arXiv · 2606.09137
Modeling of Spinning Plates: Geometric Stiffening and Modal Approximation for GNC Applications
Abstract
This work presents a modal formulation for flexible rectangular plates, accounting for nonlinear geometric effects arising from in-plane foreshortening and centrifugal stiffening. The model is linearized with respect to elastic deformations while retaining the full dependence on spacecraft angular velocities and accelerations. System matrices depend nonlinearly on spacecraft states through squared and cross-product terms, capturing gyroscopic coupling and dynamic stiffening phenomena for arbitrary rotational maneuvers. Polynomial approximation of mode shapes enables efficient computation while preserving accuracy. Model predictions are validated against finite element simulations and literature data for transient response under prescribed hub motion.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Umberto Zucchelli, Irene Valles Sánchez, Francesco Sanfedino. 2026-06-08. Modeling of Spinning Plates: Geometric Stiffening and Modal Approximation for GNC Applications. https://arxiv.org/abs/2606.09137
Cite the original work for its findings. Save a collection to share your selection of sources.