arXiv · 1909.11531
Chaotic transport of navigation satellites
Abstract
Navigation satellites are known from numerical studies to reside in a dynamically sensitive environment, which may be of profound importance for their long-term sustainability. We derive the fundamental Hamiltonian of GNSS dynamics and show analytically that near-circular trajectories lie in the neighborhood of a Normally Hyperbolic Invariant Manifold (NHIM), which is the primary source of hyperbolicity. Quasi-circular orbits escape through chaotic transport, regulated by the NHIM's stable and unstable manifolds, following a power-law escape time distribution $P(t) \sim t^{-α}$, with $α\sim 0.8 - 1.5$. Our study is highly relevant for the design of satellite disposal trajectories, using manifold dynamics.
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Ioannis Gkolias, Jerome Daquin, Despoina K. Skoulidou, Kleomenis Tsiganis, Christos Efthymiopoulos. 2019-09-25. Chaotic transport of navigation satellites. https://doi.org/10.1063/1.5124682
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