Conference Paper, 2024

Airspace Situational Awareness: Proposed Airspace Safety Concepts & State-of-the-Art Review of UAS Aircraft Detection Technologies

2024 International Conference on Unmanned Aircraft Systems (ICUAS), ISBN 979-8-3503-5788-2, Volume 00, Pages 1393-1400, 10.1109/icuas60882.2024.10557082

Contributors

Maalouf, Guy [1] Jepsen, Jes Hundevadt 0009-0001-1898-7099 [1] Jensen, Kjeld 0000-0002-7630-521X [1]

Affiliations

  1. [1] University of Southern Denmark
  2. [NORA names: SDU University of Southern Denmark; University; Denmark; Europe, EU; Nordic; OECD]

Abstract

The integration of UAS into lower airspace requires trustworthy Detect and Avoid (DAA) capabilities, which hinge on robust Airspace Situational Awareness (ASA) technologies. This paper introduces a structured approach to effectively address and simplify the challenges of ASA for UAS. It introduces Operational Classes (OCs) for categorising airspace risks, System Configurations (SysCons) for grouping distinct system structures, and DAA Strategies, based on ACAS-Xu, for improving UAS safety and operational efficiency through proactive and reactive measures. Furthermore, it explores diverse detection technologies for both cooperative and non-cooperative aircraft, analysing their strengths and limitations, and recommends which technologies to use for various SysCons.

Keywords

DAA, UA, aircraft, airspace, approach, avoidance, awareness, capability, challenges, class, concept, configuration, detection, detection technology, efficiency, hinge, integration, integration of UAS, limitations, lower airspace, measurements, non-cooperative aircraft, operation, operational efficiency, operator classes, reactivity measurements, risk, safety, safety concept, situational awareness, strategies, strength, structure, structured approach, system, system configuration, system structure, technology, trustworthiness detection

Funders

  • European Commission

Data Provider: Digital Science