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A PROGRAMMABLE LOGIC-BASED IMPLEMENTATION OF ULTRA-FAST PARALLEL BINARY IMAGE MORPHOLOGICAL OPERATIONS

机译:基于逻辑的超快速并行二进制图像形态学操作的实现

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Binary morphological operations are a building block in many computer vision applications. Several iterative morphological operations are commonly performed for image analysis resulting in a significant computational load on the processing unit, especially in a real-time computer vision system. Custom designed hardware can exploit the natural parallelism exhibited in binary image morphological operations. In this paper we describe a parallel Binary Morphological Unit (pBMU) which can produce two 8-pixel outputs from one of fifteen morphological operations based on a 3x3 mask. Operations include Sobel edge detection, dilation, erosion, Laplacian, and edge thinning. Implementation on an Altera EPM7256SRC208-7 has shown a sustained performance of 1.066 billion output pixels per second at 66.67 MHz. Thus the pBMU can process 1,356 frame-operations on 1024x768 binary images every second. The pBMU architecture and details of implementation are presented.
机译:二进制形态运算是许多计算机视觉应用程序的基础。通常对图像分析执行几种迭代形态学运算,这导致处理单元上的计算量很大,尤其是在实时计算机视觉系统中。定制设计的硬件可以利用二进制图像形态学操作中表现出的自然并行性。在本文中,我们描述了一个并行的二进制形态学单元(pBMU),它可以基于3x3蒙版从15种形态学运算中的一种产生两个8像素输出。操作包括Sobel边缘检测,膨胀,腐蚀,拉普拉斯算术和边缘细化。在Altera EPM7256SRC208-7上的实现显示出在66.67 MHz上每秒10.66亿个输出像素的持续性能。因此,pBMU每秒可以处理1024x768二进制图像上的1356个帧操作。介绍了pBMU架构和实现细节。

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