Efficient hybrid parallel scheme for caputo time-fractional PDEs on multicore architectures

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Multidisciplinary Digital Publishing Institute (MDPI)

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info:eu-repo/semantics/openAccess

Özet

We present a hybrid parallel scheme for efficiently solving Caputo time-fractional partial differential equations (CTFPDEs) with integer-order spatial derivatives on multicore CPU and GPU platforms. The approach combines a second-order spatial discretization with the L1 time-stepping scheme and employs MATLAB parfor parallelization to achieve significant reductions in runtime and memory usage. A theoretical third-order convergence rate is established under smooth-solution assumptions, and the analysis also accounts for the loss of accuracy near the initial time t = t0 caused by weak singularities inherent in time-fractional models. Unlike many existing approaches that rely on locally convergent strategies, the proposed method ensures global convergence even for distant or randomly chosen initial guesses. Benchmark problems from fractional biological models—including glucose–insulin regulation, tumor growth under chemotherapy, and drug diffusion in tissue—are used to validate the robustness and reliability of the scheme. Numerical experiments confirm near-linear speedup on up to four CPU cores and show that the method outperforms conventional techniques in terms of convergence rate, residual error, iteration count, and efficiency. These results demonstrate the method’s suitability for large-scale CTFPDE simulations in scientific and engineering applications.

Açıklama

Shams, Mudassir(Balikesir, Author)

Anahtar Kelimeler

Caputo Time-Fractional PDEs, Parallel Computing, Multicore Architecture, Biomedical Fractional Models, Computational Efficiency

Kaynak

Fractal and Fractional

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9

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9

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Onay

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