Our software combines an intuitive single-line diagram interface with powerful power and energy system optimisation running in the background. This unique integration allows users to visually design shipboard architectures while automatically generating optimal sizing, configuration, and energy management strategies.
Our software provides an intuitive single-line diagram interface that lets users visually design shipboard power systems. Engineers can configure generators, batteries, fuel cells, converters, and switchboards with ease, while the tool ensures technical accuracy and system-wide connectivity.
Behind the interface runs a powerful multi-component optimisation engine, combining MILP/MINLP methods with techno-economic models. This enables accurate sizing of batteries, diesel engines, and fuel cells while balancing efficiency, cost, compliance, and long-term ROI.
The platform supports strategic scenario planning for diverse load profiles and voyage patterns. With built-in constraints on minimum ON/OFF times and lifetime degradation models, it delivers robust scheduling strategies that extend component life while reducing fuel use and emissions.
Users gain access to both technical engineering insights-such as SoC trajectories, power flows, and load coverage-and boardroom-ready metrics including ROI, payback periods, and emissions savings. These reports bridge the gap between engineering detail and executive decision-making.