What We Do
Digital Engineering Solutions
Delivering advanced digital engineering by combining AI, high-fidelity modeling and simulation, immersive visualization, and high-performance computing to accelerate design and drive optimized, data-driven solutions.
Developing and utilizing artificial intelligence to solve a variety of problems, including cooperative-agent wargame engagement optimization, sensor scene modeling, and post-engagement sensor assessment.
Developing immersive and interactive virtual reality visualizations of computational models and simulation results, increasing comprehension of complex physical processes through intuitive methods of observation.
CAVEMAN is a high-fidelity computational model of the human body with the geometric detail and accuracy needed to predict the outcomes of extreme loading events on the human anatomy.
Delivering high-end engineering, modeling, data analysis, and advanced manufacturing support to companies that need rapid, reliable, and technically rigorous solutions. We are helping commercial clients accelerate product development, solve complex performance challenges, and bring innovative ideas to market with speed and precision.
Corvid has access to Corvid HPC, our subsidiary company, which delivers advanced high-performance computing solutions that accelerate complex engineering simulations, data analysis, and modeling. With scalable computing power and expertise, it enables faster, more efficient insights for aerospace, defense, and commercial applications.
Velodyne is a high-fidelity, multi-physics, multi-numerics, hydro-structural solver used to analyze high strain large material deformation events. RavenCFD (computational fluid dynamics) is a full three-dimensional Navier-Stokes flow solver for compressible viscous flows on unstructured grids. RavenCFD is tailored for robust steady-state and time-accurate solutions for a variety of multi-dimensional flows.
Leveraging internally developed computational analysis tools to optimize design earlier than the standard build and test paradigm to improve efficiency, reduce the design cycle, and develop optimized solutions.
Utilizing first principle and high-fidelity modeling to generate Radar Cross Section (RCS) and Electro-Optical Infrared (EO/IR) signatures.
Supporting mission planning and execution with advanced modeling, simulation, and decision-support tools that enable precise, data-driven operations across complex threat environments.