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Chance-Constrained, Drift-Safe Guidance for Spacecraft Rendezvous

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arxiv 2401.11077 v1 pith:QMIDSOWS submitted 2024-01-20 eess.SY cs.SY

classification eess.SYcs.SY
keywords rendezvousdrift-safeframeworknavigationoptimizedorbitalsubjecttool
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A robust drift-safe rendezvous trajectory optimization tool is developed in this work, with applications to orbital rendezvous and proximity operations. The method is based on direct collocation and utilizes a sequential convex programming framework, and is extended from previous work to include passive safety constraints. The tool is then paired with a dispersion analysis framework to allow trajectories to be optimized subject to plant, navigation, and actuator uncertainties. The timing, direction, and magnitude of orbital maneuvers are optimized subject to the expected propellant usage, for a given navigation system performance. Representative trajectories are presented for the LEO flight regime, but the approach can also be applied to GEO and NRHO with minimal modification.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Passively Safe Convex Guidance for Cislunar Rendezvous and Proximity Operations

    cs.RO 2026-08 conditional novelty 6.0 of 10

    Purely convex second-order cone programs can design passively safe approach, arrival, and abort maneuvers for cislunar rendezvous, verified by Monte Carlo simulation.

  2. An Efficient Non-Gaussian Chance Constraint Method for Stochastic Nonlinear Problems in Spaceflight

    eess.SY 2026-07 conditional novelty 5.0 of 10

    Skew- and kurtosis-corrected banana confidence contours enable efficient non-Gaussian chance constraints for nonlinear impulsive spacecraft targeting, outperforming LinCov on asteroid and Artemis-like free-return examples.

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