hardware technologies
wing-in-Ground Effect
MRKV's third-generation Wing-in-Ground Effect technology enables high-speed maritime mobility by operating aircraft-derived hydrodynamic and aerodynamic lifting surfaces within ground effect, significantly reducing drag and energy consumption. This approach allows MRKV vessels to achieve aircraft-like speeds over water while remaining classified and operated as maritime assets, delivering long range, high efficiency, and low operating cost in coastal and island environments. MRKV's WIGE vessel designs represent technology inspired by nature.
HYDROFOILS
MRKV hydrofoil technologies — applied across both single-hull and multi-hull designs — lift the vessel above the water's surface at speed, cutting hydrodynamic resistance and improving efficiency, comfort, and range. Across passenger and cargo configurations, they enable quiet, low-wake transport, ideal for urban waterways, coastal routes, and sensitive marine environments.
Hydrogen Generation
These systems operate in off-grid, grid-connected, or hybrid configurations, producing hydrogen at the point of use. The hydrogen supports propulsion, power co-generation, and energy storage, while the process itself yields usable water and thermal outputs — all while reducing dependency on centralized fuel supply chains.
BUNKERING AND power integration
MRKV offers integrated fueling and power architectures that connect hydrogen generation, storage, compression, and dispensing with vessel propulsion systems. This unified design ensures safe, efficient, and scalable fueling operations while enabling seamless interaction among hydrogen systems, electric propulsion, and auxiliary power loads across vessels and floating spaces.
software technologies
fleet operations, control AND SAFETY
MRKV's fleet operations software provides real-time centralized monitoring, control, and coordination of vessels and platforms. The system supports operational planning, energy optimization, asset utilization, and performance tracking across fleets operating in diverse geographic and regulatory environments. Built-in safety management — real-time alerts, compliance monitoring, and incident response — ensures every asset operates within defined parameters at all times.
digital twin AND GOVERNED AI
MRKV develops digital-twin technology to create full, real-time virtual representations of vessels, hydrogen systems, and energy infrastructure. These models enable simulation, performance optimization, predictive maintenance, and operational scenario analysis — improving reliability while reducing downtime and lifecycle costs. The digital twin is also MRKV's pathway to artificial intelligence. By training and validating AI against a high-fidelity virtual model before deployment, we develop systems whose behavior is tested, bounded, and verifiable — intelligence that operates within defined limits and under continuous human oversight, never beyond them.








