Diego Rodriguez, Diego Gomez
The power system expansion and the integration of technologies, such as renewable generation, distributed generation, high voltage direct current, and energy storage, have made power system simulation challenging in multiple applications. The current computing platforms employed for planning, operation, studies, visualization, and the analysis of power systems are reaching their operational limit since the complexity and size of modern power systems results in long simulation times and high computational demand. Time reductions in simulation and analysis lead to the better and further optimized performance of power systems. Heterogeneous computing—where different processing units interact—has shown that power system applications can take advantage of the unique strengths of each type of processing unit, such as central processing units, graphics processing units, and field-programmable gate arrays interacting in on-premise or cloud environments. Parallel Heterogeneous Computing appears as an alternative to reduce simulation times by optimizing multitask execution in parallel computing architectures with different processing units working together. This paper presents a review of Parallel Heterogeneous Computing algorithms and their applications in power systems.
@article{52c55909-5c79-4131-88a2-fd8b446a2d7a,
title={A Review of Parallel Heterogeneous Computing Algorithms in Power Systems},
author={Diego Rodriguez and Diego Gomez},
year={2021},
language={English}
}TY - JOUR TI - A Review of Parallel Heterogeneous Computing Algorithms in Power Systems AU - Diego Rodriguez AU - Diego Gomez PY - 2021 LA - English ER -
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