An efficient algorithm for the parallel solution of high-dimensional differential equations |
| |
Authors: | Stefan KlusTuhin Sahai Cong LiuMichael Dellnitz |
| |
Affiliation: | a Institute for Industrial Mathematics, University of Paderborn, 33095 Paderborn, Germanyb United Technologies Research Center, East Hartford, CT 06108, USA |
| |
Abstract: | The study of high-dimensional differential equations is challenging and difficult due to the analytical and computational intractability. Here, we improve the speed of waveform relaxation (WR), a method to simulate high-dimensional differential-algebraic equations. This new method termed adaptive waveform relaxation (AWR) is tested on a communication network example. Further, we propose different heuristics for computing graph partitions tailored to adaptive waveform relaxation. We find that AWR coupled with appropriate graph partitioning methods provides a speedup by a factor between 3 and 16. |
| |
Keywords: | Waveform relaxation Adaptive windowing Graph partitioning Petri nets Parallel algorithms |
本文献已被 ScienceDirect 等数据库收录! |