TY - JOUR AU - Speck, Robert AU - Ruprecht, Daniel TI - Toward fault-tolerant parallel-in-time integration with PFASST JO - Parallel computing VL - 62 SN - 0167-8191 CY - Amsterdam [u.a.] PB - North-Holland, Elsevier Science M1 - FZJ-2017-04047 SP - 20 - 37 PY - 2017 AB - We introduce and analyze different strategies for the parallel-in-time integration method PFASST to recover from hard faults and subsequent data loss. Since PFASST stores solutions at multiple time steps on different processors, information from adjacent steps can be used to recover after a processor has failed. PFASST’s multi-level hierarchy allows to use the coarse level for correcting the reconstructed solution, which can help to minimize overhead. A theoretical model is devised linking overhead to the number of additional PFASST iterations required for convergence after a fault. The potential efficiency of different strategies is assessed in terms of required additional iterations for examples of diffusive and advective type. LB - PUB:(DE-HGF)16 UR - <Go to ISI:>//WOS:000397367800002 DO - DOI:10.1016/j.parco.2016.12.001 UR - https://juser.fz-juelich.de/record/830506 ER -