Priya Sharma and Northwestern Engineering Team Win First Place at International Aerospace Challenge
Undergraduate team led by Priya Sharma takes top honours for developing an autonomous high-altitude atmospheric sampling drone.
Excellence in Applied Engineering and Aerospace Design
An interdisciplinary student team from Northwestern University, captained by senior undergraduate Priya Sharma, has claimed first prize at the prestigious International Aerospace and Remote Robotics Championship. Competing against dozens of institutions worldwide, the team presented an autonomous solar-assisted drone engineered for high-altitude meteorological data collection.
The project was designed, fabricated, and flight-tested entirely within the student workshops and wind-tunnel facilities at Northwestern University in Evanston.
Engineering Specifications & Innovations
- Composite Airframe: Ultra-lightweight carbon fiber structure with integrated solar harvesting skin.
- Autonomous Navigation: Real-time atmospheric current mapping allowing autonomous thermal soaring to extend flight endurance beyond twenty-four hours.
- Sensor Payload: Modular atmospheric monitoring equipment calibrated to measure particulate concentrations and greenhouse gas gradients.
Team Perspectives
"This victory reflects months of late nights in the fabrication lab and relentless iterative testing," said Priya Sharma. "The technical grounding and hands-on laboratory access provided by our department made it possible to tackle complex aerospace challenges as undergraduates."
More Success Stories from Northwestern University
Northwestern PhD Student Fatima Al-Mansoor Publishes First-Author Paper in Nature Communications
Fatima Al-Mansoor, a second-year PhD student at Northwestern University, has achieved the rare distinction of publishing as lead author in Nature Communications.
Elena Rostova and Northwestern Team Win First Place at International Aerospace Engineering Challenge
Undergraduate team led by Elena Rostova takes top honours for developing an autonomous high-altitude atmospheric sampling drone system.