Senior Software Engineer, Autonomous Pilot Integration (R5200)
Role details
Job location
Tech stack
Job description
Shield AI is committed to developing cutting-edge autonomy for unmanned platforms across every operating domain - air, maritime, space, and effects/expendables - in service of the U.S. Department of Defense and our international defense customers. Our Autonomous Pilot Integration engineers bridge the gap between R&D and deployment, ensuring autonomous systems function reliably and effectively wherever and whenever they're needed most.
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Develop & Field Autonomy - Develop & integrate autonomy software solutions onto unmanned platforms (air, maritime, space, or effects/expendables), including payload computer bring-up, container-based deployment (e.g., k3s/k3d), and configuration across onboard compute, sensors, and command-and-control interfaces.
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Collaboration Across Teams - Work closely with the Autonomy Capabilities team (motion planning, tactics), the Perception team, feature crews, and external partners (platform integrators, vehicle/autopilot control vendors, C2 providers) to deliver and validate mission-critical functionality on time.
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Pre-deployment Preparation - Own the build, configuration, and validation process for mission-ready systems; coordinate hardware/software compatibility, mission readiness, and release cadence with capability and feature teams.
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On-site Test & Mission Support - Travel to test sites and support live mission operations (flight tests, range exercises, on-water trials, integration events), including safety checks, system bring-up, and troubleshooting under time-critical constraints.
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Hardware/Software Debugging - Diagnose and resolve integration issues across complex autonomy stacks, payload computers, and embedded systems in lab and field environments - including memory, CPU, and timing profiling under operationally-representative loads.
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Mission Data & Debrief Support - Capture mission and test data, reproduce issues in simulation, and partner with autonomy capability owners to drive fixes back into the next build.
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Continuous Improvement - Build tools and processes to improve integration timelines, test/mission reliability, and team efficiency across deployment cycles.
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C2 Interoperability & Standards - Implement and validate compliance with command-and-control standards (e.g., A-GRA, UCI, OMS) and coordinate with C2 providers on interface contracts and integration milestones.
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Travel Requirement - Members of this team typically travel around 10-20% of the year (to different office locations, customer sites, and integration/test events).
Requirements
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BS/MS in Computer Science, Electrical Engineering, Mechanical Engineering, Aerospace Engineering, and/or similar degree, or equivalent practical experience
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Typically requires a minimum of 5 years of related experience with a Bachelor's degree; or 4 years and a Master's degree; or 2 years with a PhD; or equivalent work experience.
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Proficiency in C++, with experience developing or integrating real-time or latency-sensitive systems.
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Proficiency in Linux-based development and experience working with embedded systems, shell scripting, and system diagnostics.
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Familiarity with middleware, pub-sub, or IPC frameworks used in autonomy or robotics systems (e.g., DDS, ActiveMQ).
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Hands-on experience supporting demos, exercises, or field/mission tests for unmanned or autonomous systems.
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Experience with autonomy simulation environments for testing and validation.
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Strong problem-solving skills, with the ability to troubleshoot and optimize system performance across the full stack.
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Excellent communication and teamwork skills, with the ability to work effectively in a collaborative, multidisciplinary environment.
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Ability to obtain a SECRET clearance.
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Direct experience supporting uncrewed systems (air, maritime, space, ground, or effects/expendables) or similar field test campaigns.
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Proficiency in Python for scripting, automation, and analysis.
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Familiarity with autonomy stacks, motion planning, or vehicle-control integration.
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Competence in vehicle electronics bring-up (avionics, spacecraft buses, or vessel control), payload computer integration, or hardware-in-the-loop debugging.
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Experience with container orchestration (e.g., k3s, k3d, Docker) on embedded or payload compute.
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Familiarity with platform control / autopilot stacks (e.g., PX4, ArduPilot, spacecraft flight software, vessel autopilots).
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Proficiency in developing automation tools for system testing, logging, and data parsing.
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Build-system experience (e.g., Conan, CMake) and CI/CD pipeline familiarity.
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Comfortable interfacing with DoD stakeholders during field events or technical reviews.
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Experience with C2 standards such as A-GRA, UCI, or OMS.
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Familiarity with government-furnished simulation environments (e.g., AFSIM, NGTS) is a plus.
Benefits & conditions
Full-time regular employee offer package:
Pay within range listed + Bonus + Benefits + Equity
Temporary employee offer package:
Pay within range listed above + temporary benefits package (applicable after 60 days of employment)
Salary compensation is influenced by a wide array of factors including but not limited to skill set, level of experience, licenses and certifications, and specific work location. All offers are contingent on a cleared background and possible reference check. Military fellows and part-time employees are not eligible for benefits. Please speak to your talent acquisition representative for more information.