peer reviewedThis paper proposes a Schur complement-based Domain Decomposition Method to accelerate the time-domain simulation of large, non-linear and stiff Differential and Algebraic Equation systems stemming from power system dynamic studies. The proposed algorithm employs a star-shaped decomposition scheme and exploits the locality and sparsity of the system. The simulation is accelerated by the use of quasi-Newton schemes and parallel programming techniques. The proposed algorithm is implemented using the shared-memory parallel programming model and tested on a large-scale, realistic power system model showing significant speedup
Abstract—This paper proposes two methods to speed up the demanding time-domain simulations of large ...
peer reviewedHydro-Québec has a long interest in on-line Dynamic Security Assessment (DSA) driven by...
Several results pertaining to the partitioning of the waveform relaxation (WR) algorithm for dynamic...
This paper proposes a Schur complement-based Domain Decomposition Method to accelerate the time-doma...
Power system dynamic simulations are crucial for the operation of electric power systems as they pro...
peer reviewedIn this paper, some algorithmic and computational advances are presented for power syst...
The power system networks in North America and Europe are the largest man-made interconnected system...
As the need for faster power system dynamic simulations increases, it is essential to develop new al...
peer reviewedSimulating a power system with both transmission and distribution networks modeled in d...
As the need for faster power system dynamic simulations increases, it is essential to develop new al...
Simulating a power system with both transmission and distribution networks modeled in detail is a hu...
peer reviewedSimulating a power system with both transmission and distribution networks modeled in d...
Simulating a power system with both transmission and distribution networks modeled in detail is a hu...
This paper proposes two methods to speed up the demanding time-domain simulations of large power sys...
Dynamic simulation studies are used to analyze the behavior of power systems after a disturbance has...
Abstract—This paper proposes two methods to speed up the demanding time-domain simulations of large ...
peer reviewedHydro-Québec has a long interest in on-line Dynamic Security Assessment (DSA) driven by...
Several results pertaining to the partitioning of the waveform relaxation (WR) algorithm for dynamic...
This paper proposes a Schur complement-based Domain Decomposition Method to accelerate the time-doma...
Power system dynamic simulations are crucial for the operation of electric power systems as they pro...
peer reviewedIn this paper, some algorithmic and computational advances are presented for power syst...
The power system networks in North America and Europe are the largest man-made interconnected system...
As the need for faster power system dynamic simulations increases, it is essential to develop new al...
peer reviewedSimulating a power system with both transmission and distribution networks modeled in d...
As the need for faster power system dynamic simulations increases, it is essential to develop new al...
Simulating a power system with both transmission and distribution networks modeled in detail is a hu...
peer reviewedSimulating a power system with both transmission and distribution networks modeled in d...
Simulating a power system with both transmission and distribution networks modeled in detail is a hu...
This paper proposes two methods to speed up the demanding time-domain simulations of large power sys...
Dynamic simulation studies are used to analyze the behavior of power systems after a disturbance has...
Abstract—This paper proposes two methods to speed up the demanding time-domain simulations of large ...
peer reviewedHydro-Québec has a long interest in on-line Dynamic Security Assessment (DSA) driven by...
Several results pertaining to the partitioning of the waveform relaxation (WR) algorithm for dynamic...