Integrated solutions that enable vessels to operate autonomously, efficiently, and resiliently in demanding maritime environments.
Advanced
Solutions

ASG delivers next-generation vessel solutions by combining distributed microgrids, high-efficiency propulsion, adaptive energy management, and cyber-hardened control into resilient, high-performance ship systems.

ICON replaces traditional cabinet-centric drive rooms with a distributed, SiC-based DC backbone that places power electronics at the source and load.
▪︎ Grid-forming control with VSM/droop
▪︎ <5 ms isolation via solid-state circuit breakers
▪︎ Liquid-cooled SiC converters for high power density
▪︎ N–2 continuity with dual independent DC legs
▪︎ ESS-based black-start, regenerative operation
▪︎ Reduced EMI through short motor leads
▪︎ 70–90% reduction in cabling volume
Ideal for: hybrid vessels, unmanned platforms, research ships, DP-class vessels, and containerized microgrids.

A family of high-efficiency, high-pole PM machines optimized for hybrid and autonomous endurance.
Propulsion Motors (2.6 MW)
▪︎ Direct-drive, gearbox-less
▪︎ 8 dB acoustic signature reduction
▪︎ High torque density (8.3 kN·m peak)
▪︎ SiC inverters integrated into motor housing
▪︎ Dual-encoder feedback for redundancy
PM Alternators (600–750 kW)
▪︎ Variable-speed 500–2200 rpm
▪︎ 96–97% efficiency
▪︎ Liquid cooled, IP65 sealed
▪︎ Optimized for ICON AFE grid forming

AEMS is the supervisory control fabric that orchestrates propulsion, generators, ESS, and hotel loads.
AEMS is the supervisory control fabric that orchestrates propulsion, generators, ESS, and hotel loads.
▪︎ Predictive endurance optimization
▪︎ Generator/ESS dispatch & load sharing
▪︎ Fault recovery & auto-healing
▪︎ Black-start sequencing
▪︎ HVDC + AC hybrid mode control
▪︎ Integrated digital twin analytics
AEMS enables “set-and-forget” endurance management for unmanned vessels, automatically trading propulsion power, sensing, and communications to meet mission timelines.

ASG’s cyber layer integrates Zero-Trust segmentation, deterministic networks, and secure remote operations.
▪︎ Cyber-hardened PLC/FPGA controllers
▪︎ Secure boot + signed firmware
▪︎ OT/IT segmentation via Purdue model
▪︎ Remote Access System (RAS) with encrypted multi-bearer routing
▪︎ Real-time cyber monitoring and isolation logic
