An application made for this job — a tailored resume and cover letter that speak straight to the posting.
DCS Corporation is seeking an Air Systems Modeling Engineer to develop and sustain high-fidelity threat models for manned and autonomous air systems. You will work with NASIC processes to design, implement, and validate models used in multi-vehicle simulations such as AFSIM, NGTS, ITASE and JSE.
You will collaborate with NASIC SMEs and analysts to ensure model accuracy, performance validity, and fidelity. Strong MATLAB/Simulink/Stateflow expertise and TS/SCI clearance are required.
DCS is looking for an Air Systems Modeling Engineer who will support the full lifecycle of threat system model development for manned and autonomous integrated air systems. This role involves applying NASIC's Model Production and M&S R&D processes to design, implement, validate, and maintain highfidelity aircraft and subsystem models used in advanced multivehicle simulation environments. The engineer will support characterization of threat system performance through technical intelligence analysis, subsystem modeling, and integration of physicsbased, algorithmic, and behavioral components.
This position requires strong experience in MATLAB/Simulinkbased model development, airborne system analysis, and modeling of sensors, C2/datalink systems, signal processing chains, aircraft dynamics, and electronic attack behaviors. The selected engineer will work directly with NASIC modeling SMEs and allsource analysts to ensure model accuracy, performance validity, and missiondriven fidelity requirements.
Model Development & Sustainment.
Develop, maintain, and enhance TMAP manned and unmanned integrated air system models in accordance with NASIC model production standards.
Build MATLAB/Simulink/Stateflow threat models and subsystem components from templates, legacy models, and technical characterization data.
Maintain and expand Simulink library block collections and tools used for TMAP model generation.
Ensure models support integration into M&S environments such as AFSIM, NGTS, ITASE, and JSE.
Review current intelligence assessments and implementation details to identify subsystem performance gaps and modeling deficiencies.
Perform technical analysis of threat air systems in coordination with the Government Task Manager (GTM).
Characterize all relevant subsystems including: fire control chains, radar and EO/IR sensors, datalink systems, command and control architectures, pilot/agent behavioral logic, electronic attack techniques, and signal processing pipelines.
Identify and document all algorithms, processing techniques, hardware characteristics, and subsystem interactions relevant to model implementation.
Verify model performance against assessed threat capabilities and document findings in Threat Verification & Validation Reports (TVVRs).
Conduct comparative analysis across multiple data sources to ensure consistency in subsystem modeling and performance assumptions.
Produce technical studies, workflow recommendations, and model architecture reports that document modeling rationale, assumptions, and subsystem fidelity requirements.
Review candidate models, tools, and production processes to identify required maintenance, improvements, and performance tuning.
Integrate sensor physics, communications models, aerodynamic profiles, mass properties, propulsion characteristics, and other performance drivers into model workflows.
Recommend improvements to modeling architectures when existing tools cannot meet simulation fidelity or performance requirements.
Utilize the NASIC M&S R&D process to model nextgeneration manned and autonomous air systems, including cooperative combat and advanced special mission aircraft.
Support subsystemlevel R&D and enhance model reuse across emerging threat platforms.
Conduct technical intelligence research to characterize new and emerging threats, integrating findings into future TMAP model architectures.
Work closely with NASIC modeling SMEs and allsource analysts to ensure technical alignment with modeling objectives and standard practices.
Participate in technical reviews, model walkthroughs, and collaborative characterization sessions.
Due to the sensitivity of customer related requirements, U.S. Citizenship is required.
Must have an active TS/SCI clearance.
Bachelor's degree in a STEM discipline (engineering, physics, computer science, or related field).
Minimum of 8 years of experience in modeling and simulation, aerospace systems analysis, threat modeling, or related technical domain.
Expertise in MATLAB/Simulink/Stateflow model development, subsystem modeling, and model integration workflows.
Experience developing or supporting aircraft, sensor, or EWrelated models in physicsbased or algorithmic environments.
Familiarity with multivehicle simulation frameworks (AFSIM, NGTS, ITASE, JSE, etc.)
Strong understanding of aircraft subsystems including sensors, communications, flight dynamics, propulsion, and weapon system integration.
Ability to interpret technical intelligence, performance data, and system specifications for model implementation.
Strong technical writing skills for producing V&V reports, studies, and subsystem modeling documentation.
Experience using NASIC inhouse modeling tools such as Simian Lite, Cyclops Lite, Hercules, Artemis Lite, Chiron, Cerberus, or Diana.
Prior work supporting NASIC, Air Force M&S organizations, or DoD intelligence modeling missions.
Familiarity with EWIRDB, ITASE threat models, and airborne system characterization workflows.
Experience modeling, advanced signal processing, sensor fusion, electronic attack, and C2/datalink architectures.
Background in AFSIM model integration or largescale simulation test architectures.