Architecture for binary mathematical morphology reconfigurable by genetic programming

E. C. Pedrino, J. H. Saito, V. O. Roda
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引用次数: 19

Abstract

Mathematical morphology supplies powerful tools for low level image analysis, with applications in robotic vision, visual inspection, medicine, texture analysis and many other areas. Many of the mentioned applications require dedicated hardware for real time execution. In this paper, the development of a novel reconfigurable hardware using logical and morphological instructions generated automatically by a linear approach based on genetic programming is proposed. The hardware is capable of processing binary images at high speed. The developed system is based on high-capacity PLDs and has among the possible applications: automatic construction of image filters, intelligent pattern recognition, to name just a few. Some applications using the developed reconfigurable system are presented and the results are discussed and compared with other approaches.
遗传规划可重构的二进制数学形态体系结构
数学形态学为低级图像分析提供了强大的工具,在机器人视觉、视觉检测、医学、纹理分析和许多其他领域都有应用。上面提到的许多应用程序都需要专用硬件来实时执行。本文提出了一种利用基于遗传规划的线性方法自动生成逻辑和形态指令的新型可重构硬件。该硬件能够高速处理二值图像。所开发的系统基于大容量pld,具有多种可能的应用:自动构建图像滤波器,智能模式识别,仅举几例。介绍了所开发的可重构系统的一些应用,并讨论了结果,并与其他方法进行了比较。
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