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Inertial Navigation Engineer Jobs in Alabama (NOW HIRING)

Serve as a Geophysical Navigation Engineer for the Leidos Contested Autonomy and Navigation Branch ... Fuse simulated and real-world sensor inputs including inertial sensors, GPS, magnetometers ...

Serve as a Geophysical Navigation Engineer for the Leidos Contested Autonomy and Navigation Branch ... Fuse simulated and real-world sensor inputs including inertial sensors, GPS, magnetometers ...

... Inertial Measurement Units (IMUs), Radar, Lidar, and Camera sensor models * Tune, modify, and ... of navigation engineers helping model HLS descent trajectories to the surface of the Moon.

HLS Navigation Aerospace Engineer

Huntsville, AL · On-site

$90K - $110K/yr

... Inertial Measurement Units (IMUs), Radar, Lidar, and Camera sensor models * Tune, modify, and ... of navigation engineers helping model HLS descent trajectories to the surface of the Moon.

Fuse simulated and real-world sensor inputs from inertial sensors, GPS, altimeters, cameras ... Work within a team of engineers across disciplines to design innovative navigation systems that are ...

Fuse simulated and real-world sensor inputs from inertial sensors, GPS, altimeters, cameras ... Work within a team of engineers across disciplines to design innovative navigation systems that are ...

Fuse simulated and real-world sensor inputs from inertial sensors, GPS, altimeters, cameras ... Work within a team of engineers across disciplines to design innovative navigation systems that are ...

... Inertial Measurement Units (IMUs), Radar, Lidar, and Camera sensor models * Tune, modify, and ... of navigation engineers helping model HLS descent trajectories to the surface of the Moon.

HLS Navigation Aerospace Engineer

Huntsville, AL · On-site

$90K - $110K/yr

... Inertial Measurement Units (IMUs), Radar, Lidar, and Camera sensor models * Tune, modify, and ... of navigation engineers helping model HLS descent trajectories to the surface of the Moon.

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Inertial Navigation Engineer information

How does an Inertial Navigation Engineer typically collaborate with cross-disciplinary teams during the development of navigation systems?

As an Inertial Navigation Engineer, you will frequently work alongside hardware designers, software developers, and systems engineers to integrate inertial sensors into navigation solutions. Collaboration often involves participating in design reviews, troubleshooting integration issues, and ensuring that sensor data is accurately interpreted by system algorithms. Clear communication and teamwork are essential, as you'll be translating complex technical requirements and results between different specialties to ensure the overall reliability and performance of the navigation system.

What does an Inertial Navigation Engineer do?

An Inertial Navigation Engineer specializes in designing, developing, and maintaining systems that use accelerometers and gyroscopes to determine the position, orientation, and velocity of moving objects without relying on external references. These engineers work on technologies used in aircraft, spacecraft, submarines, and autonomous vehicles. Their responsibilities include creating algorithms for sensor data processing, testing navigation systems, and collaborating with multidisciplinary teams to ensure accuracy and reliability in challenging environments.

What is the difference between Inertial Navigation Engineer vs GPS Navigation Engineer?

AspectInertial Navigation EngineerGPS Navigation Engineer
Required CredentialsBachelor's or Master's in Engineering, specialized in inertial systemsBachelor's or Master's in Electrical, Computer, or Software Engineering
Work EnvironmentResearch labs, aerospace, defense, autonomous vehiclesNavigation systems development, mapping, mobile devices, automotive
Industry UsageMilitary, aerospace, autonomous systemsConsumer electronics, automotive, outdoor navigation
Comparison Search IntentUnderstanding inertial vs satellite-based navigationDeveloping or improving GPS-based systems

Inertial Navigation Engineers focus on developing systems that use inertial sensors to determine position without external signals, ideal for environments where GPS signals are unavailable. GPS Navigation Engineers work on satellite-based positioning systems, common in consumer devices and automotive applications. Both roles require strong engineering backgrounds but differ in technology focus and application environments.

What are the key skills and qualifications needed to thrive as an Inertial Navigation Engineer, and why are they important?

