Efficient binary morphological algorithms on a massively parallel processor

Andreas I. Svolos, C. Konstantopoulos, C. Kaklamanis
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引用次数: 8

Abstract

One of the most important features in image analysis and understanding is shape. Mathematical morphology is the image processing branch that deals with shape analysis. The definition of all morphological transformations is based on two primitive operations, i.e. dilation and erosion. Since many applications require the solution of morphological problems in real time, researching time efficient algorithms for these two operations is crucial. In this paper efficient parallel algorithms for the binary dilation and erosion are presented and evaluated for an advanced associative processor. Simulation results indicate that the achieved speedup is linear.
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大规模并行处理器上的高效二进制形态算法
图像分析和理解中最重要的特征之一是形状。数学形态学是处理形状分析的图像处理分支。所有形态变换的定义都基于两个基本操作,即扩张和侵蚀。由于许多应用需要实时解决形态问题,因此研究这两种操作的高效算法至关重要。本文针对一种先进的关联处理器,提出了二值扩展和侵蚀的并行算法,并对其进行了评价。仿真结果表明,所实现的加速是线性的。
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