Numerical Linear Algebra, Digital Signal Processing and Parallel Algorithms edited by Gene H. Golub, Paul Van Dooren.

Numerical linear algebra, digital signal processing, and parallel algorithms are three disciplines with a great deal of activity in the last few years. The interaction between them has been growing to a level that merits an Advanced Study Institute dedicated to the three areas together. This volume...

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Bibliographic Details
Corporate Author: SpringerLink (Online service)
Other Authors: Golub, Gene H. (Editor), Dooren, Paul Van (Editor)
Format: eBook
Language:English
Published: Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 1991.
Edition:1st ed. 1991.
Series:Nato ASI Subseries F:, Computer and Systems Sciences, 70
Springer eBook Collection.
Subjects:
Online Access:Click to view e-book
Holy Cross Note:Loaded electronically.
Electronic access restricted to members of the Holy Cross Community.
Table of Contents:
  • I. Invited Lectures
  • The Family of Fast Least Squares Algorithms for Adaptive Filtering
  • Adaptive Control Algorithms
  • Error Analysis of Least Squares Algorithms
  • Parallel Algorithms for Toeplitz Systems
  • Parallel Algorithms for Digital Signal Processing
  • An Introduction to the Class of Split Levinson Algorithms
  • On the Split Approach Based Algorithms for DSP Problems
  • Updating and Downdating of Orthogonal Polynomials with Data Fitting Applications
  • Parallel Algorithms for Singular Value Problems
  • Some Remarks on the Generalised Bareiss and Levinson Algorithms
  • Generalized Displacement Structure for Block-Toeplitz, Toeplitz-block, and Toeplitz-derived Matrices
  • Fault Tolerant Recursive Least Squares Minimization
  • A Systolic Array for Recursive Least Squares Minimisation and Adaptive Beamforming
  • Parallel Algorithms for Supercomputers
  • Updating Techniques in Parallel Computation
  • On the Use of the Singular Value Decomposition in Identification and Signal Processing
  • Structured Linear Algebra Problems in Digital Signal Processing
  • II. Contributed Lectures
  • Constructing a Unitary Hessenberg Matrix from Spectral Data
  • Parallel Computation of the Generalized Singular Value Decomposition
  • Correcting Interface Errors Arising from Segmentation in a Parallel Iterative Algorithm
  • Multidimensional Internally Lossless Filters of Fully Recursive Half-Plane Type
  • Rank-One Extensions of the Generalized Hermitian Eigenvalue Problem for Adaptive High Resolution Array Processing
  • A Hybrid Scheme for the Singular Value Decomposition on a Multiprocessor
  • The Weak Stability of Algorithms for Matrix Computations
  • Parallelism in Dynamic Programming and Control
  • Design Issues for Parallel Matrix Algorithms
  • Fast Computation of a Restricted Subset of Eigenpairs of a Varying Hermitian Matrix
  • Parallelization of Toeplitz Solvers
  • Parallel Gaussian Elimination, iPSC/2 Hypercube versus a Transputer Network
  • Snapshots of Mobile Jacobi
  • Computing Generalized Canonical Correlations
  • to High Resolution Array Spectrum Estimation
  • Modifications of the Normal Equations Method that are Numerically Stable
  • Block Elimination with Iterative Refinement for Bordered Linear Systems
  • The Efficient Calculation of the Eigenvalues, Eigenvectors and Inverses of a Special Class of Brownian Matrices
  • Improvements of Stepsize Control in Numerical Integration
  • A Statistical Evaluation of Inverse Iteration
  • On Underdetermined Systems
  • A chart of numerical methods for structured eigenvalue problems
  • Updating Choleski Factors in Parallel
  • Approximate Inversion of Partially Specified Positive Definite Matrices
  • Nearest “Unstable” Matrix Pencil to a Given Pencil
  • Parallel Recursive Least Squares on a Hypercube Multiprocessor
  • A Divide and Conquer Method for the Unitary Eigenproblem and Applications
  • Utilization of the Matrix Pencil to Extract Poles of a Linear Time-Invariant System
  • Efficient Solution of Minimum Eigen-Problem of Hankel Systems by Conjugate Gradient Algorithm and FFT
  • Progress Towards a Systolic SVD Array Implementation
  • On the Convergence of Cyclic Jacobi Methods
  • Numerically Stable Fast Transversal Filters for Recursive Least-Squares Adaptive Filtering
  • Applications of Analytic Centers
  • Solving Triangular System in Parallel is Accurate
  • Storage Schemes for Parallel Eigenvalue Algorithms
  • Iterative Solution Methods for Large, Sparse Systems of Linear Equations Arising from Tomographic Image Reconstruction
  • The Generalized Total Least Squares Problem: Formulation, Algorithm and Properties
  • Understanding Old Deficiencies in the Conventional Recursive Least-Squares (CRLS) Scheme
  • Algorithms for Optical Computing and their Sensitivity
  • A Constrained Eigenvalue Problem
  • On GR Algorithms for the Eigenvalue Problem
  • Numerical Analysis of Nonlinear Equations in Computer Vision and Robotics
  • A Linear Systolic Array for the Adaptive MVDR Beamformer
  • Solving Band Systems of Linear Equations by Iterative Methods on Vector Machines
  • List of Participants.