Description

Book Synopsis
This lecture provides a tutorial introduction to the Nyström and locally-corrected Nyström methods when used for the numerical solutions of the common integral equations of two-dimensional electromagnetic fields. These equations exhibit kernel singularities that complicate their numerical solution. Classical and generalized Gaussian quadrature rules are reviewed. The traditional Nyström method is summarized, and applied to the magnetic field equation for illustration. To obtain high order accuracy in the numerical results, the locally-corrected Nyström method is developed and applied to both the electric field and magnetic field equations. In the presence of target edges, where current or charge density singularities occur, the method must be extended through the use of appropriate singular basis functions and special quadrature rules. This extension is also described. Table of Contents: Introduction / Classical Quadrature Rules / The Classical Nyström Method / The Locally-Corrected Nyström Method / Generalized Gaussian Quadrature / LCN Treatment of Edge Singularities

Table of Contents
Introduction.- Classical Quadrature Rules.- The Classical Nyström Method.- The Locally-Corrected Nyström Method.- Generalized Gaussian Quadrature.- LCN Treatment of Edge Singularities.

An Introduction to the Locally Corrected Nystrom Method

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    A Paperback by Andrew Peterson, Malcolm Bibby

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      View other formats and editions of An Introduction to the Locally Corrected Nystrom Method by Andrew Peterson

      Publisher: Springer International Publishing AG
      Publication Date: 06/11/2009
      ISBN13: 9783031005824, 978-3031005824
      ISBN10: 3031005821

      Description

      Book Synopsis
      This lecture provides a tutorial introduction to the Nyström and locally-corrected Nyström methods when used for the numerical solutions of the common integral equations of two-dimensional electromagnetic fields. These equations exhibit kernel singularities that complicate their numerical solution. Classical and generalized Gaussian quadrature rules are reviewed. The traditional Nyström method is summarized, and applied to the magnetic field equation for illustration. To obtain high order accuracy in the numerical results, the locally-corrected Nyström method is developed and applied to both the electric field and magnetic field equations. In the presence of target edges, where current or charge density singularities occur, the method must be extended through the use of appropriate singular basis functions and special quadrature rules. This extension is also described. Table of Contents: Introduction / Classical Quadrature Rules / The Classical Nyström Method / The Locally-Corrected Nyström Method / Generalized Gaussian Quadrature / LCN Treatment of Edge Singularities

      Table of Contents
      Introduction.- Classical Quadrature Rules.- The Classical Nyström Method.- The Locally-Corrected Nyström Method.- Generalized Gaussian Quadrature.- LCN Treatment of Edge Singularities.

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