The rapid growth of unmanned aircraft systems (UAS) and their expected integration into urban and peri-urban environments pose new challenges in terms of safety, security, privacy, and social acceptance. Existing risk assessment frameworks, such as SORA, provide a foundation for authorising UAS operations, but they require further refinement to capture the complexity of new scenarios, including urban air mobility (UAM) and operations supported by U-space services.
U-AGREE addresses this challenge by enhancing and integrating air, ground, and collision risk models into a comprehensive framework for UAS risk assessment. The project develops representative operational scenarios (e.g. flights over populated areas, inspections of critical infrastructures, operations in vertiports) and analyses the hazards associated with these operations. Based on this foundation, U-AGREE builds improved quantitative risk models, assesses how U-space services can mitigate those risks, and formulates proposals to adapt the SORA methodology accordingly.
The overall objective of U-AGREE is to provide robust, evidence-based models that support safe and efficient deployment of UAS and UAM in Europe. By linking risk modelling with regulatory needs, the project contributes to faster and more reliable approval of UAS operations, improved safety for people on the ground and in the air, and better alignment between technological innovation and regulatory frameworks.
In this way, U-AGREE supports the SESAR 3 JU flagship on “Innovative Air Mobility”, providing tools that enable European regulators, service providers, and industry stakeholders to anticipate risks, design effective mitigations, and build public trust in the safe integration of drones and emerging air mobility solutions.