The Pseudo-Reachability Problem for Diagonalisable Linear Dynamical Systems
Julian D'Costa, Toghrul Karimov, Majumdar, Rupak, Joël Ouaknine, Mahmoud Salamati, James Worrell
Abstract
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Julian D'Costa, Toghrul Karimov, Majumdar, Rupak, Joël Ouaknine, Mahmoud Salamati, James Worrell
Abstract
Open-access reader
We study fundamental reachability problems on pseudo-orbits of linear dynamical systems. Pseudo-orbits can be viewed as a model of computation with limited precision and pseudo-reachability can be thought of as a robust version of classical reachability. Using an approach based on $o$-minimality of $\reals_{\exp}$ we prove decidability of the discrete-time pseudo-reachability problem with arbitrary semialgebraic targets for diagonalisable linear dynamical systems. We also show that our method can be used to reduce the continuous-time pseudo-reachability problem to the (classical) time-bounded reachability problem, which is known to be conditionally decidable.
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We study fundamental reachability problems on pseudo-orbits of linear dynamical systems. Pseudo-orbits can be viewed as a model of computation with limited precision and pseudo-reachability can be thought of as a robust version of classical reachability. Using an approach based on $o$-minimality of $\reals_{\exp}$ we prove decidability of the discrete-time pseudo-reachability problem with arbitrary semialgebraic targets for diagonalisable linear dynamical systems. We also show that our method can be used to reduce the continuous-time pseudo-reachability problem to the (classical) time-bounded reachability problem, which is known to be conditionally decidable.
Key concepts: Reachability, Decidability, Reachability problem, Bounded function, Computation, Mathematics, Dynamical systems theory, Linear system