We discuss through multiple numerical examples the accuracy and efficiency of a micro-macro acceleration method for stiff stochastic differential equations (SDEs) with a time-scale separation between the fast microscopic dynamics and the evolution of some slow macroscopic state variables. The algorithm interleaves a short simulation of the stiff SDE with extrapolation of the macroscopic state variables over a longer time interval. After extrapolation, we obtain the reconstructed microscopic state via a matching procedure: we compute the probability distribution that is consistent with the extrapolated state variables, while minimally altering the microscopic distribution that was available just before the extrapolation. In this work, we num...
In many applications, the primary objective of numerical simulation of time-evolving systems is the ...
International audienceThe parareal algorithm is known to allow for a significant reduction in wall c...
In many applications, the primary objective of numerical simulation of time-evolving systems is the ...
Abstract. We present and analyze a micro/macro acceleration technique for the Monte Carlo simulation...
We present and analyze a micro/macro acceleration technique for the Monte Carlo simulation of stocha...
40 pagesInternational audienceWe analyse convergence of a micro-macro acceleration method for the Mo...
40 pagesInternational audienceWe analyse convergence of a micro-macro acceleration method for the Mo...
40 pagesInternational audienceWe analyse convergence of a micro-macro acceleration method for the Mo...
We present and analyze a micro/macro acceleration technique for the Monte Carlo simulation of stocha...
We present and analyze a micro-macro acceleration method for the Monte Carlo simulation of stochasti...
The parareal algorithm is known to allow for a significant reduction in wall clock time for accurate...
International audienceThe parareal algorithm is known to allow for a significant reduction in wall c...
International audienceThe parareal algorithm is known to allow for a significant reduction in wall c...
International audienceThe parareal algorithm is known to allow for a significant reduction in wall c...
In many applications, the primary objective of numerical simulation of time-evolving systems is the ...
In many applications, the primary objective of numerical simulation of time-evolving systems is the ...
International audienceThe parareal algorithm is known to allow for a significant reduction in wall c...
In many applications, the primary objective of numerical simulation of time-evolving systems is the ...
Abstract. We present and analyze a micro/macro acceleration technique for the Monte Carlo simulation...
We present and analyze a micro/macro acceleration technique for the Monte Carlo simulation of stocha...
40 pagesInternational audienceWe analyse convergence of a micro-macro acceleration method for the Mo...
40 pagesInternational audienceWe analyse convergence of a micro-macro acceleration method for the Mo...
40 pagesInternational audienceWe analyse convergence of a micro-macro acceleration method for the Mo...
We present and analyze a micro/macro acceleration technique for the Monte Carlo simulation of stocha...
We present and analyze a micro-macro acceleration method for the Monte Carlo simulation of stochasti...
The parareal algorithm is known to allow for a significant reduction in wall clock time for accurate...
International audienceThe parareal algorithm is known to allow for a significant reduction in wall c...
International audienceThe parareal algorithm is known to allow for a significant reduction in wall c...
International audienceThe parareal algorithm is known to allow for a significant reduction in wall c...
In many applications, the primary objective of numerical simulation of time-evolving systems is the ...
In many applications, the primary objective of numerical simulation of time-evolving systems is the ...
International audienceThe parareal algorithm is known to allow for a significant reduction in wall c...
In many applications, the primary objective of numerical simulation of time-evolving systems is the ...