首页> 外文会议>Conference on image processing: Algorithms and systems VII; 20090119-20, 22; San Jose, CA(US) >Edge Detection Algorithms implemented on Bi-i Cellular Vision System
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Edge Detection Algorithms implemented on Bi-i Cellular Vision System

机译:在Bi-i细胞视觉系统上实现的边缘检测算法

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Bi-i (Bio-inspired) Cellular Vision system is built mainly on Cellular Neural /Nonlinear Networks (CNNs) type (ACE16k) and Digital Signal Processing (DSP) type microprocessors. CNN theory proposed by Chua has advanced properties for image processing applications. In this study, the edge detection algorithms are implemented on the Bi-i Cellular Vision System. Extracting the edge of an image to be processed correctly and fast is of crucial importance for image processing applications. Threshold Gradient based edge detection algorithm is implemented using ACE16k microprocessor. In addition, pre-processing operation is realized by using an image enhancement technique based on Laplacian operator. Finally, morphologic operations are performed as post processing operations. Sobel edge detection algorithm is performed by convolving sobel operators with the image in the DSP. The performances of the edge detection algorithms are compared using visual inspection and timing analysis. Experimental results show that the ACE16k has great computational power and Bi-i Cellular Vision System is very qualified to apply image processing algorithms in real time.
机译:Bi-i(受生物启发)细胞视觉系统主要基于细胞神经/非线性网络(CNN)类型(ACE16k)和数字信号处理(DSP)类型微处理器构建。 Chua提出的CNN理论在图像处理应用中具有先进的属性。在这项研究中,边缘检测算法是在Bi-i细胞视觉系统上实现的。对于图像处理应用程序而言,正确,快速地提取要处理的图像边缘至关重要。基于阈值梯度的边缘检测算法是使用ACE16k微处理器实现的。另外,通过使用基于拉普拉斯算子的图像增强技术来实现预处理操作。最后,形态学操作作为后处理操作执行。通过将sobel运算符与DSP中的图像进行卷积来执行Sobel边缘检测算法。使用视觉检查和时序分析比较边缘检测算法的性能。实验结果表明,ACE16k具有强大的计算能力,Bi-i细胞视觉系统非常有资格实时应用图像处理算法。

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