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Simulator Engineer Jobs in Dallas, TX (NOW HIRING)

JOB SUMMARY The Director, Simulation Center Operations, reporting to the Assistant Vice President ... engineering and innovations lab. BENEFITS UT Southwestern is proud to offer a competitive and ...

Senior Simulation Engineer Onsite

Dallas, TX ยท On-site

$103K - $142K/yr

Experience with campaign analysis simulation tools * Experience applying the physics of magnetism in a practical, research, engineering, or laboratory setting. Learn More and Apply Now! * โ€‹Onsite:

HWIL FPGA Engineer

Allen, TX ยท On-site

$150 - $200/hr

Working alongside simulation, hardware, electrical, mechanical, software, and guidance engineers, you'll develop FPGA-based solutions that bridge high-fidelity 6-DOF simulation with physical hardware ...

HWIL FPGA Engineer

Allen, TX ยท On-site

$120K - $155K/yr

Working alongside simulation, hardware, electrical, mechanical, software, and guidance engineers, you'll develop FPGA-based solutions that bridge high-fidelity 6-DOF simulation with physical hardware ...

Showing results 21-40

Simulator Engineer information

See Dallas, TX salary details

$25

$53

$76

How much do simulator engineer jobs pay per hour?

As of Sep 7, 2026, the average hourly pay for simulator engineer in Dallas, TX is $53.28, according to ZipRecruiter salary data. Most workers in this role earn between $42.98 and $61.88 per hour, depending on experience, location, and employer.

What is a simulator engineer?

Simulator Engineers are professionals who design, develop, maintain, and optimize simulation systems used to replicate real-world processes or equipment. These simulations are commonly used for training, testing, and research across industries such as aviation, automotive, defense, and healthcare. Simulator Engineers work with both hardware and software components to ensure simulations are accurate, reliable, and meet specific requirements. Their responsibilities often include troubleshooting, upgrading systems, and collaborating with subject matter experts to create realistic training environments.

What are the key skills and qualifications needed to thrive as a simulator engineer, and why are they important?

To thrive as a Simulator Engineer, you need a solid background in engineering, computer science, or a related field, along with strong analytical and problem-solving skills. Experience with simulation software (such as MATLAB/Simulink, Unity, or similar), programming languages (like C++ or Python), and knowledge of hardware integration are typically required. Excellent communication, teamwork, and project management abilities help you collaborate effectively and manage complex projects. These skills ensure accurate simulation development, smooth project execution, and the ability to meet client or organizational requirements.

What are some common challenges simulator engineers face when integrating new technologies into existing simulation systems?

Simulator Engineers often encounter challenges when integrating new technologies, such as ensuring compatibility with legacy hardware and software, minimizing system downtime, and maintaining simulation accuracy. They must also rigorously test new components to meet industry standards and user requirements while collaborating closely with software developers, hardware engineers, and end users to address unforeseen issues. Adaptability and strong problem-solving skills are essential, as Simulator Engineers frequently need to troubleshoot and customize solutions for complex simulation environments.

What is the difference between Simulator Engineer vs Test Engineer?

AspectSimulator EngineerTest Engineer
Required credentialsBachelor's or higher in engineering, specialized training in simulationBachelor's or higher in engineering, quality assurance, or related field
Work environmentDesigning, developing, and testing simulation systems in labs or officesConducting tests on products or systems in labs, manufacturing, or field settings
Employer & industry usageUsed mainly in aerospace, defense, automotive, and training sectorsCommon across manufacturing, software, aerospace, and automotive industries

Simulator Engineers focus on creating and refining simulation systems to mimic real-world scenarios, while Test Engineers primarily evaluate and validate products or systems through testing procedures. Both roles require technical expertise and often collaborate, but Simulator Engineers specialize in simulation development, whereas Test Engineers concentrate on quality assurance and performance validation.

What are popular job titles related to Simulator Engineer jobs in Dallas, TX?

For Simulator Engineer jobs in Dallas, TX, the most frequently searched job titles are:

What cities near Dallas, TX are hiring for Simulator Engineer jobs?

Cities near Dallas, TX with the most Simulator Engineer job openings:

Infographic showing various Simulator Engineer job openings in Dallas, TX as of August 2026, with employment types broken down into 92% Full Time, 4% Part Time, and 4% Contract. Highlights an 87% Physical, 5% Hybrid, and 8% Remote job distribution, with an average salary of $110,351 per year, or $53.1 per hour.

