NASA NTRS · 19930033972
Applications of singular value analysis and partial-step algorithm for nonlinear orbit determination
Abstract
An adaptive method in which cruise and nonlinear orbit determination problems can be solved using a single program is presented. It involves singular value decomposition augmented with an extended partial step algorithm. The extended partial step algorithm constrains the size of the correction to the spacecraft state and other solve-for parameters. The correction is controlled by an a priori covariance and a user-supplied bounds parameter. The extended partial step method is an extension of the update portion of the singular value decomposition algorithm. It thus preserves the numerical stability of the singular value decomposition method, while extending the region over which it converges. In linear cases, this method reduces to the singular value decomposition algorithm with the full rank solution. Two examples are presented to illustrate the method's utility.
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Ryne, Mark S., Wang, Tseng-Chan. 1991-01-01. Applications of singular value analysis and partial-step algorithm for nonlinear orbit determination. https://ntrs.nasa.gov/citations/19930033972
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