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- W2011191718 abstract "This paper describes methods for computing minimum-time flight paths at high altitudes in the presence of strong horizontal wind s. The first method shows how to calculate nonlinear feedback (“dynamic programming”) solutions for minimum-time flight paths. To do this the Zermelo Problem for arbitrary winds is extended from a flat earth model to a spherical earth model as a two-state problem (latit ude and longitude) with one control (heading angle). Many minimum-time paths are calculated backwards from New York JFK Airport and San Francisco International Airport to points in the continental U.S. Then the optimal heading angle and the minimum-time can be found by interpolation given the current latitude and longitude using an interpolant created by Delaunay triangulation. The second method is based on an analytical neighboring optimal control solution that computes neighboring optimal heading commands as a function of the winds along a nominal flight path. As an example, minimum-time paths to New York and San Francisco are determined for the actual jet stream winds on 14 February 2001 at 36 kft." @default.
- W2011191718 created "2016-06-24" @default.
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- W2011191718 date "2012-01-01" @default.
- W2011191718 modified "2023-09-25" @default.
- W2011191718 title "Methods for Computing Minimum-Time Paths in Strong Winds" @default.
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- W2011191718 doi "https://doi.org/10.2514/1.53614" @default.
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