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Combined Design of Gain-Scheduled C-star and Maneuver Load Alleviation Laws

Strothteicher, Till und Fezans, Nicolas (2026) Combined Design of Gain-Scheduled C-star and Maneuver Load Alleviation Laws. Journal of Guidance, Control, and Dynamics, 49 (7), Seiten 2097-2109. American Institute of Aeronautics and Astronautics (AIAA). doi: 10.2514/1.G009267. ISSN 1533-3884.

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Offizielle URL: https://arc.aiaa.org/doi/10.2514/1.G009267

Kurzfassung

This paper presents an automated tuning of a longitudinal baseline load factor flight augmentation system (FAS) and a maneuver load alleviation (MLA) controller. The FAS is representative of those employed in modern fly-by-wire civil aircraft (regarding the pull-up maneuver loads) and the MLA function reduces sizing loads. These control laws are applied to a flexible and energy-efficient aircraft. During the iterative aeroelastic optimization of the preliminary aircraft design, the evolution of the aircraft design and structure call for an adjustment of the control system tuning. An optimization-based procedure is proposed to fully automate the multi-objective control tuning process, which would allow considering their load reduction performance in an automated multidisciplinary optimization loop of the aircraft. The parameters of the active control functions are scheduled over the equivalent air speed and Mach number using a candidate function to capture the change of the elevator authority. The closed-loop FAS shows good tracking of the pilot command over the entire flight envelope. The MLA function effectively alleviates the worst case maneuver vertical bending moment throughout the wingspan as well as the entire flight envelope. Adding an input filter and a center of gravity scheduling law decreases the wing root bending moment further.

elib-URL des Eintrags:https://elib.dlr.de/225863/
Dokumentart:Zeitschriftenbeitrag
Titel:Combined Design of Gain-Scheduled C-star and Maneuver Load Alleviation Laws
Autoren:
AutorenInstitution oder E-Mail-AdresseAutoren-ORCID-iDORCID Put Code
Strothteicher, Tilltill.strothteicher (at) dlr.dehttps://orcid.org/0009-0000-2082-3192224061697
Fezans, NicolasNicolas.Fezans (at) dlr.dehttps://orcid.org/0000-0003-4351-3474NICHT SPEZIFIZIERT
Datum:20 April 2026
Erschienen in:Journal of Guidance, Control, and Dynamics
Referierte Publikation:Ja
Open Access:Ja
Gold Open Access:Nein
In SCOPUS:Ja
In ISI Web of Science:Ja
Band:49
DOI:10.2514/1.G009267
Seitenbereich:Seiten 2097-2109
Verlag:American Institute of Aeronautics and Astronautics (AIAA)
ISSN:1533-3884
Status:veröffentlicht
Stichwörter:Aeroelasticity, Aircraft Control, Maneuver Load Alleviation
HGF - Forschungsbereich:Luftfahrt, Raumfahrt und Verkehr
HGF - Programm:Luftfahrt
HGF - Programmthema:Komponenten und Systeme
DLR - Schwerpunkt:Luftfahrt
DLR - Forschungsgebiet:L CS - Komponenten und Systeme
DLR - Teilgebiet (Projekt, Vorhaben):L - Flugzeugsysteme, L - Flugzeugtechnologien und Integration
Standort: Braunschweig
Institute & Einrichtungen:Institut für Flugsystemtechnik > Flugdynamik und Simulation
Hinterlegt von: Strothteicher, Till
Hinterlegt am:17 Aug 2026 16:24
Letzte Änderung:17 Aug 2026 16:24

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