Home News OneSky, Ansys collaborate for Advanced Air Mobility Solutions

OneSky, Ansys collaborate for Advanced Air Mobility Solutions

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OneSky, Ansys collaborate for AI-Based Advanced Air Mobility Solutions
High-fidelity electric vertical take-off and landing (eVTOL) simulation for Cockpit Display System validation

OneSky Systems and Ansys are collaborating to progress autonomy in advanced air mobility (AAM) solutions. OneSky is providing its technology integrated with Ansys’ solutions to develop artificial intelligence (AI)-based software equipped with perception and decision-making software.

The collaboration enables OneSky and Ansys AAM customers to train and validate neural networks (NN) with mission-driven simulation to significantly reduce the risk, time, and costs associated with physical testing required for airworthiness certification. The software accelerates and enhances the development, validation, and certification processes of autonomous AAM transport systems.

OneSky combines its operations simulation and flight planning methodologies with Ansys’ autonomy solution to strengthen the fidelity of its systems-level simulations. This integrated solution provides aircraft developers and suppliers with end-to-end workflow solutions to help ensure unmanned aircraft systems (UAS) are safe, efficient, compliant, and scalable from one vehicle to a full fleet. From the concept of operations (ConOps) to mission validation, the integrated Ansys and OneSky solutions allow customers to safely train, test, and validate critical UAS and AAM applications, building confidence around AI-based software and autonomy in embedded systems.

“The integrated Ansys and OneSky solutions provide customers with a vast and thorough digital simulation range where we can position systems, supporting infrastructures, and simulations in a safety-critical space to analyze before building prototypes or physically flying in the airspace,” said Bob Hammett, CEO at OneSky.

Leveraging Ansys’ model-based environment and OneSky (authoritative) airspace modeling, customers can drive the analysis, development, and airworthiness certification of autonomous software for AAM applications. Combining high-fidelity simulation and digital mission engineering helps enable customers to develop and validate systems in action against mission and agency requirements. Digital mission engineering expands simulation from a static model to an interactive model of the operational environment, which is critical in accurately predicting and validating the behavior of autonomous systems.