Skip to content

Atlas / Learn / Papers / 20190027045

NASA NTRS · Book Chapter

A Fuzzy Logic Approach for Separation Assurance and Collision Avoidance for Unmanned Aerial Systems

Published 2019-07-11 From Ames Research Center 3 authors

Attribution

This is the abstract and citation. Full text lives at NASA NTRS — we link out rather than host. All credit to the authors and Ames Research Center.

Abstract

Verbatim from NASA NTRS. Not paraphrased, not summarized.

In the coming years, operations in low altitude airspace will vastly increase as the capabilities and applications of small Unmanned Aerial Systems (sUAS) continue to multiply. Therefore, solutions to managing sUAS in highly congested airspace must be explored. In this study, a Fuzzy Logic based approach was used to help mitigate the risk of collisions between aircraft using separation assurance and collision avoidance techniques. The system was evaluated for its effectiveness to mitigate the risk of mid-air collisions between aircraft. This system utilizes only current state information and can resolve potential conflicts without knowledge of intruder intent. The avoidance logic was verified using formal methods and shown to select the correct action in all instances. Additionally, the Fuzzy Logic Controllers were shown to always turn the vehicles in the correct direction. Numerical testing demonstrated that the avoidance system was able to prevent a mid-air collision between two sUAS in all tested cases. Simulations were also performed in a three-dimensional environment with a heterogenous fleet of sUAS performing a variety of realistic missions. Simulations showed that the system was 99.98 effective at preventing mid-air collisions when separation assurance was disabled (unmitigated case) and 100 effective when enabled (mitigated case).

Authors

  • Cook, Brandon Matthew NASA Ames Research Center
  • Arnett, Timothy Cincinnati Univ.
  • Cohen, Kelly Cincinnati Univ.

Keywords

  • Verification & Validation of a Fuzzy Logic Controller
  • Intelligent Control
  • UAS Collision Avoidance

Citation: Cook, Brandon Matthew, Arnett, Timothy, Cohen, Kelly (2019). A Fuzzy Logic Approach for Separation Assurance and Collision Avoidance for Unmanned Aerial Systems. Ames Research Center. NASA NTRS ID 20190027045. https://ntrs.nasa.gov/citations/20190027045 ↗