Arbitrary high-order hybrid grid time domain discontinuous Galerkin method based on multi-stage local time stepping technology
A time-domain discontinuous, time-stepping technology, applied in complex mathematical operations, design optimization/simulation, special data processing applications, etc., to achieve the effect of reducing memory consumption, fast analysis, and reducing computing time
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[0017] In order to efficiently deal with spatial multi-scale problems with fine structures such as patches or vias, the present invention proposes a multi-level local time-stepping technique for any high-order hybrid grid time-domain discontinuous Galerkin scheme, allowing each grid Different time steps are used in the unit to overcome local stability limitations and alleviate the problem of large unknowns caused by fine structures; the Arbitrary Higher Derivative (ADER) time stepping scheme is integrated into the flexible local time stepping (LTS) technology In this method, while improving the numerical accuracy of electromagnetic simulation, a higher global computational efficiency is obtained.
[0018] The present invention will be described in further detail below in conjunction with the accompanying drawings.
[0019] The present invention is a discontinuous Galerkin time-domain finite element algorithm of a multi-stage local time-stepping technique, and the steps are as ...
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