Please use this identifier to cite or link to this item: https://scholarbank.nus.edu.sg/handle/10635/146328
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dc.titleFast, accurate static analysis for fixed-point finite-precision effects in DSP designs
dc.contributor.authorFang C.F.
dc.contributor.authorRutenbar R.A.
dc.contributor.authorChen T.
dc.date.accessioned2018-08-21T05:10:20Z
dc.date.available2018-08-21T05:10:20Z
dc.date.issued2003
dc.identifier.citationFang C.F., Rutenbar R.A., Chen T. (2003). Fast, accurate static analysis for fixed-point finite-precision effects in DSP designs. IEEE/ACM International Conference on Computer-Aided Design, Digest of Technical Papers : 275-282. ScholarBank@NUS Repository.
dc.identifier.issn10923152
dc.identifier.urihttp://scholarbank.nus.edu.sg/handle/10635/146328
dc.description.abstractTranslating digital signal processing (DSP) software into its finite-precision hardware implementation is often a time-consuming task. We describe a new static analysis technique that can accurately analyze finite-precision effects arising from fixed-point implementations of DSP algorithms. The technique is based on recent interval representation methods from affine arithmetic, and the use of new probabilistic bounds. The resulting numerical error estimates are comparable to detailed statistical simulation, but achieve speedups of four to five orders of magnitude by avoiding actual bit-true simulation. We show error analysis results on both feed forward and feedback DSP kernels.
dc.sourceScopus
dc.typeConference Paper
dc.contributor.departmentOFFICE OF THE PROVOST
dc.contributor.departmentDEPARTMENT OF COMPUTER SCIENCE
dc.description.sourcetitleIEEE/ACM International Conference on Computer-Aided Design, Digest of Technical Papers
dc.description.page275-282
dc.description.codenDICDF
dc.published.statepublished
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