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Differential Equation Invariance Axiomatization

KIT || Carnegie Mellon University, Dynamic Logic

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Differential Equation Invariance Axiomatization

276 просмотров · 5 лет назад
KIT || Carnegie Mellon University, Dynamic Logic
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276 просмотров · 5 лет назад
Subscribe to the Logical Foundations of Cyber-Physical Systems channel https://video.lfcps.org/ based on the textbook by André Platzer https://book.lfcps.org/ This talk proves the completeness of an axiomatization for differential equation invariants described by Noetherian functions. First, the differential equation axioms of differential dynamic logic are shown to be complete for reasoning about analytic invariants. Completeness crucially exploits differential ghosts, which introduce additional variables that can be chosen to evolve freely along new differential equations. Cleverly chosen differential ghosts are the proof-theoretical counterpart of dark matter. They create new hypothetical state, whose relationship to the original state variables satisfies invariants that did not exist before. The reflection of these new invariants in the original system then enables its analysis. An extended axiomatization with existence and uniqueness axioms is complete for all local progress properties, and, with a real induction axiom, is complete for all semianalytic invariants. This parsimonious axiomatization serves as the logical foundation for reasoning about invariants of differential equations. Indeed, it is precisely this logical treatment that enables the generalization of completeness to the Noetherian case.