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  • Není k dispozici (cs)
  • Linear polynomial equations, also called Diophantine in the systems and control literature, are often needed to design a dynamic feedback controller or compensator. Solving these equations numerically leads to special Toeplitz type sets of linear equations. To solve them, one can naturally call the general purpose solvers build in the standard MATLAB distribution. Another, and potentially more effective way, is to employ dedicated routines of the well known LAPACK library that exploit the structure of the problem to save computational time and memory requirements. This paper describes the experience of the authors with this approach.
  • Linear polynomial equations, also called Diophantine in the systems and control literature, are often needed to design a dynamic feedback controller or compensator. Solving these equations numerically leads to special Toeplitz type sets of linear equations. To solve them, one can naturally call the general purpose solvers build in the standard MATLAB distribution. Another, and potentially more effective way, is to employ dedicated routines of the well known LAPACK library that exploit the structure of the problem to save computational time and memory requirements. This paper describes the experience of the authors with this approach. (en)
Title
  • Není k dispozici (cs)
  • Using LAPACK Solvers for Structured Matrices within Matlab
  • Using LAPACK Solvers for Structured Matrices within Matlab (en)
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  • Není k dispozici (cs)
  • Using LAPACK Solvers for Structured Matrices within Matlab
  • Using LAPACK Solvers for Structured Matrices within Matlab (en)
skos:notation
  • RIV/68407700:21230/04:03101170!RIV/2005/MSM/212305/N
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  • 157 ; 161
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  • 591740
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  • RIV/68407700:21230/04:03101170
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  • Diophantine equation; LAPACK; Matlab (en)
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  • [E8169B8ECD10]
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  • Praha
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  • Praha
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  • MATLAB 2004 - Sborník příspěvků 12. ročníku konference
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  • Hurák, Zdeněk
  • Hromčík, Martin
  • Šebek, Michael
  • Frízel, R.
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  • Vysoká škola chemicko-technologická v Praze
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  • 80-7080-550-1
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  • 21230
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