arXiv · 2609.10813
Method for Constrained Computational Guidance and Control with Application to Hypersonic Entry
Abstract
A method for constrained computation guidance and control is described. The method employs guidance updates by periodically re-solving a constrained optimal control problem. Feasibility of the optimal control problem is improved by preventing constraint violations in the perturbed system. Constraint violation is prevented by augmenting the optimal control problem with a penalty term intended to increase the margin between a constraint and its limit when the perturbed system is within certain proximity of the constraint limit. The additional penalty term employs a smooth maximum approximation to increase the margin between the constraint and its limit. The method developed in this paper is demonstrated on the maximum cross-range reusable launch vehicle (RLV) entry problem, for which the reference solution contains a long-duration constrained arc. The results demonstrate that the method developed in this paper is viable for path-constrained optimal guidance and control.
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Emily M. Palmer, Anil V. Rao. 2026-09-09. Method for Constrained Computational Guidance and Control with Application to Hypersonic Entry. https://arxiv.org/abs/2609.10813
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