Parallel direct integration variable step block method for solving large system of higher order ordinary differential equations

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Abstract

The aim of this paper is to investigate the performance of the developed two point block method designed for two processors for solving directly non stiff large systems of higher order ordinary differential equations (ODEs). The method calculates the numerical solution at two points simultaneously and produces two new equally spaced solution values within a block and it is possible to assign the computational tasks at each time step to a single processor. The algorithm of the method was developed in C language and the parallel computation was done on a parallel shared memory environment. Numerical results are given to compare the efficiency of the developed method to the sequential timing. For large problems, the parallel implementation produced 1.95 speed-up and 98% efficiency for the two processors.

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APA

Majid, Z. A., & Suleiman, M. (2009). Parallel direct integration variable step block method for solving large system of higher order ordinary differential equations. World Academy of Science, Engineering and Technology, 40, 71–75. https://doi.org/10.5772/8201

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