Project cooperation
HORIZON-CL5-2026-10-D5-02 - Energy-efficient software-defined EVs (2ZERO)
Director
Stryker Design Ltd
Oxford, United Kingdom
'Cargo-bike width, congestion-busting agility, with small van functionality and protection'.
'Automotive-Lite; inclusive minimobility, liberating the road ahead.
'Ground-up' development approach, not redesigning legacy vans and cars for electric powertrains.
Datasets demonstrate high potential for ultra-efficient, lowest in-use, through-life GHG and PM2.5, on-road and off-road, enclosed, practical, flexible platform vehicle design.
Proprietary, failsafe, automotive suspension and steering systems enabling a nascent, new generation family of ultra-narrow, modular Zero-Emission Vehicle (ZEV) platforms, helping unlock, accelerate and democratise ZEV uptake, appropriate-sizing vehicles and power sources.
Predictable centre of gravity (Cg) shifting enables high Cg tolerance, with large diameter wheels for safety.
May help allow reduction in OEM average range emissions to avoid fines.
All the comfort, speed and convenience of vans and cars, plus additional advantages of parking/congestion-busting, affordability.
Enables optimal, appropriate sizing of vehicle and power requirement for many one and two person road journeys. Tilting trailer can extend carrying capacity. Larger vehicles may be used for the remaining journeys.
The tech is vehicle power-source agnostic, so future-proofed.
Vehicle platforms enabled may be manned, or unmanned, or remote-driven/tele-operated.
Cyclist, pedestrian, physically/neurologically/sensory-challenged mobility friendly.
This may help understand what we are doing and why appropriate Cg shifting (not just tilting) is so important for safety and stability;
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Project cooperation
HORIZON-CL5-2026-10-D5-02 - Energy-efficient software-defined EVs (2ZERO)