GNC/ Simulation Engineer

Delta Black Aerospace Inc

Mckinney, TX โ€ข On-site

Full-time

Medical, Dental, Vision, Retirement

Re-posted 23 days ago


Job description

Description:

Delta Black Aerospace is seeking a Guidance, Navigation & Control (GNC) and Simulation Engineer to own the navigation and autonomy architecture of the RAIDER 330 UAS. This is a high-impact, highly technical role responsible for developing GNC algorithms, building high-fidelity vehicle simulation environments, and validating navigation performance across the full mission envelope — including GPS-denied and electromagnetically contested environments. You will bridge the world of mathematical modeling and real hardware, working tightly with the integration and flight test teams to tune, validate, and field navigation solutions that perform when it matters most. Proficiency with Simulink is required; experience with Applied Navigation’s Quattro FMS and Vigilant Spirit is strongly preferred.


KEY RESPONSIBILITIES


» Develop, implement, and tune GNC algorithms for the RAIDER 330 across VTOL, transition, cruise, and E-STOL flight regimes

» Build and maintain a high-fidelity 6-DOF simulation environment in MATLAB/Simulink, including aerodynamic models, hybrid-electric propulsion dynamics, actuator models, and sensor noise models

» Design and validate navigation filter architectures including Extended Kalman Filters (EKF), Unscented Kalman Filters (UKF), or factor graph-based estimators for multi-sensor fusion

» Integrate and evaluate navigation sensors including IMU, GPS/GNSS, barometric altimeter, optical flow, and radar altimeter into a cohesive navigation solution

» Develop GPS-denied and GNSS-degraded navigation capabilities leveraging sensor fusion, dead reckoning, ter-rain-aided navigation, or visual-inertial odometry

» Support hardware-in-the-loop (HIL) and software-in-the-loop (SIL) test campaigns to validate GNC performance against simulation predictions

» Configure and integrate INS/GPS systems, including interface definition, initialization procedures, and in-flight calibration routines

» Support Ground Control Station (GCS) integration including data link configuration, GCS-to-aircraft command/control interface, and mission planning workflows

» Perform Monte Carlo analysis, trajectory optimization, and performance sensitivity studies to bound navigation accuracy across environmental conditions

» Collaborate with flight test engineers to design GNC-specific test cards, analyze flight data, and close the loop between simulation predictions and measured flight results

» Maintain GNC documentation including algorithm design documents, simulation validation reports, and navigation performance specifications

» Support autopilot tuning and flight control law refinement for all RAIDER 330 flight modes.

Requirements:

REQUIRED QUALIFICATIONS


» Bachelor of Science in Aerospace Engineering, Electrical Engineering, Applied Mathematics, or related discipline; Master’s degree preferred

» 3+ years of GNC engineering experience on aerospace, defense, or UAS platforms

» Expert-level proficiency in MATLAB and Simulink, including model-based design and code generation workflows

» Strong foundation in estimation theory, multi-sensor data fusion, and inertial navigation fundamentals

» Demonstrated experience developing and validating navigation filters (EKF, UKF, or equivalent) in simulation and on hardware

» Familiarity with 6-DOF rigid body dynamics, flight mechanics, and aerodynamic modeling

» Experience with GPS-denied or GNSS-degraded navigation techniques

» Strong analytical and debugging skills — comfortable tracing navigation errors from sensor input through algorithm output to flight behavior

» Proficiency in Python and/or C/C++ for embedded GNC implementation and data analysis


PREFERRED QUALIFICATIONS


» Hands-on experience with Applied Navigation hardware and software integration on airborne platforms

» Operational or integration experience with Vigilant Spirit including mission planning, payload control, and C2 link configuration

» Experience with contested/denied/degraded navigation environments and electronic warfare considerations for UAS

» Background with trajectory optimization tools or real-time path planning algorithms

» Experience with ROS or similar middleware for sensor integration and GNC prototyping

» Knowledge of relevant navigation standards such as STANAG 4671, ARP4754A, or DO-316

» Active Secret or Top Secret/SCI clearance

» Prior experience supporting GNC for DoD acquisition programs, OTAs, or SBIR/STTR efforts


SECURITY CLEARANCE


Active Secret clearance required; Top Secret/SCI strongly preferred given the contested-environment and GPS-denied nature of RAIDER 330 mission sets. U.S. Citizenship required.


COMPENSATION & BENEFITS


» Competitive base salary commensurate with experience; equity participation available

» Full medical, dental, and vision benefits

» 401(k) with company contribution

» Opportunity for rapid career advancement in a high-growth defense technology company

» Direct collaboration with former Warfighters and senior UAS industry experts

» Travel to test sites and partner facilities as required to support simulation validation and flight test campaigns