000687402 001__ 687402
000687402 003__ SzGeCERN
000687402 005__ 20180614165613.0
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000687402 035__ $$9Inspire$$a876203
000687402 037__ $$aCMS-NOTE-2002-008
000687402 041__ $$aeng
000687402 088__ $$9CERN-CMS-NOTE-2002-008
000687402 100__ $$aFrühwirth, R$$uInstitute of High Energy Physics, Vienna, Austria
000687402 245__ $$aEstimation of Alignment Parameters, using the Kalman Filter with annealing
000687402 260__ $$c2002
000687402 269__ $$aGeneva$$bCERN$$c1 Mar 2002
000687402 300__ $$amult. p
000687402 520__ $$aDetector alignment is an essential step in the track reconstruction and analysis process. Alignment with tracks is one possible strategy to estimate positions and orientations of components of a track detector. We present a method for the estimation of alignment constants during track reconstruction, in parallel with the usual track parameters. The formalism is related to the standard Kalman Filter and uses annealing in order to avoid suboptimal solutions. The algorithm has been implemented in the Object oriented Reconstruction for Cms Analysis (ORCA) framework and has been tested with a simulated test-beam like setup for silicon detectors.
000687402 541__ $$aM. Winkler
000687402 540__ $$3Preprint$$aCC-BY-4.0
000687402 595__ $$aSIS CMSNOTE2003
000687402 65017 $$2SzGeCERN$$aDetectors and Experimental Techniques
000687402 6531_ $$9CERN$$aPRS
000687402 690C_ $$aCERN Internal Note
000687402 690C_ $$aINTNOTECMSPUBL
000687402 690C_ $$aCERN
000687402 690C_ $$aINTNOTE
000687402 690C_ $$aPUBLCMS
000687402 693__ $$aCERN LHC$$eCMS
000687402 700__ $$aTodorov, Teddy$$jCCID-436084$$uIN2P3, Strasbourg, France
000687402 700__ $$aWinkler, Matthias$$jCCID-497405$$uCERN
000687402 710__ $$5EP
000687402 8564_ $$uhttp://cmsdoc.cern.ch/documents/02/note02_008.pdf$$yFulltext
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000687402 8564_ $$uhttp://cds.cern.ch/record/687402/files/note02_008.pdf$$yFulltext
000687402 8564_ $$uhttp://cds.cern.ch/record/687402/files/note02_008.ps.Z$$yFulltext
000687402 916__ $$sn$$w200329
000687402 960__ $$a93
000687402 961__ $$c20100408$$h1127$$lCER01$$x20031128
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