Staff Engineer, Software - Autonomous Aircraft Integration (R4983)

engineeringjobs.net, Inc.

Washington (District of Columbia)

On-site

USD 120,000 - 180,000

Full time

5 days ago
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Job summary

engineeringjobs.net, Inc. seeks a Flight Integration Engineer—Autonomy to deploy and validate advanced autonomous systems on unmanned platforms.

You will lead hardware-software integration across compute, sensors, avionics, and control interfaces, and prepare platforms for flight. The role involves live testing, troubleshooting, and data-driven performance improvements, with travel to test sites and customer locations.

Qualifications

  • BS or MS in Computer Science, Electrical Engineering, Mechanical Engineering, Aerospace Engineering, or a related discipline; equivalent practical experience may also be considered.
  • Typically 7+ years of related experience with a Bachelor's degree, 5+ years with a Master's degree, or 4+ years with a PhD, or equivalent professional experience.
  • Strong programming skills in C++ and Python.
  • Familiarity with real-time operating systems (RTOS).
  • Strong experience working in Linux-based development environments.
  • Experience with embedded systems, shell scripting, and system diagnostics.
  • Knowledge of sensor integration and sensor fusion.
  • Experience with middleware frameworks such as ROS and/or DDS.
  • Hands-on experience supporting flight demonstrations or live exercises.
  • Experience with simulation and validation environments such as AFSIM and/or NGTS.
  • Strong systems-level troubleshooting and performance optimization skills.
  • Strong communication and teamwork skills with the ability to operate effectively across multidisciplinary engineering teams.
  • Ability to obtain a U.S. Secret security clearance.

Responsibilities

  • Autonomy System Integration: Integrate autonomy software onto unmanned aircraft, ensuring reliable operation across onboard compute, sensors, control interfaces, and supporting hardware.
  • Flight System Preparation: Own system build, configuration, integration, and validation activities required to prepare platforms for flight.
  • Hardware/Software Integration: Ensure compatibility between autonomy software, embedded hardware, sensors, avionics, and other platform systems.
  • Flight Test Support: Travel to test locations and support live flight operations, including system bring-up, safety checks, mission preparation, and real‑time troubleshooting.
  • System Troubleshooting: Diagnose and resolve complex hardware, software, networking, embedded-system, and autonomy-stack integration issues in laboratory and field environments.
  • Flight Data & Analysis: Manage mission data collection and post‑flight analysis, partnering with autonomy engineers to identify performance issues and improve system behavior.
  • Cross‑Functional Engineering: Collaborate with autonomy, Guidance, Navigation & Control (GNC), systems engineering, hardware, and test teams to deliver and validate mission‑critical capabilities.
  • Integration Tools & Automation: Develop tools, automation, and processes that improve system testing, deployment timelines, data collection, and flight‑test reliability.
  • Certification & Compliance: Support documentation and system‑level validation activities related to airworthiness, certification, and defense requirements.
  • Continuous Improvement: Identify opportunities to improve integration processes, system reliability, and overall deployment efficiency.

Skills

C++
Python
RTOS
Linux
Shell scripting
System diagnostics
Sensor fusion
Sensor integration

Education

Bachelor's degree in a related field
Master's degree in a related field
PhD in a related field

Tools

ROS
DDS
AFSIM
NGTS

Job description

Flight Integration Engineer -- Autonomy
Position Summary

The Flight Integration Engineer is responsible for deploying advanced autonomy solutions onto unmanned platforms and ensuring those systems perform reliably in real-world flight environments.

This role sits at the intersection of hardware, software, autonomy, and systems engineering, bridging the gap between R&D and operational deployment. The engineer will integrate autonomy software with onboard compute, sensors, avionics, and control systems; prepare platforms for flight; support live testing; and troubleshoot mission-critical issues in both laboratory and field environments.

This is a highly hands‑on position suited for an engineer who enjoys complex system integration, rapid problem-solving, and working directly with unmanned aircraft.

Key Responsibilities
  • Autonomy System Integration: Integrate autonomy software onto unmanned aircraft, ensuring reliable operation across onboard compute, sensors, control interfaces, and supporting hardware.
  • Flight System Preparation: Own system build, configuration, integration, and validation activities required to prepare platforms for flight.
  • Hardware/Software Integration: Ensure compatibility between autonomy software, embedded hardware, sensors, avionics, and other platform systems.
  • Flight Test Support: Travel to test locations and support live flight operations, including system bring-up, safety checks, mission preparation, and real‑time troubleshooting.
  • System Troubleshooting: Diagnose and resolve complex hardware, software, networking, embedded-system, and autonomy-stack integration issues in laboratory and field environments.
  • Flight Data & Analysis: Manage mission data collection and post‑flight analysis, partnering with autonomy engineers to identify performance issues and improve system behavior.
  • Cross‑Functional Engineering: Collaborate with autonomy, Guidance, Navigation & Control (GNC), systems engineering, hardware, and test teams to deliver and validate mission‑critical capabilities.
  • Integration Tools & Automation: Develop tools, automation, and processes that improve system testing, deployment timelines, data collection, and flight‑test reliability.
  • Certification & Compliance: Support documentation and system‑level validation activities related to airworthiness, certification, and defense requirements.
  • Continuous Improvement: Identify opportunities to improve integration processes, system reliability, and overall deployment efficiency.
Required Qualifications
  • BS or MS in Computer Science, Electrical Engineering, Mechanical Engineering, Aerospace Engineering, or a related discipline; equivalent practical experience may also be considered.
  • Typically 7+ years of related experience with a Bachelor's degree, 5+ years with a Master's degree, or 4+ years with a PhD, or equivalent professional experience.
  • Strong programming skills in C++ and Python.
  • Familiarity with real-time operating systems (RTOS).
  • Strong experience working in Linux-based development environments.
  • Experience with embedded systems, shell scripting, and system diagnostics.
  • Knowledge of sensor integration and sensor fusion.
  • Experience with middleware frameworks such as ROS and/or DDS.
  • Hands‑on experience supporting flight demonstrations or live exercises.
  • Experience with simulation and validation environments such as AFSIM and/or NGTS.
  • Strong systems‑level troubleshooting and performance optimization skills.
  • Strong communication and teamwork skills with the ability to operate effectively across multidisciplinary engineering teams.
  • Ability to obtain a U.S. Secret security clearance.
Preferred Qualifications
  • Direct experience with unmanned aerial systems (UAS) or similar flight‑test programs.
  • Familiarity with autonomy stacks, flight‑control systems, and/or GNC pipelines.
  • Experience with sensor integration, electronics troubleshooting, avionics integration, or system bring‑up.
  • Experience developing automation tools for system testing, logging, diagnostics, and data parsing.
  • Experience working directly with DoD customers or stakeholders during field events, demonstrations, or technical reviews.
  • Experience with UCI and OMS standards.
Travel

Approximately 30--40% travel is expected to support customer sites, flight‑test locations, other company facilities, and integration events.

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