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https://doi.org/10.24138/jcomss-2021-0133

Comparative Study of the Execution Time of Parallel Heat Equation on CPU and GPU

Safa Belhaous ; SSDIA laboratory, ENSET, Hassan II University, Mohammedia, Morocco
Soumia Chokri ; SSDIA laboratory, ENSET, Hassan II University, Mohammedia, Morocco
Sohaib Baroud ; SSDIA laboratory, ENSET, Hassan II University, Mohammedia, Morocco
Mohamed Mestari ; SSDIA laboratory, ENSET, Hassan II University, Mohammedia, Morocco


Puni tekst: engleski pdf 2.317 Kb

str. 350-357

preuzimanja: 272

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Sažetak

Parallelization has become a universal technique for computing an intensive scientific simulation to shorten the execution time of complex problems. It consists of bringing together the power of several thousand processors to perform complex calculations at high speed. The choice of the runtime environment to execute parallel programs significantly influences the execution time. For this reason, this article aims to materialize the impact of computing architectures on the performance of parallel implementations. To better achieve this contribution, we have implemented the heat equation executed on CUDA platform and we have compared the results with those of SkelGIS implementation from the literature. Through the results of the experiments, we demonstrated that the execution time of the CUDA implementation on graphics processing unit (GPU) is almost 100X faster for very large meshes compared to the other implementations.

Ključne riječi

CUDA; GPU, Parallel implementation; Parallel architecture; Heat equation

Hrčak ID:

270741

URI

https://hrcak.srce.hr/270741

Datum izdavanja:

30.12.2021.

Posjeta: 553 *