DocumentCode
1514295
Title
A pipelined-in-time parallel algorithm for transient stability analysis [power systems]
Author
La Scala, Massimo ; Sbrizzai, Robcrto ; Torelli, Francesco
Author_Institution
Bari Univ., Italy
Volume
6
Issue
2
fYear
1991
fDate
5/1/1991 12:00:00 AM
Firstpage
715
Lastpage
722
Abstract
A new parallel algorithm for transient stability analysis is presented. An implicit trapezoidal rule is used to discretize the set of algebraic-differential equations which describe the transient stability problem. A parallel-in-time formulation has been adopted. A Newton procedure is used to solve the equations which describe the system at each time step, whereas a Gauss-Seidel algorithm relaxes the solution across the time steps. A Gauss-Seidel-like procedure can be usefully exploited in the parallel processing mode by pipelining the computation through time steps. The parallelism in space of the problem is also exploited. Furthermore, the parallel-in-time formulation is used to change the time steps between iterations by a nested iteration multigrid technique in order to enhance the convergence of the algorithm. The method has the same reliability and model-handling characteristics of typical dishonest Newton-like procedures. Test results on realistic power systems are presented to show the capability and usefulness of the suggested technique
Keywords
parallel algorithms; power system analysis computing; stability; transients; Gauss-Seidel algorithm; Newton procedure; algebraic-differential equations; implicit trapezoidal rule; nested iteration multigrid technique; pipelined-in-time parallel algorithm; power systems; reliability; transient stability analysis; Equations; Gaussian processes; Parallel algorithms; Parallel processing; Pipeline processing; Power system modeling; Power system reliability; Power system transients; Stability analysis; Transient analysis;
fLanguage
English
Journal_Title
Power Systems, IEEE Transactions on
Publisher
ieee
ISSN
0885-8950
Type
jour
DOI
10.1109/59.76717
Filename
76717
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