Multisplitting iterative methods on fixed-size VLSI architectures

Elena Papadopoulou, Yiannis Saridakis
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引用次数: 1

Abstract

Multisplitting Iterative Methods is a parametrizable family of iterative methods capable of solving Large Linear Systems. They are formed by the proper weighted average of classical (or not) iterative schemes. Hence, they present a second level of inherent parallelism while, at the same time, they take advantage of the parallel hardware to decrease both the computational time and the number of iterations involved in the computation. The increasingly large size of linear systems and the consideration of realistically large, but fixed-size, VLSI architectures, for their solution, motivated this work. We design new fixed size VLSI modules, based on space-time partitioning techniques, to efficiently resolve the problems arising in the computation of an oversized iteration step.

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固定尺寸VLSI架构上的多重分裂迭代方法
多重分裂迭代法是求解大型线性系统的一类可参数化迭代方法。它们是由经典(或非)迭代方案的适当加权平均形成的。因此,它们提供了第二层次的固有并行性,同时,它们利用并行硬件来减少计算时间和计算中涉及的迭代次数。线性系统的尺寸越来越大,考虑到实际的大,但固定尺寸,VLSI架构,为他们的解决方案,推动了这项工作。我们设计了新的固定尺寸的VLSI模块,基于时空划分技术,有效地解决了迭代步长过大带来的计算问题。
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