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The Resource Recursive algorithm for the best approximate solution of linear equations : with applications to systems identification and state estimation
Recursive algorithm for the best approximate solution of linear equations : with applications to systems identification and state estimation
Resource Information
The item Recursive algorithm for the best approximate solution of linear equations : with applications to systems identification and state estimation represents a specific, individual, material embodiment of a distinct intellectual or artistic creation found in Boston University Libraries.This item is available to borrow from all library branches.
Resource Information
The item Recursive algorithm for the best approximate solution of linear equations : with applications to systems identification and state estimation represents a specific, individual, material embodiment of a distinct intellectual or artistic creation found in Boston University Libraries.
This item is available to borrow from all library branches.
 Summary
 The sequential solution, in recursive form, of a growing set of linear equations, based upon the leastsquareerror and a weighted leastsquareerror criterion, are developed. For comparison these results are applied to the discretetime solution of several estimation and identification problems. Recursive algorithms for pseudo inversion and the best approximate solution of a set of linear equations are included. Finally, efficient state estimation procedures for timeinvariant systems using a slidingwindow observer are presented. (Author)
 Language
 eng
 Extent
 140 pages
 Label
 Recursive algorithm for the best approximate solution of linear equations : with applications to systems identification and state estimation
 Title
 Recursive algorithm for the best approximate solution of linear equations
 Title remainder
 with applications to systems identification and state estimation
 Subject

 Approximation theory
 Approximation theory
 Approximation theory
 Approximations (Mathématiques)
 Discretetime systems
 Discretetime systems
 Discretetime systems
 Discretetime systems
 Equations
 Approximation theory
 Equations
 Equations
 Matrices
 Matrices
 Matrices
 Matrices
 Systèmes échantillonnés
 Équations
 Équations
 Equations
 Language
 eng
 Summary
 The sequential solution, in recursive form, of a growing set of linear equations, based upon the leastsquareerror and a weighted leastsquareerror criterion, are developed. For comparison these results are applied to the discretetime solution of several estimation and identification problems. Recursive algorithms for pseudo inversion and the best approximate solution of a set of linear equations are included. Finally, efficient state estimation procedures for timeinvariant systems using a slidingwindow observer are presented. (Author)
 Cataloging source
 DLC
 http://library.link/vocab/creatorName
 Werther, Manfred Hermann Fritz
 Illustrations
 illustrations
 Index
 no index present
 LC call number
 QA214
 LC item number
 .W47
 Literary form
 non fiction
 Nature of contents
 bibliography
 http://library.link/vocab/subjectName

 Equations
 Matrices
 Approximation theory
 Discretetime systems
 Équations
 Matrices
 Approximations (Mathématiques)
 Systèmes échantillonnés
 Approximation theory
 Discretetime systems
 Equations
 Matrices
 Label
 Recursive algorithm for the best approximate solution of linear equations : with applications to systems identification and state estimation
 Bibliography note
 Bibliography: p. 139140
 Carrier category
 volume
 Carrier category code

 nc
 Carrier MARC source
 rdacarrier
 Content category
 text
 Content type code

 txt
 Content type MARC source
 rdacontent
 Dimensions
 28 cm
 Extent
 140 pages
 Lccn
 70132895
 Media category
 unmediated
 Media MARC source
 rdamedia
 Media type code

 n
 Other physical details
 illustrations
 System control number

 (OCoLC)00090014
 (OCoLC)ocm00090014
 Label
 Recursive algorithm for the best approximate solution of linear equations : with applications to systems identification and state estimation
 Bibliography note
 Bibliography: p. 139140
 Carrier category
 volume
 Carrier category code

 nc
 Carrier MARC source
 rdacarrier
 Content category
 text
 Content type code

 txt
 Content type MARC source
 rdacontent
 Dimensions
 28 cm
 Extent
 140 pages
 Lccn
 70132895
 Media category
 unmediated
 Media MARC source
 rdamedia
 Media type code

 n
 Other physical details
 illustrations
 System control number

 (OCoLC)00090014
 (OCoLC)ocm00090014
Subject
 Approximation theory
 Approximation theory
 Approximation theory
 Approximations (Mathématiques)
 Discretetime systems
 Discretetime systems
 Discretetime systems
 Discretetime systems
 Equations
 Approximation theory
 Equations
 Equations
 Matrices
 Matrices
 Matrices
 Matrices
 Systèmes échantillonnés
 Équations
 Équations
 Equations
Library Locations

African Studies LibraryBorrow it771 Commonwealth Avenue, 6th Floor, Boston, MA, 02215, US42.350723 71.108227


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Fineman and Pappas Law LibrariesBorrow it765 Commonwealth Avenue, Boston, MA, 02215, US42.350979 71.107023

Frederick S. Pardee Management LibraryBorrow it595 Commonwealth Avenue, Boston, MA, 02215, US42.349626 71.099547

Howard Gotlieb Archival Research CenterBorrow it771 Commonwealth Avenue, 5th Floor, Boston, MA, 02215, US42.350723 71.108227


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Pikering Educational Resources LibraryBorrow it2 Silber Way, Boston, MA, 02215, US42.349804 71.101425

School of Theology LibraryBorrow it745 Commonwealth Avenue, 2nd Floor, Boston, MA, 02215, US42.350494 71.107235

Science & Engineering LibraryBorrow it38 Cummington Mall, Boston, MA, 02215, US42.348472 71.102257

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<div class="citation" vocab="http://schema.org/"><i class="fa faexternallinksquare fafw"></i> Data from <span resource="http://link.bu.edu/portal/Recursivealgorithmforthebestapproximate/rqPpX5_lua0/" typeof="Book http://bibfra.me/vocab/lite/Item"><span property="name http://bibfra.me/vocab/lite/label"><a href="http://link.bu.edu/portal/Recursivealgorithmforthebestapproximate/rqPpX5_lua0/">Recursive algorithm for the best approximate solution of linear equations : with applications to systems identification and state estimation</a></span>  <span property="potentialAction" typeOf="OrganizeAction"><span property="agent" typeof="LibrarySystem http://library.link/vocab/LibrarySystem" resource="http://link.bu.edu/"><span property="name http://bibfra.me/vocab/lite/label"><a property="url" href="http://link.bu.edu/">Boston University Libraries</a></span></span></span></span></div>