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Through multi-objective optimization, the optimized scheme can not only meets the design requirements, but also satisfies the safety regulations.
We see that the maximum energy consumption of the optimal flow decreases as the link threshold increases since the optimized scheme balances the flow and load by utilizing low PRR links.
Finally, the optimized scheme was obtained.
In addition, the optimized scheme is L-stable.
One and two dimensional linear wave propagation analyses are carried out for the optimized scheme.
This indicates that the optimized scheme with BCC coding obtains much better performance with much lower complexity.
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Moreover, low storage implementations of the optimized schemes are discussed.
The optimized schemes are tested by solving various multidimensional problems of Aeroacoustics.
The order of accuracy of the optimized schemes is the same as that of the classical schemes, the advantage being in reducing the isotropy error.
Additionally, satisfactory results are observed on the wavy grid, indicating the optimized schemes with cell-centered finite difference method are promising.
The optimized schemes have two more function evaluations per timestep than the standard fourth order Runge Kutta method, but allow timesteps up to 1.7 times larger.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com