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Parallel Dynamics Simulation Using a Krylov-Schwarz Linear Solution Scheme

delete2017-05-01
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OA
AI
S
Shrirang Abhyankar *
E
Emil M. Constantinescu
B
Barry Smith
A
Alexander Flueck
D
Daniel Adrian Maldonado
DOI:10.1109/TSG.2016.2610863delete
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Abstract

Abstract

En 中文
Fast dynamics simulation of large-scale power systems is a computational challenge because of the need to solve a large set of stiff, nonlinear differential-algebraic equations at every time step. The main bottleneck in dynamic simulations is the solution of a linear system during each nonlinear iteration of Newton's method. In this paper, we present a parallel Krylov-Schwarz linear solution scheme that uses the Krylov subspace-based iterative linear solver GMRES with an overlapping restricted additive Schwarz preconditioner. Performance tests of the proposed Krylov-Schwarz scheme for several large test cases ranging from 2000 to 20 000 buses, including a real utility network, show good scalability on different computing architectures.
Keywords:
Dynamics simulation
GMRES
iterative linear solution
Krylov subspace
parallel processing
Schwarz preconditioning
transient stability
power system dynamics
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Journal

IEEE Transactions on Smart Grid cover
IEEE Transactions on Smart Grid
IF:
9.8
Papers:
5.7K
Citations:
4.3W

Organization

A
Argonne National Laboratory
Scholars:
1.1W
Papers: 9.2K
Citations: 3.8W
U
united states department of energy (doe)
Scholars:
11.3W
Papers: 9.6W
Citations: 246