Parallel analog algorithms for processing polygonal images on a systolic screen

S. Guha
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引用次数: 1

Abstract

The systolic screen is a very natural parallel architecture for image processing. A square root n* square root n systolic screen consists of a square root n* square root n mesh-of-processors with each processor representing a pixel in a grid. The author studies computational geometry problems for polygonal images on such a screen. The algorithms are analog in that they simulate 'physical' processes based on the homeomorphic representation of polygons on the systolic screen. He obtains simple optimal parallel analog algorithms, subject to some restrictions due to the limited resolution of a systolic screen, that run in O( square root n) time on a square root n* square root n systolic screen, for various problems on polygons.<>
处理收缩屏幕上多边形图像的并行模拟算法
收缩屏是一种非常自然的图像处理并行架构。一个平方根n*平方根n的收缩屏幕由平方根n*平方根n的处理器网格组成,每个处理器代表一个网格中的一个像素。作者研究了这种屏幕上多边形图像的计算几何问题。这些算法是模拟的,因为它们基于收缩屏幕上多边形的同胚表示来模拟“物理”过程。他得到了简单的最优并行模拟算法,受限于收缩屏幕的有限分辨率,在平方根n*平方根n收缩屏幕上运行O(平方根n)时间,用于多边形上的各种问题。
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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