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NASA NTRS · Conference Paper
Optimal Trajectories for the Helicopter in One-Engine-Inoperative Terminal-Area Operations
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.
This paper presents a summary of a series of recent analytical studies conducted to investigate one-engine-inoperative (OEI) optimal control strategies and the associated optimal trajectories for a twin engine helicopter in Category-A terminal-area operations. These studies also examine the associated heliport size requirements and the maximum gross weight capability of the helicopter. Using an eight states, two controls, augmented point-mass model representative of the study helicopter, continued takeoff (CTO), rejected takeoff (RTO), balked landing (BL), and continued landing (CL) are investigated for both vertical-takeoff-and-landing (VTOL) and short-takeoff-and-landing (STOL) terminal-area operations. The formulation of the non-linear optimal control problems with considerations for realistic constraints, solution methods for the two-point boundary-value problem, a new real-time generation method for the optimal OEI trajectories, and the main results of this series of trajector optimization studies are presented. In particular, a new balanced-weight concept for determining the takeoff decision point for VTOL Category-A operations is proposed, extending the balanced-field length concept used for STOL operations.
Authors
- Chen, Robert T. N. NASA Ames Research Center
- Zhao, Yi-Yuan Minnesota Univ.
Citation: Chen, Robert T. N., Zhao, Yi-Yuan (2011). Optimal Trajectories for the Helicopter in One-Engine-Inoperative Terminal-Area Operations. Ames Research Center. NASA NTRS ID 19970025406. https://ntrs.nasa.gov/citations/19970025406 ↗