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Semi-analytical formation-flying control in J2-perturbed eccentric orbits

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2026-04-29

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1270-9638

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Chien W-T, Botelho A, Ribeiro B, et al., (2026) Semi-analytical formation-flying control in J2-perturbed eccentric orbits. Aerospace Science and Technology, Volume 177, Part A, October 2026, Article number 112247

Abstract

This paper presents a methodology for quasi-fuel-optimal control of the relative motion in Earth-orbiting spacecraft formations in J2-perturbed eccentric orbits using impulsive maneuvers. A closed-form expression describing the inverse relative dynamics with multiple impulsive maneuvers over a defined time window is derived, enabling a semi-analytical approach for obtaining quasi-optimal solutions under a path-minimization assumption. The combined guidance and control formulation, as described by the closed-form expression, is parameterized in terms of quasi non-singular mean relative orbital elements (ROEs) and leverages a linearized J2-perturbed relative motion model for state prediction using a state transition matrix (STM). The proposed method extends prior ROE-based semi-analytical impulsive-control formulations to the case of J2-perturbed eccentric orbits. This approach provides geometric insights into secular and long-period effects within the finite reconfiguration windows and is applicable to orbits with arbitrary eccentricity.

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40 Engineering, Aerospace & Aeronautics, 4001 Aerospace engineering, Spacecraft formation flying, Semi-analytical solution, GNC, Optimal control

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Attribution 4.0 International

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The authors gratefully acknowledge the support of Cranfield University and Deimos Space for the development of this research.

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