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Build AI-powered prototypes and full-stack systems for defense tech, integrating GenAI, computer vision, and distributed services across cloud and embedded platforms.
Builds real-time command-and-control software for autonomous military systems, integrating AI, computer vision, and fleet orchestration using Python, C++, Rust, Go, JavaScript, and React.
Build discrete-event simulation models and automated workflows to optimize AI-driven maritime manufacturing lines, using Python and production-control tools.
Builds and scales AI-powered command-and-control software for military systems, integrating autonomy, networking, and distributed data layers to support warfighters in tactical environments.
Design and maintain data systems to ingest and transform military sensor data into actionable insights for air defense systems, using cloud and specialized tools.
Develop autonomy software for military air vehicles using C++/Rust, integrating computer vision, motion planning, SLAM, and secure communications.
Builds the foundational software stack for autonomous military vehicles, integrating control systems, networking, and sensor fusion using languages like C++, Python, and Rust.
Builds real-time computer vision and sensor-fusion algorithms for autonomous air vehicles, integrating camera calibration, pose estimation, and IMU data in C++ and Python.
Secure advanced defense systems by designing security features, reviewing architectures, and mitigating exploits for AI-powered command-and-control platforms and embedded devices.
Leads defense tech programs at Anduril, bridging engineering, client needs, and operational goals to develop autonomous air defense systems (e.g., sensor fusion, AI-driven command/control) for military use.
Design and implement quantum-enhanced algorithms and hybrid solutions for defense applications, integrating them into AI-powered command systems using C++, Python, and quantum SDKs like Qiskit or Q#.
Develop autonomy software for military air vehicles, focusing on motion planning, SLAM, and multi-agent coordination using C++/Rust in Linux.
Builds and tests the foundational software stack for autonomous military robotics, integrating sensors, control systems, and AI-driven autonomy for unmanned aircraft and fleet operations.
Designs and implements computer vision systems for autonomous spacecraft operations, integrating hardware sensors, algorithms, and flight software to enable real-time perception, navigation, and mission control across diverse orbital environments.
Develop low-level firmware for wireless systems in autonomous vehicles, including board bring-up, protocol design, and device drivers in C for RTOS environments.
Build and deploy ML models for autonomous systems, focusing on perception, sensor fusion, and ML ops to power uncrewed maritime and air vehicles.
Build and deploy AI-powered computer vision models for real-time defense systems, optimizing multi-sensor object detection and autonomy on edge devices.
Builds foundational software for autonomous military vehicles, integrating control systems, networking, and sensor fusion using languages like C++, Python, and Rust.
Builds real-time sensor fusion and state-estimation software in C++/Rust for autonomous aerial systems, enabling swarm coordination and onboard perception.
Build core vehicle software for autonomous military systems like unmanned jets and drones, focusing on control, networking, and sensor integration using C++/Rust on Linux.
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