Staff EO Signal Image Processing Engineer - 5
Northrop Grumman
- Location
- United States-Arizona-Chandler
- Work model
- On-Site
- Level
- Staff
- Posted
- 1d ago
About this role
RELOCATION ASSISTANCE: Relocation assistance may be available CLEARANCE REQUIRED FOR START: Yes CLEARANCE TYPE: Secret TRAVEL: Yes, 10% of the Time Description At Northrop Grumman, our employees have incredible opportunities to work on revolutionary systems that impact people's lives around the world today, and for generations to come. Our pioneering and inventive spirit has enabled us to be at the forefront of many technological advancements in our nation's history - from the first flight across the Atlantic Ocean, to stealth bombers, to landing on the moon. We look for people who have bold new ideas, courage and a pioneering spirit to join forces to invent the future, and have fun along the way. Our culture thrives on intellectual curiosity, cognitive diversity and bringing your whole self to work — and we have an insatiable drive to do what others think is impossible. Our employees are not only part of history, they're making history. Northrop Grumman Space Systems is looking for a Staff EO Signal Image Processing Engineer to support the Launch Vehicles business unit in Chandler, Arizona. You will work as a technical leader on the electro-optical infrared (EO/IR) modeling, algorithm, and simulation (MAS) group within the Seeker Integrated Product Team (IPT). Responsibilities include the design, development, verification, and implementation of image processing algorithms, high‑fidelity simulation tools, and physics‑based models supporting seeker development and flight test. The team develops and maintains high‑fidelity 6‑DOF simulations, evaluates seeker performance in relation to algorithms and hardware, and builds/maintains the seeker test suite. The selected candidate will lead complex modeling and simulation (M&S) efforts, mentor junior engineers, and collaborate across disciplines and programs in a fast‑paced, team‑oriented environment.
Responsibilities
Lead and architect the development of advanced, high-fidelity seeker simulations and physics-based models (including closed-loop 6DOF) for overall system design, performance assessment, and flight test readiness. Oversee and set direction for team members on complex modeling, simulation, and algorithm development activities, ensuring delivery aligns with critical program objectives and high technical standards. Develop, implement, and integrate advanced image and signal processing algorithms into simulation environments; conduct in-depth trade studies and optimize for both performance and robustness across operational scenarios. Apply expert-level EO/IR phenomenology and advanced physics to model seeker hardware, scene environments, and flight conditions, including management of scene generators (e.g., MSLRAD or similar). Serve as principal technical interface and collaborator with GNC, systems, software, firmware, and hardware teams; provide guidance for requirements flow down, test planning, and verification strategies. Lead HWIL, lab, and real-time test activities, correlating simulation and model predictions with test/flight data; spearhead root cause analysis and direct model updates as required. Provide comprehensive technical leadership, mentor staff and junior engineers, and champion continuous improvement in modeling standards, coding practices, and configuration management. Represent the M&S team in internal and external technical reviews, delivering clear, high-impact briefings and program updates.
Basic Qualifications
Bachelor’s degree in Optical Engineering, Electrical Engineering, Physics, Math, or related discipline from an accredited university and 12 years of related experience; or Master’s degree and 10 years of related experience; or PhD and 8 years of related experience. Active U.S. Government DoD Secret security clearance at time of application, current and within scope. Demonstrated breadth and depth in image/signal processing algorithm development and physical optics system simulation for EO/IR or seeker-related