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A Nano-Functional-Device-Based Image Feature Extraction Circuitry With Current-Balancing Feedback

机译:基于纳米功能的装置的图像特征提取电路,具有电流平衡反馈

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An image feature extraction VLSI architeture using resonance current-voltage (I-V) characteristics has been proposed aiming at demonstrating a new potentiality of nano functional devices for use in building human-like intelligent systems. In this work, the resonance characteristics of nano devices have been emulated by CMOS inverter-based convolution circuits and directional edge filtering was carried out by subthreshold operation of CMOS circuits. In order to retain only essential features in the input image, a current-balancing feedback circuitry has been explored. The circuit can select relatively significant edges and leave them as digital flags autonomously. In order to verify the concept, a small-scale circuit was designed in a standard 0.18-μm CMOS technology, and its correct operation was confirmed by SPICE simulation.
机译:已经提出了一种使用谐振电流 - 电压(I-V)特性的图像特征提取VLSI acracture,其目的在于展示纳米功能装置的新潜力,用于建立人类的智能系统。在这项工作中,通过CMOS逆变器的卷积电路模拟了纳米器件的谐振特性,通过CMOS电路的亚阈值操作来执行定向边缘滤波。为了仅保留输入图像中的基本特征,已经探讨了电流平衡的反馈电路。电路可以选择相对显着的边缘,并使它们自主地作为数字旗帜。为了验证该概念,小型电路设计为标准的0.18μmCMOS技术,并通过Spice仿真确认其正确的操作。

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