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dc.creatorDaloukas, K.en
dc.creatorEvmorfopoulos, N.en
dc.creatorTsompanopoulou, P.en
dc.creatorStamoulis, G. I.en
dc.date.accessioned2015-11-23T10:25:05Z
dc.date.available2015-11-23T10:25:05Z
dc.date.issued2014
dc.identifier10.1109/ISQED.2014.6783398
dc.identifier.isbn9781479939466
dc.identifier.issn19483287
dc.identifier.urihttp://hdl.handle.net/11615/26869
dc.description.abstractEfficient analysis of on-chip power delivery networks is one of the most challenging problems that EDA is confronted with. This paper addresses the problem of simulating general multi-layer power delivery networks with significant via resistances. An iterative solution method is combined with an efficient and extremely parallel preconditioning mechanism based on the application of a 3D Fast Transform solver, which enables harnessing the computational resources of massively parallel architectures, such as GPUs. Experimental evaluation of the proposed methodology on a set of large-scale industrial benchmarks demonstrates a speed-up of 290.2X for a 2.62M-node design over a state-of-the-art parallel direct solver, and a speed-up of 75.5X for a 10.51M-node design over a parallel iterative solver with a general-purpose preconditioner, when GPUs are utilized. © 2014 IEEE.en
dc.source.urihttp://www.scopus.com/inward/record.url?eid=2-s2.0-84899485186&partnerID=40&md5=f344fb53cbca63519cc7cedb9ec8f12a
dc.subject3-D Fast Transform preconditioneren
dc.subjectIterative methodsen
dc.subjectMassively parallel architecturesen
dc.subjectMulti-layer power delivery networksen
dc.subjectPower grid analysisen
dc.subjectDesignen
dc.subjectElectric power transmissionen
dc.subjectParallel architecturesen
dc.subjectProgram processorsen
dc.subjectComputational resourcesen
dc.subjectIterative solution methodsen
dc.subjectParallel direct solversen
dc.subjectParallel iterative solversen
dc.subjectParallel preconditioningen
dc.subjectPower delivery networken
dc.subjectPreconditionersen
dc.subjectNetwork layersen
dc.titleA 3-D Fast transform-based preconditioner for large-scale power grid analysis on massively parallel architecturesen
dc.typeconferenceItemen


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