Safety-aware hybrid control of airborne wind energy systems
A fundamental concern in progressing airborne wind energy (AWE) operations toward commercial success is guaranteeing that safety requirements placed on the systems are met. Due to the high-dimensional complexity of AWE systems, however, formal mathematical robustness guarantees become difficult to c...
Váldodahkkit: | Vertovec, N, Ober-Blöbaum, S, Margellos, K |
---|---|
Materiálatiipa: | Journal article |
Giella: | English |
Almmustuhtton: |
American Institute of Aeronautics and Astronautics
2024
|
Geahča maid
-
Verification of safety critical control policies using kernel methods
Dahkki: Vertovec, N, et al.
Almmustuhtton: (2022) -
Multi-objective minimum time optimal control for low-thrust trajectory design
Dahkki: Vertovec, N, et al.
Almmustuhtton: (2022) -
Multi-objective low-thrust spacecraft trajectory design using reachability analysis
Dahkki: Vertovec, N, et al.
Almmustuhtton: (2022) -
Optimal control for safety-critical systems
Dahkki: Vertovec, NC
Almmustuhtton: (2024) -
Design of an airborne wind energy (AWE) research platform
Dahkki: Perez Damas, Carlos Emilio
Almmustuhtton: (2018)