2010•Communications on Pure &amp Applied AnalysisRequires access

Time transformations for state-dependent delay differential equations

Hermann Brunner, Stefano Maset

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Abstract

In this paper we analyze particular changes of variable, called timetransformations, reducing a delay differential equation with astate-dependent delay to a delay differential equation with a prescribednon-state-dependent delay. We then employ these transformations to computethe breaking points of solutions and to derive optimal superconvergenceresults for Runge-Kutta methods for state-dependent equations.

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What this paper is about

In this paper we analyze particular changes of variable, called timetransformations, reducing a delay differential equation with astate-dependent delay to a delay differential equation with a prescribednon-state-dependent delay. We then employ these transformations to computethe breaking points of solutions and to derive optimal superconvergenceresults for Runge-Kutta methods for state-dependent equations.

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Available abstract

In this paper we analyze particular changes of variable, called timetransformations, reducing a delay differential equation with astate-dependent delay to a delay differential equation with a prescribednon-state-dependent delay. We then employ these transformations to computethe breaking points of solutions and to derive optimal superconvergenceresults for Runge-Kutta methods for state-dependent equations.

Key concepts: Delay differential equation, State dependent, Differential equation, Variable (mathematics), State (computer science), Mathematics, State variable, Differential (mechanical device)

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