NASA NTRS · 20190001763
A Robust Initialization Scheme for a Lateral Trajectory Optimization Problem with Time of Arrival Windows
Abstract
We present a robust initialization scheme that estimates parameter values for the numerical solution of a two-point boundary value problem. The two-point boundary value problem formulation stems from the optimization of a cost functional subject to the dynamics of a simplified lateral aircraft model and other constraints. Leveraging regular perturbation methods, initial parameter estimates are analytically determined and used to initialize a gradient descent optimization routine which is shown to rapidly converge over a range of initial aircraft positions and heading angles. Additionally, the velocity of the aircraft is optimized to ensure the trajectory of the aircraft terminates within a desired region in both time and space.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Ishihara, Abraham K., Nguyen, Nhan, Luo, Yi, Benavides, Jose, Kaneshige, John. 2012-06-21. A Robust Initialization Scheme for a Lateral Trajectory Optimization Problem with Time of Arrival Windows. https://ntrs.nasa.gov/citations/20190001763
Cite the original work for its findings. Save a collection to share your selection of sources.