Parallel Iterative Algorithms: From Sequential to Grid Computing
Autor Jacques Mohcine Bahi, Sylvain Contassot-Vivier, Raphael Couturieren Limba Engleză Paperback – 19 sep 2019
The first two chapters introduce the general features of sequential iterative algorithms and their applications to numerical problems. The book then describes different kinds of parallel systems and parallel iterative algorithms. It goes on to address both linear and nonlinear parallel synchronous and asynchronous iterative algorithms for numerical computation, with an emphasis on the multisplitting approach. The final chapter discusses the features required for efficient implementation of asynchronous iterative algorithms.
Providing the theoretical and practical knowledge needed to design and implement efficient parallel iterative algorithms, this book illustrates how to apply these algorithms to solve linear and nonlinear numerical problems in parallel environments, including local, distant, homogeneous, and heterogeneous clusters.
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Specificații
ISBN-13: 9780367388164
ISBN-10: 0367388162
Pagini: 235
Dimensiuni: 156 x 234 x 15 mm
Greutate: 0.45 kg
Ediția:1
Editura: CRC Press
Colecția Chapman and Hall/CRC
ISBN-10: 0367388162
Pagini: 235
Dimensiuni: 156 x 234 x 15 mm
Greutate: 0.45 kg
Ediția:1
Editura: CRC Press
Colecția Chapman and Hall/CRC
Public țintă
Academic and Professional Practice & DevelopmentCuprins
Introduction. Iterative Algorithms. Iterative Algorithms and Applications to Numerical Problems. Parallel Architectures and Iterative Algorithms. Synchronous Iterations. Asynchronous Iterations. Programming Environments and Experimental Results. Appendix. References. Index.
Notă biografică
Jacques Mohcine Bahi, Sylvain Contassot-Vivier, Raphael Couturier
Descriere
Presenting the theoretical and practical aspects of parallel numerical algorithms, this book illustrates how iterative algorithms can solve numerical problems and discusses their implementation on parallel and distributed computers. It reviews basic convergence results of iterative algorithms and explores the advantages of asynchronism, such as reducing the effect of bottlenecks and the synchronization penalty. The authors also analyze numerous experiments in various computational contexts for linear and nonlinear numerical problems. The book contains several exercises at the end of most chapters as well as an appendix of mathematical results.