s integration with Siemens signals a major step toward Shipyard 4.0. By combining deep shipbuilding expertise with advanced digital engineering capabilities, the partnership aims to deliver end-to-end lifecycle solutions, streamline design and production, strengthen operational control, and accelerate digital transformation across shipyards and technical offices, unlocking new efficiencies, competitiveness, globally.
Integrating FORAN and Teamcenter demonstrates how deeper CAD-PLM connectivity can transform complex shipbuilding programmes. By synchronising database-driven engineering environments, the approach improves data consistency, productivity, and collaboration while reinforcing a single source of truth. The resulting digital workflow reduces errors, streamlines processes, and supports more efficient vessel development worldwide today.
New simulation capabilities are helping shipping stakeholders navigate decarbonisation with greater confidence. By combining technical, economic, regulatory, and operational models, the framework projects fleet transitions, emissions, capital requirements, and operating costs under alternative scenarios. The approach enables data-driven strategy evaluation, supporting more effective pathways toward maritime net-zero goals today globally.
New decision-support tools are helping shipping stakeholders evaluate decarbonised fleet investments with greater precision. By modelling alternative fuels, infrastructure development, regulations, and lifecycle costs across specific trade routes, the approach quantifies emissions and economic outcomes. Scenario and sensitivity analyses provide strategic insight for navigating uncertainty and accelerating maritime decarbonisation efforts.
Multi-agent simulation is transforming shipbuilding planning by recreating real-world production environments with remarkable accuracy. Combining virtual workers, A-star pathfinding, spatial constraint modelling, and task optimisation, the approach predicts manufacturing bottlenecks, tests assembly strategies, and improves efficiency. The capability enables shipyards to validate complex processes before execution, reducing risk, cost, significantly.
Combining wind propulsion with advanced voyage optimization could unlock fuel savings far beyond either technology alone. Detailed simulations show weather-aware routing can more than double the efficiency gains from wind-assist systems. The findings highlight a powerful, integrated decarbonisation strategy capable of reducing costs, emissions, and operational risk across global fleets.
Automated hull plate unfolding is streamlining ship production by transforming complex CAD models into manufacturing-ready data. Leveraging CATIA 3DEXPERIENCE extensions, the approach extracts geometry, embeds process information, and enables reliable development of flat, curved, and double-curved plates. The innovation promises faster workflows, reduced errors, and improved shipyard efficiency today globally.
The Internet of Ships Open Platform is advancing maritime digitalisation by enabling transparent, equitable sharing of vessel IoT data across the industry. Through common governance frameworks, legal structures, and collaborative ecosystems, the initiative supports data-driven innovation, accelerates ship connectivity, and creates new opportunities for operational efficiency and value creation worldwide.
Automated pipe fabrication planning is bringing new levels of efficiency to shipbuilding. By combining graph databases, factory data, task generation, and production simulation, the system identifies optimal manufacturing workflows automatically. Tested across multiple virtual factories, the approach promises greater productivity, smarter resource allocation, and streamlined pipe production at industrial scale.
Extended reality technologies are moving from entertainment into industrial shipbuilding, offering new ways to improve productivity and quality amid workforce challenges. Building on digital visualization foundations, Mitsubishi’s FitViewer MR integrates mixed reality with shipyard operations, enabling immersive design and manufacturing support while advancing practical digital transformation efforts at global scale.
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