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Parallel Processing Systems
David J. Evans
- 01 Jan 1982
102
About: The article was published on 01 Jan 1982. and is currently open access. The article focuses on the topics: Parallel processing (DSP implementation) & Massively parallel.
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Citations
A massively parallel implementation of pattern classifiers on SIMD and MIMD architectures
Kong-Peng Lam
- 14 Dec 1994
TL;DR: This paper describes an efficient data parallel implementation of the BWS-FWS, a multi-layer classifier architecture with an increasing hierarchical order that is implemented on two distributed memory processor arrays and a network of transputers.
On the existence of the new quadrant interlocking factorization for parallel solution of tridiagonal linear systems
TL;DR: In this article, the authors proved the existence of the new quadrant interlocking factorization (Q. I. F) method when A is symmetric positive definite and also presented the new version of the proof of Kadalbajoo et al.
Data and knowledge base parallel processing in multiprocessor environments
Polyachenko
- 25 Sep 1994
TL;DR: An object-oriented data and knowledge base system, TRANSBASE, based on original parallel computing techniques has been proposed and its implementation in a transputer multiprocessor environment provides up to 17 times decreasing the execution time of the database processing problems on 3 transputers complex, if compared with standard tools.
Speeding up the systolic design in bidirectional linear arrays
David J. Evans,Marjan Gusev +1 more
TL;DR: A new design is introduced, and it is shown that the bidirectional linear array can be organized with data items that enter the array in consecutive time moments, and the fastest systolic BLA design offers a speedup of 2, uses half the processor and the efficiency is 4 times greater.
Quadrant Tridiagonal Partitioning and Preconditioned Conjugate Gradient Method for Solving Elliptic Problems
G. Molnárka,S. Szabó +1 more
- 01 Jan 1993
TL;DR: In case of second order elliptic problem, the classical, color and multicolor ordering technique are applicable for further paralellization of QDP iterative methods and a direct algorithm with arithmetical complexity O(n) for solving a special quadrant tridiagonal matrix is given.
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