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Full aerospace project lifecycles are executed through the management of technical scopes of UAS platforms spanning from initial parametric CAD design gates down to final multi-scale automated flight validation pipelines. Within these pipelines, Pixhawk firmware is deployed, Gazebo and X-Plane hardware-in-the-loop (HIL) calibration is managed, and ROS2/C++ LiDAR navigation stacks are programmed to facilitate formal 10-step SORA risk assessments. To translate complex data constraints into automated EASA-compliant vertiport infrastructure toolsets, geometric calculations are automated via Unity3D and GIS coordinates. Concurrently, product discoverability is driven via the Double Diamond framework, where local AI agent architectures are developed using open-weight LLM and RAG systems deployed within secure, air-gapped networks, while Human-Centered AI (HCAI) principles are applied to ensure reliable decision support in continued airworthiness.

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Designed and fabricated a foldable, 3D-printed quadcopter with a Pixhawk controller and optical flow sensor, validating a 1 kg payload capacity and 30-minute flight time in a GPS-denied environment.

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AR & VR Enabled

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Drone Realistic Rendering ​​

 
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