Saupe, ThomasThomasSaupeGötschel, SebastianSebastianGötschelLunet, ThibautThibautLunetRuprecht, DanielDanielRuprechtSpeck, RobertRobertSpeck2026-08-272026-08-272026-08-06Go20 Conference on Scientific Computing and Software, Go20 CSCS 2024 (2026)https://hdl.handle.net/11420/64529As supercomputers grow in hardware complexity, their susceptibility to faults increases, and measures need to be taken to ensure the correctness of results. Some numerical algorithms have certain characteristics that allow them to recover from some types of faults. It has been demonstrated that adaptive Runge–Kutta methods provide resilience against transient faults without adding computational cost. Using recent advances in adaptive step size selection for spectral deferred correction (SDC), an iterative numerical time stepping scheme that can achieve arbitrary order, we show that adaptive SDC can also detect and correct transient faults. Its performance is found to be comparable to that of the dedicated resilience strategy Hot Rod.enAdaptivityResilienceSoft faultsSpectral deferred correctionTime integrationNatural Sciences and Mathematics::510: MathematicsComputer Science, Information and General Works::004: Computer SciencesResilience against soft faults through adaptivity in spectral deferred correctionConference Paper10.1007/978-3-032-17810-7_2