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Preconditioned iterative 3-D finite-difference migration or modeling on MPP system

机译:MPP系统上的预处理迭代3-D有限差异迁移或建模

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In seismic data processing, the formulation of the three-dimensional one-pass 45/spl deg/ implicit finite-difference migration schemes requires the solution of a huge number of very large pentadiagonal complex linear systems. Most of the effort in using iterative methods to accurately solve the problem was not successful due to the bad condition numbers of the systems. We present a parallel algorithm to solve the large sparse systems iteratively, based on the preconditioned conjugate gradient (PCG) method. First, by reformation of the linear systems and choosing a special preconditioner, the PCG method is effective in solving these linear systems. By using a nonuniform distribution of linear systems among all PEs, a special global summation procedure and a heterogeneous computation technique, the parallel algorithm is quite efficient. Finally, we present some numerical results on both the CRAY-YMP and CRAY-T3D showing the efficiency and effectiveness of the algorithm.
机译:在地震数据处理中,三维单通45 / SPL DEG /隐含有限差异迁移方案的配方需要溶液的巨大数量非常大的偏见复合线性系统。由于系统的状况不佳,大多数努力使用迭代方法准确解决问题并未成功。我们呈现了一种并行算法,迭代地解决大稀疏系统,基于预处理的共轭梯度(PCG)方法。首先,通过线性系统的改革选择特殊的预处理器,PCG方法在解决这些线性系统方面是有效的。通过使用所有PE中的线性系统的非均匀分布,特殊的全局求和过程和异构计算技术,并行算法非常有效。最后,我们在CRAY-YMP和CRAY-T3D上展示了一些数值结果,显示了算法的效率和有效性。

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