Anduril Industries
Software Engineer, Air & Missile Defense
About this role
Anduril Industries seeks a Software Engineer to develop advanced tracking algorithms and real-time systems for air and missile defense radar. You'll design multi-target tracking solutions that process massive sensor data streams to detect and characterize airborne threats, working on production-grade systems deployed for mission-critical military operations.
What you'll do
- Design and implement advanced multi-target tracking algorithms for air and missile threats
- Develop high-performance real-time software systems to process radar sensor data and maintain tracks on dozens to hundreds of simultaneous targets
- Build and leverage modeling and simulation environments to validate tracking performance
- Collaborate with radar engineers and system architects to integrate tracking solutions into defense systems
- Optimize tracking software for performance-critical environments with millisecond latency requirements
- Communicate technical trade-offs to cross-functional teams and participate in customer demonstrations
What they're looking for
- C++ programming
- Python programming
- Linear algebra and probability
- Statistics and differential equations
- Real-time software systems design
- Signal processing and tracking algorithms
- Software engineering fundamentals (design patterns, testing, version control)
- Radar sensor data processing
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Anduril Industries
Anduril Industries builds autonomous defense systems including underwater vehicles, unmanned aircraft, and electronic warfare platforms for the Department of Defense. The company is hiring across mechanical engineering, mission operations, software development, technical leadership, and advanced manufacturing roles to support the design, deployment, and production of these mission-critical systems.
- Website
- anduril.com
Likely interview questions
- Walk us through your experience designing or implementing tracking algorithms. What challenges did you encounter?
- Describe a project where you optimized software for latency-critical performance. What metrics did you target and how did you measure success?