A D V A N C E D M O B I L I T Y


ADVANCED TECHNOLOGY
Innovating the Future of Motion
The Advanced Mobility division is committed to redefining the frontiers of high-performance and sustainable transport systems. With applications spanning next-generation aircraft, Formula One racing, and hydrogen-powered vehicles, we deliver cutting-edge design, simulation, and integration services. Our work is driven by innovation, performance, and environmental responsibility, enabling breakthrough advancements in how we move across land, air, and beyond.
UAV, eVTOL & HYDROGEN AIRCRAFT SYSTEM DESIGN
Future-Ready Aviation Systems
We design aerodynamically efficient and system-optimized UAVs, eVTOLs, and hydrogen-powered aircraft for urban mobility and aerospace missions. Our designs involve integrated platforms that combine lightweight composite structures, hydrogen fuel systems, advanced avionics, propulsion configurations, and thermal optimization. We ensure seamless system integration to meet safety and efficiency standards.
HYDROGEN FUEL CELL INTEGRATION & VALIDATION
Promoting Zero-Emission Mobility
We help clients design and validate hydrogen-powered drive systems for terrestrial and aerial vehicles. From stack selection and cooling to system packaging and H2 safety protocols, we support the entire hydrogen powertrain cycle. Our validation workflows include PEM fuel cell simulations, transient analysis, embedded system-level controls, CFD-based cryogenic tank design, and real-time H2 management using digital twin integrations.
F1 CHASSIS, AERO & SUSPENSION MODULES DESIGN
Powering the Need for Precision and Speed
We optimize chassis, suspension, and aerodynamic modules to meet the extreme demands of competitive motorsports and Formula 1. We bring advanced tools and race-proven methodologies to design high-downforce bodywork, carbon fiber monocoques, active suspension systems, and hybrid powertrain integration.
ELECTRIC POWERTAIN SIMULATION
Intelligent Control Meets Efficiency
We simulate and prototype drive-by-wire steering, braking, and electric propulsion systems with high-fidelity digital models. By modelling dynamic response, failure modes, and regenerative control loops, we optimize electronic control units (ECUs), battery configurations, and sensor-actuator systems to support full EV and hybrid electric platforms.
AEROELASTICITY & FLIGHT STABILITY TESTING
Precision Testing for Aircraft Safety
We conduct aeroelastic, flutter, and dynamic stability simulations for advanced mobility systems. Our simulations and virtual wind tunnel tests evaluate structural vibration modes, aeroelastic interactions, and flight envelope limits. This ensures safe flight dynamics for high-speed and lightweight platforms like UAVs and hydrogen planes.



