Factorization of Boundary Value Problems Using the Invariant Embedding Method

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Read or download book entitled Factorization of Boundary Value Problems Using the Invariant Embedding Method written by Jacques Henry and published by Elsevier in PDF, EPUB and Kindle Format. Click Get This Book button to download or read online books. Join over 650.000 happy Readers and READ as many books as you like. We cannot guarantee that Factorization of Boundary Value Problems Using the Invariant Embedding Method book is available in the library.

  • Publisher : Elsevier
  • Release : 09 November 2016
  • ISBN : 9780081010907
  • Page : 256 pages
  • Rating : 4.5/5 from 103 voters

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Factorization Method for Boundary Value Problems by Invariant Embedding presents a new theory for linear elliptic boundary value problems. The authors provide a transformation of the problem in two initial value problems that are uncoupled, enabling you to solve these successively. This method appears similar to the Gauss block factorization of the matrix, obtained in finite dimension after discretization of the problem. This proposed method is comparable to the computation of optimal feedbacks for linear quadratic control problems. Develops the invariant embedding technique for boundary value problems Makes a link between control theory, boundary value problems and the Gauss factorization Presents a new theory for successively solving linear elliptic boundary value problems Includes a transformation in two initial value problems that are uncoupled

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Factorization of Boundary Value Problems Using the Invariant Embedding Method

Factorization of Boundary Value Problems Using the Invariant Embedding Method
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  • Publisher : Elsevier
  • Release Date : 2016-11-09
  • ISBN : 9780081010907
GET THIS BOOKFactorization of Boundary Value Problems Using the Invariant Embedding Method

Factorization Method for Boundary Value Problems by Invariant Embedding presents a new theory for linear elliptic boundary value problems. The authors provide a transformation of the problem in two initial value problems that are uncoupled, enabling you to solve these successively. This method appears similar to the Gauss block factorization of the matrix, obtained in finite dimension after discretization of the problem. This proposed method is comparable to the computation of optimal feedbacks for linear quadratic control problems. Develops the

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GET THIS BOOKSystem Modeling and Optimization

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