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Trajectory optimization for an asymmetric launch vehicleA numerical optimization technique is used to fully automate the trajectory design process for an symmetric configuration of the proposed Advanced Launch System (ALS). The objective of the ALS trajectory design process is the maximization of the vehicle mass when it reaches the desired orbit. The trajectories used were based on a simple shape that could be described by a small set of parameters. The use of a simple trajectory model can significantly reduce the computation time required for trajectory optimization. A predictive simulation was developed to determine the on-orbit mass given an initial vehicle state, wind information, and a set of trajectory parameters. This simulation utilizes an idealized control system to speed computation by increasing the integration time step. The conjugate gradient method is used for the numerical optimization of on-orbit mass. The method requires only the evaluation of the on-orbit mass function using the predictive simulation, and the gradient of the on-orbit mass function with respect to the trajectory parameters. The gradient is approximated with finite differencing. Prelaunch trajectory designs were carried out using the optimization procedure. The predictive simulation is used in flight to redesign the trajectory to account for trajectory deviations produced by off-nominal conditions, e.g., stronger than expected head winds.
Document ID
19900016717
Acquisition Source
Legacy CDMS
Document Type
Thesis/Dissertation
Authors
Sullivan, Jeanne Marie
(Draper (Charles Stark) Lab., Inc. Cambridge, MA, United States)
Date Acquired
September 6, 2013
Publication Date
June 1, 1990
Subject Category
Launch Vehicles And Space Vehicles
Report/Patent Number
CSDL-T-1062
NAS 1.26:185630
NASA-CR-185630
Report Number: CSDL-T-1062
Report Number: NAS 1.26:185630
Report Number: NASA-CR-185630
Accession Number
90N26033
Funding Number(s)
CONTRACT_GRANT: NAS9-18147
Distribution Limits
Public
Copyright
Public Use Permitted.
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