To thrive as an Inertial Navigation Engineer, you need a strong background in electrical engineering, physics, or a related field, with expertise in navigation algorithms and sensor fusion. Familiarity with tools such as MATLAB, Simulink, Kalman filters, and inertial measurement units (IMUs), as well as experience with embedded systems and programming languages like C/C++, is typically required. Strong problem-solving skills, attention to detail, and the ability to communicate complex technical information clearly are vital soft skills. These competencies are critical to developing accurate, reliable navigation systems for applications in aerospace, defense, and autonomous vehicles.
What are popular job titles related to Inertial Navigation Engineer jobs in Alabama? For Inertial Navigation Engineer jobs in Alabama, the most frequently searched job titles are:
Geophysical Navigation Engineer

Geophysical Navigation Engineer

Leidos

Huntsville, AL • On-site

$87K - $157K/yr

Full-time

Posted 21 days ago


Leidos rating

8.4

Company rating: 8.4 out of 10

Based on 149 frontline employees who took The Breakroom Quiz

67th of 487 rated business services


Job description

Serve as a Geophysical Navigation Engineer for the Leidos Contested Autonomy and Navigation Branch in Huntsville, AL. Our team's mission is to: (1) develop and demonstrate new alternative navigation technologies to meet urgent military operational needs to operate in GPS-challenged environments, and (2) rapidly transition this technology to operational platforms to outpace the adversary threats currently being faced in the field. This role will focus on alternative navigation systems relying on magnetic and gravity fields as well as other geo-physical sources. Projects involve small teams of engineers working together in spiral or agile development environments to meet aggressive customer schedules aimed at near-term field demonstrations of emerging capabilities. Our core competencies include sensor fusion, geophysical correlation, computer vision, HW/SW integration, and machine learning. Typical customers include Defense Advanced Research Projects Agency (DARPA), Army Combat Capabilities Development Command (CCDC) engineering centers, Office of Naval Research (ONR), and Air Force Research Laboratory (AFRL). We are looking for a candidate who is interested in performing challenging technical work, working with small teams of engineers, and supporting new business activities.
Primary Responsibilities
  • Develop algorithms for real-time GPS-denied navigation.
  • Navigate a variety of platforms, including aircraft, ships, ground vehicles, and pedestrians.
  • Use multiple sensor fusion algorithms, including extended Kalman filters, unscented Kalman filters, particle filters, and factor graphs.
  • Fuse simulated and real-world sensor inputs including inertial sensors, GPS, magnetometers, altimeters, Doppler Velocity Logs, ranging radios, etc.
  • Develop filter error models to accurately reflect uncertainty in sensor measurements and map fidelity
  • Perform covariance analyses to predict expected system performance for a variety of sensor combinations and design reference missions
  • Develop calibration algorithms to enable systems to sense the desired geophysical signal while onboard platforms operating in real-world environments
  • Work within a team of 3-5 engineers to test algorithms on demonstration hardware.
  • Travel with the team to demonstrate systems in real-world conditions; typically lasts 1-2 weeks and occurs 3-4 times a year.
  • Present techniques, solutions, and results to the team and to customers.

Basic Qualifications
  • Bachelor's degree in advanced technical field (electrical engineering, software engineering, aerospace engineering, mechanical engineering, or equivalent) and 4+ years of prior relevant experience or master's degree with 2+ years of prior relevant experience.
  • 2+ years of relevant experience with one or more sensor fusion algorithms: extended Kalman filters, unscented Kalman filters, particle filters, or factor graphs.
  • Programming & analysis experience in MATLAB.
  • US Citizen able to obtain & maintain a Secret security clearance after hiring.

Preferred Qualifications
  • Master's or PhD Degree in one of the majors listed above.
  • Experience with one or more of the sensors listed above, especially inertial sensors.
  • Experience with geophysical map-matching algorithms and correlation techniques.
  • Experience with technical task leadership in small team settings.
  • Experience deploying navigation algorithms to real-time applications.
  • Experience with machine learning, particularly convolutional neural networks.
  • Experience with Linux, C++, and/or Python.
  • Experience with version control tools, especially Git or Subversion.
  • Existing US security clearance (Secret or above).

NKE
If you're looking for comfort, keep scrolling. At Leidos, we outthink, outbuild, and outpace the status quo - because the mission demands it. We're not hiring followers. We're recruiting the ones who disrupt, provoke, and refuse to fail. Step 10 is ancient history. We're already at step 30 - and moving faster than anyone else dares.
Original Posting:
July 6, 2026
For U.S. Positions: While subject to change based on business needs, Leidos reasonably anticipates that this job requisition will remain open for at least 3 days with an anticipated close date of no earlier than 3 days after the original posting date as listed above.
Pay Range:
Pay Range $87,100.00 - $157,450.00
The Leidos pay range for this job level is a general guideline only and not a guarantee of compensation or salary. Additional factors considered in extending an offer include (but are not limited to) responsibilities of the job, education, experience, knowledge, skills, and abilities, as well as internal equity, alignment with market data, applicable bargaining agreement (if any), or other law.

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About Leidos

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At Leidos, we deliver innovative solutions through the efforts of our diverse and talented people who are dedicated to our customers' success. We empower our teams, contribute to our communities, and operate sustainable practices. Everything we do is built on a commitment to do the right thing for our customers, our people, and our community.

Industry

It services

Company size

10,000+ Employees

Headquarters location

Reston, VA, US

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