Engineering Intelligent Orbital Systems for the Next Generation of Aviation and Space Infrastructure.
AI-based spoof detection and cross-verification via LEO signals to protect aviation from GNSS failure.
Two-way communication at 500-1500 km altitude enabling real-time telemetry and C2 command loops.
Dynamic resource allocation prioritizing safety-of-life data over commercial traffic.
High-density airspace management for millions of BVLOS drones and urban air mobility.
Chief Systems Engineer
BSc Aerospace Engineering (First Class, Kingston University, UK). Experienced in electric propulsion, fuel cell tech, Advanced Air Mobility, and Future Flight initiatives in the UK.

Robust, secure LEO communication systems tailored for modern aviation needs.
AI-optimized resource allocation enhancing connectivity for critical aerial operations.
Seamless UAV integration with aviation infrastructure for improved safety protocols.
Integrated space-air-ground networks for real-time data exchange and operational integrity.
Systems-engineered navigation enhancing precision and reliability for aerospace.
Solutions aligned with international aerospace standards and regulatory frameworks.



Space Clarke
To design, develop, and deliver reliable aeronautical, space, UAV, satellite communication, and aviation solutions that support governments, enterprises, and research institutions across South Asia and beyond.

Organised by Space Clarke
Sri Lanka's first national-level rocketry competition — a platform for school students, university teams, and independent participants to design, build, and launch rockets.