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タイトルDirect adaptive performance optimization of subsonic transports: A periodic perturbation technique
本文(外部サイト)http://hdl.handle.net/2060/19950016412
著者(英)Gilyard, Glenn; Espana, Martin D.
著者所属(英)NASA Flight Research Center
発行日1995-03-01
言語eng
内容記述Aircraft performance can be optimized at the flight condition by using available redundancy among actuators. Effective use of this potential allows improved performance beyond limits imposed by design compromises. Optimization based on nominal models does not result in the best performance of the actual aircraft at the actual flight condition. An adaptive algorithm for optimizing performance parameters, such as speed or fuel flow, in flight based exclusively on flight data is proposed. The algorithm is inherently insensitive to model inaccuracies and measurement noise and biases and can optimize several decision variables at the same time. An adaptive constraint controller integrated into the algorithm regulates the optimization constraints, such as altitude or speed, without requiring and prior knowledge of the autopilot design. The algorithm has a modular structure which allows easy incorporation (or removal) of optimization constraints or decision variables to the optimization problem. An important part of the contribution is the development of analytical tools enabling convergence analysis of the algorithm and the establishment of simple design rules. The fuel-flow minimization and velocity maximization modes of the algorithm are demonstrated on the NASA Dryden B-720 nonlinear flight simulator for the single- and multi-effector optimization cases.
NASA分類AIRCRAFT DESIGN, TESTING AND PERFORMANCE
レポートNO95N22829
NASA-TM-4676
H-2040
NAS 1.15:4676
権利No Copyright


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