An Implementation of Cellular Automata on Systolic Array

A. Yarahmadi, S. Setayeshi
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引用次数: 1

Abstract

Cellular Automata is one of the ways of performing computations which necessitates extremely the processing of data at high speeds. Implementing cellular automata on serial bases does not provide the required speed. So in this article the implementation of cellular automata on systolic base has been studied and the speed of performance in this method has been compared with that of the serial method. Conventional processors can’t process this enormous amount of data in a short period of time, so a new approach is required to improve computational complexity. Systolic array is a kind of parallel processing approaches which can increase the processing speed. Because processors of systolic set can work simultaneously and have its own local memory, they can improve the processing speed by limiting the number of external memory access in order to execute each of their instructions.
元胞自动机在收缩阵列上的实现
元胞自动机是一种需要高速处理数据的计算方法。在串行基础上实现元胞自动机不能提供所需的速度。因此本文研究了细胞自动机在收缩基上的实现,并将该方法的性能与串行方法的性能进行了比较。传统的处理器无法在短时间内处理如此庞大的数据量,因此需要一种新的方法来提高计算复杂度。收缩阵列是一种可以提高处理速度的并行处理方法。由于收缩集的处理器可以同时工作,并且有自己的本地内存,因此它们可以通过限制外部内存访问的数量来提高处理速度,以便执行它们的每条指令。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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