About the job
At Anduril Industries, we are at the forefront of defense technology, dedicated to revolutionizing U. S. and allied military capabilities through innovative advancements. Our mission is to integrate the expertise, technology, and business acumen of the most forward-thinking companies into the defense sector, transforming how military systems are conceptualized, developed, and deployed. Powered by Lattice OS, our AI-driven operating system, we synthesize vast data streams into a real-time, three-dimensional command and control center. As we navigate an era of strategic competition, Anduril is devoted to delivering cutting-edge autonomy, AI, computer vision, sensor fusion, and networking technologies to the military in a matter of months rather than years.
ABOUT THE TEAM
The Air Dominance & Strike (AD&S) team specializes in autonomous robotics systems, including the Fury unmanned fighter jet and the Barracuda series of advanced effects. The Vehicle Software team within AD&S is pivotal in developing the software that powers these systems. Our engineers work collaboratively across disciplines to create software for vehicle control, networking, sensor integration, and telemetry. We are on the lookout for passionate engineers who aspire to build the foundational vehicle software stack supporting a diverse array of AD&S initiatives, from early concept simulations to first flights and large-scale fleet management.
ABOUT THE JOB
We are in search of a skilled software engineer with a specialization in machine vision to enhance guidance systems for large air vehicles. In this role, you will focus on implementing innovative image processing algorithms sourced from multiple image streams and sensors, utilizing both conventional and cutting-edge machine learning techniques. Additionally, you will collaborate on sensor fusion algorithms, integrating data from various sensor sources to improve system reliability and performance.
WHAT YOU’LL DO
- Integrate and develop tests for camera calibration software
- Create and optimize algorithms for real-time image processing and analysis

